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1                                              Structural characterizations of 1 reveal a large hexamer
2 han 20 such potential substrates, as well as structural characterization of 12 resulting unknown prod
3                                          The structural characterization of 3-ring and 4-ring MDA iso
4 MaizeSNP50 Bead Chip was used for a detailed structural characterization of 89 introgression lines.
5 , we report the biochemical, functional, and structural characterization of a 130-amino-acid protein,
6          Here, we report the biochemical and structural characterization of a 52-kDa fragment contain
7                    This study focuses on the structural characterization of a biosensor for NE activi
8 r study presents the first atomic resolution structural characterization of a client protein bound to
9  bacterial cellulose biosynthesis, including structural characterization of a functional cellulose sy
10                  In this work, we report the structural characterization of a group 6 LEA protein fro
11 se data provide, to our knowledge, the first structural characterization of a HCT and, in conjunction
12         Here we describe the mechanistic and structural characterization of a high affinity inactivat
13        Here, we report detailed kinetics and structural characterization of a highly selective submic
14              The latter represents the first structural characterization of a monohydrido bridged iso
15                                    The first structural characterization of a mononuclear, EPR-active
16 enzoate hydroxylase and represents the first structural characterization of a monooxygenase involved
17 ere, we present the biochemical and tertiary structural characterization of a new type of bacterial 1
18  report on the evolutionary, biological, and structural characterization of a novel bat adenovirus (B
19       Here we report the first molecular and structural characterization of a novel cell-surface prot
20      Here, we report the first isolation and structural characterization of a product of MoaA.
21 Cp''3 is also reported, comprising the first structural characterization of a Pu-C bond.
22                          Here we present the structural characterization of a recombinant form of hum
23  into the collagen degradation mechanism and structural characterization of a subtilisin-like collage
24             Here we report the isolation and structural characterization of a thermally stable compou
25     This work constitutes the most extensive structural characterization of a viral lncRNA and intera
26                        We report the initial structural characterization of AbetaM01-42 fibrils utili
27 ed heterogeneous catalysts requires detailed structural characterization of active sites, an essentia
28 what has been learned from this atomic-level structural characterization of affinity maturation in HI
29 ed by unstable transient interactions making structural characterization of all functional states dif
30 eport the identification and biochemical and structural characterization of an E2-E3 ubiquitin ligase
31          The synthesis and spectroscopic and structural characterization of an extensive series of ac
32 erall, these results provide a comprehensive structural characterization of an iGluR intermediate sta
33 otential of polarized Raman spectroscopy for structural characterization of anisotropic biological sp
34                  Due to size and complexity, structural characterization of artificial RNA nanoobject
35 pite recent advances in the phylogenetic and structural characterization of bacteriophages, only a sm
36 roviding unprecedented opportunities for the structural characterization of biological macromolecules
37  is a robust technique for the comprehensive structural characterizations of biological macromolecula
38      Computational modeling is essential for structural characterization of biomolecular mechanisms a
39                                        X-ray structural characterization of both the kinetically and
40             Here we report the isolation and structural characterization of CAP257-RH1, an N276 glyca
41                                          The structural characterization of carbohydrate polymers is
42                                     A recent structural characterization of cell walls from monocot s
43        In addition, it enables detection and structural characterization of chemically labile molecul
44                                              Structural characterization of chemokines non-covalently
45                                       Recent structural characterizations of classical and non-classi
46       We report the genetic, biochemical and structural characterization of CmoB, the enzyme that rec
47                                     Complete structural characterization of complex lipids, such as g
48     We show that this method is effective in structural characterization of complex RiPPs, including
49                              Advances in the structural characterization of components of the human R
50 significantly expand the use of DEER for the structural characterization of conformational changes in
51 e report the genomics-inspired isolation and structural characterization of cupriachelin as well as i
52                   Based on a biochemical and structural characterization of cVIMP-Cys using analytica
53          Here, we report the biochemical and structural characterization of different mutant polymera
54                                          The structural characterization of diterpenoids accumulating
55                       Full spectroscopic and structural characterization of each derivative establish
56                              Biochemical and structural characterization of endonucleases from one cl
57 red enzymes.Significant challenges exist for structural characterization of enzymes responsible for b
58                                              Structural characterization of epitope-paratope pairs ha
59 ults demonstrate the utility of FPOP for the structural characterization of equilibrium intermediates
60 al enthalpy calculations in conjunction with structural characterization of ethylene binding in Co2(m
61 g the in-depth biochemical, biophysical, and structural characterization of FadD32, we investigated i
62                                  Previously, structural characterization of [FeFe]-hydrogenase from C
63 re an in-depth biochemical, biophysical, and structural characterization of four FadD32 orthologs, in
64                In this study, we present the structural characterization of full-length IRF4.
65 relevance to cell function and pathogenesis, structural characterization of full-length tandem-repeat
66 sions of the receptors and provide the first structural characterization of functional membrane-embed
67 he in meso crystallization technique for the structural characterization of G-protein coupled recepto
68          Despite recent breakthroughs in the structural characterization of G-protein-coupled recepto
69                                          The structural characterization of gaseous biomolecular ions
70 reflectometry was employed as a first direct structural characterization of GCase and alpha-syn.GCase
71       Here, we provide the first biochemical/structural characterization of GEN1, showing that, like
72                                              Structural characterization of glutamate cysteine ligase
73 ectrometry have made it a preferred tool for structural characterization of glycerophospholipids.
74          Accordingly, the identification and structural characterization of glycolipids from the cell
75 fer dissociation (ETD) alone is used for the structural characterization of glycopeptides.
76 d the glycan, thereby enabling comprehensive structural characterization of glycoproteins in a single
77                                              Structural characterization of glycosaminoglycans (GAGs)
78 vious publication, we report here a detailed structural characterization of GNNQQNY fibrils using mag
79 combinatorial technique allows for efficient structural characterization of GSLs in small tissue samp
80 al shifts of the sulfamate NH groups for the structural characterization of heparin and HS.
81        To address the dearth of atomic-level structural characterization of heterochiral helix pairin
82 pects of applying physisorption for the pore structural characterization of hierarchical materials su
83                                              Structural characterization of highly sulfated glycosami
84 op more powerful and more robust methods for structural characterization of homodimers, homo-oligomer
85  by a lack of dynamics measurements with and structural characterization of homogeneous isotypically
86                                        While structural characterization of homotypic chains has been
87                          Here, we report the structural characterization of Hsp12 by NMR and biophysi
88 ensive chemical data set for a more complete structural characterization of hydroxyterpenylic acids i
89 isotope labeling required for a detailed NMR structural characterization of IGF-II analogs that revea
90 rovides more extensive sequence coverage for structural characterization of IgG1kappa than does top-d
91 s received increased attention; however, the structural characterization of intact precursor proteins
92                                     Detailed structural characterization of intact rough-type lipopol
93                                     Previous structural characterization of integrase-viral DNA compl
94               Now, we report the capture and structural characterization of intermediates produced du
95 own partly because of the absence of a clear structural characterization of intermediates.
96  a tool for quantitation and molecular-scale structural characterization of ionomers and proteins wit
97                                  An in-depth structural characterization of L. interrogans is needed
98                              High-resolution structural characterization of lattices formed in the pr
99  News article we describe recent advances on structural characterization of Li-ion electrode material
100                                          Our structural characterization of LpSpl and its comparison
101 analytical methods that afford comprehensive structural characterization of mAbs to ensure their stri
102 aps by providing a reliable, high-throughput structural characterization of macromolecular complexes
103                     While the biological and structural characterization of many bromodomain containi
104                       X-ray crystallographic structural characterization of many examples reveals ver
105  unique capabilities of X-ray scattering for structural characterization of materials in their native
106                                              Structural characterization of Mediator is challenging d
107                                              Structural characterization of membrane proteins and oth
108  We recently demonstrated a workflow for the structural characterization of metabolites detected by L
109  of fragment ions and thereby facilitate the structural characterization of metabolites.
110 -based metabolomics relies on MS(2) data for structural characterization of metabolites.
111            We then carried out an exhaustive structural characterization of metastable states on the
112 ine enables both quantification and in-depth structural characterization of molecular lipid species e
113 ortant approaches for the identification and structural characterization of molecules by NMR, it is i
114 increasingly common and useful technique for structural characterization of molecules in solution.
115            In addition, we present the first structural characterization of MOLP and oxidative additi
116                                              Structural characterization of MOS was carried out using
117           Herein, we present biochemical and structural characterization of MppR that demonstrates a
118 rt the successful hydrothermal synthesis and structural characterization of multiple sodium carbonoph
119    Here we report a detailed biochemical and structural characterization of MutM variants containing
120 le tandem mass spectrometric approach toward structural characterization of mycolic acids, the long-c
121                Herein, we describe the first structural characterization of N-alkylated twisted amide
122 e scattering is critical when attempting the structural characterization of nanocrystals with X-ray d
123               REAPR's advancement of de novo structural characterization of ncRNAs complements the id
124                                              Structural characterization of new alpha/gamma-peptide f
125 irectionality aspect in much greater detail: Structural characterization of nine curvopeptin biosynth
126             Here we present a functional and structural characterization of NirC from Salmonella typh
127   In this work we report the biochemical and structural characterization of Nocardia farcinica Lys mo
128 s simulations represents a powerful tool for structural characterization of not only isolated membran
129               In this study, we describe the structural characterization of novel flagellar glycans f
130  VEGF-A receptor neuropilin 1 (NRP1) and the structural characterization of NRP1-ligand complexes by
131               One of the major challenges in structural characterization of oligosaccharides is the p
132                          The biochemical and structural characterization of one isoform of this class
133         Here we describe the biochemical and structural characterization of one of the immunodominant
134                                              Structural characterization of one of these V2 Abs revea
135 s of MsbA to flip LPS, and paves the way for structural characterization of other lipid flippases.
136 ctrospray ionization mass spectrometry-based structural characterization of oxygenated, hydrolyzed mo
137                                              Structural characterization of PAF-R-stimulating activit
138                          Here, we report our structural characterization of PapMV by X-ray crystallog
139         Energetic insights emerging from the structural characterization of peptide cross-beta assemb
140                                          The structural characterization of peptide-protein complexes
141 is work is to set up a strategy for the full structural characterization of peptides including disulf
142 lation by PerR, we performed biochemical and structural characterization of PerR.
143 ays a foundation for further biochemical and structural characterization of PhaC, which could assist
144 k demonstrates a gas-phase means to increase structural characterization of phosphatidylcholines via
145                                        X-ray structural characterization of Pol eta complexed with si
146                Combining CAD and EID for the structural characterization of polyketides will therefor
147                                            A structural characterization of polysaccharides from edib
148 es binding dependencies, rate constants, and structural characterization of populated intermediates.
149             We report here on the design and structural characterization of potent peptidic inhibitor
150 of the B cell repertoire, and the increasing structural characterization of protective antigens and e
151 ased techniques with a modeling strategy for structural characterization of protein assemblies.
152                                              Structural characterization of protein complexes is esse
153 is a reference source of information for the structural characterization of protein interaction netwo
154                                              Structural characterization of protein interactions is n
155 ern day drug discovery and requires detailed structural characterization of protein-ligand interactio
156                                              Structural characterization of protein-protein interacti
157 ectroscopy is a nondestructive technique for structural characterization of proteins and polypeptides
158                                              Structural characterization of proteins by NMR typically
159                                              Structural characterization of proteins in the gas phase
160 tions and can become a valuable tool for the structural characterization of proteins.
161 upled with computational methods enables the structural characterization of purified 3-ring and 4-rin
162    In this study, we applied this method for structural characterization of recombinant monoclonal an
163 ethod expands the application of sPRE beyond structural characterization of rigid proteins and comple
164      We here describe a method for automated structural characterization of RiPPs by tandem mass spec
165                                  Next to the structural characterization of roquefortine F and neoxal
166                                              Structural characterization of Sac2 revealed a unique pl
167  Yet, while techniques for the elemental and structural characterization of samples have achieved sub
168 ectrometry (MS/MS) have recently enabled the structural characterization of several classes of GAGs;
169     To address this question, we performed a structural characterization of several HLA-A2/peptide co
170      Further documented is the isolation and structural characterization of several key transition-me
171                     Detailed biochemical and structural characterization of several PHKs has revealed
172 wing discrimination of cathinone isomers and structural characterization of small molecules, includin
173 X-ray scattering analyses to provide in situ structural characterization of solar fuels catalysts.
174 e lack of in situ experimental tools for the structural characterization of solid porous materials du
175                                              Structural characterization of species belonging to each
176       We describe the isolation and detailed structural characterization of stable toxic oligomers of
177 e report the design, efficient synthesis and structural characterization of stable, modular three-dim
178 knockouts provided negative controls for the structural characterization of stereid secondary cell wa
179                                              Structural characterization of Streptococcus pneumoniae
180                   We report the solution and structural characterization of Streptococcus thermophilu
181           We present here the first detailed structural characterization of such a target protection
182                                          The structural characterization of such states has so far la
183     This is because there are few reports of structural characterization of such systems either in th
184 structural data to provide the first general structural characterization of TE proteins and to estima
185                                              Structural characterization of ternary complexes of cata
186 nchmark, we describe the site-specific SSNMR structural characterization of the 40-residue Alzheimer'
187            We herein present a time-resolved structural characterization of the action of cellulases
188 tivity of a complex mixture to isolation and structural characterization of the active molecule follo
189 ally flat mica substrates, thus permitting a structural characterization of the adlayers under ambien
190                               Despite recent structural characterization of the AQP0-CaM complex, the
191 hensive review describes the biochemical and structural characterization of the ARD family, the propo
192               A complete physicochemical and structural characterization of the as-made chiral HPM-1
193                                 Furthermore, structural characterization of the assembly of these bet
194                         We present the first structural characterization of the Axl kinase domain in
195                                              Structural characterization of the B. thailandensis carb
196              Here, we report biochemical and structural characterization of the C-terminal three FF d
197                                     Detailed structural characterization of the catalyst binding site
198                                              Structural characterization of the catalytically signifi
199                             We report here a structural characterization of the central 970 residues
200                           This completes the structural characterization of the co-evolved chitinolyt
201 tion function (PDF) analysis was applied for structural characterization of the cobalt oxide water-sp
202 We validate our methodology by synthesis and structural characterization of the designed peptides, wh
203  the process of conducting these studies, rR structural characterization of the dioxygen adduct of LP
204 ramide, and voriconazole represent the first structural characterization of the drug binding to a P45
205 TFB2M around the LSP and represent the first structural characterization of the entire mitochondrial
206                                              Structural characterization of the enzyme product is con
207    However, significant challenges exist for structural characterization of the enzymes responsible f
208                        Here, we describe the structural characterization of the extracellular region
209            Here, we report a biophysical and structural characterization of the F1 and F2 fingers of
210                                We report the structural characterization of the first antibody identi
211 re, we report synthesis, crystal growth, and structural characterization of the first polynuclear hyd
212 red states of proteins, we provide a precise structural characterization of the free energy landscape
213                                         Full structural characterization of the full-length oligomeri
214                                              Structural characterization of the heterodimer formed fr
215 demonstrates for the first time the complete structural characterization of the highly sulfated hepar
216 lD) from the N-linked glycosylation pathway, structural characterization of the homologous enzymes in
217                                              Structural characterization of the human Y4 receptor (hY
218 ler nanodiscs can also be beneficial for the structural characterization of the important class of se
219                                              Structural characterization of the inhibitors with BasE
220       In this study we offer biochemical and structural characterization of the interaction between T
221                                              Structural characterization of the intermediate assembli
222 )H NMR spectroscopic monitoring was used for structural characterization of the intermediates and pro
223                                   A detailed structural characterization of the involved carbohydrate
224            Here, we report the spectroscopic structural characterization of the isolated Voltage-Sens
225           In this study, we report the first structural characterization of the large extracellular l
226                       Detailed molecular and structural characterization of the ligand-responsive hem
227 inal helical zinc-binding domain and provide structural characterization of the linked JmjN-JmjC doma
228 the first, to our knowledge, high-resolution structural characterization of the major components of t
229                   Here, we present the first structural characterization of the mammalian TFB1 factor
230           Here, we report the functional and structural characterization of the mammalian TREX-2 comp
231                                   To support structural characterization of the many metabolites pres
232 11 of MgsG (i.e., DH11) in vivo, followed by structural characterization of the metabolites accumulat
233 I) centers, while also providing solid-state structural characterization of the much weaker interacti
234 ere determined via insertion mutagenesis and structural characterization of the mutant lipid A.
235                                              Structural characterization of the mutants in complexes
236                         Both biochemical and structural characterization of the mutants suggested tha
237     In this study, we report biochemical and structural characterization of the mycobacterial N-acety
238 derstood at the atomic level, a commensurate structural characterization of the NPC has only begun in
239                                              Structural characterization of the O-linked glycans rele
240                                              Structural characterization of the PAF-R agonists induce
241                                          The structural characterization of the pathway along with st
242                                          The structural characterization of the phage tail after ejec
243 nteractions, these limitations had precluded structural characterization of the PIC.
244                          Two-dimensional NMR structural characterization of the polysaccharide, named
245                            By completing our structural characterization of the previously unknown N-
246                                              Structural characterization of the product revealed it t
247        We present to our knowledge the first structural characterization of the proliferating-cell-nu
248                     Solution and solid-state structural characterization of the protein in complex wi
249                                              Structural characterization of the protein-DNA interface
250          Despite significant progress in the structural characterization of the quasicrystalline stat
251                                              Structural characterization of the RAM linker with sedim
252                         Here we present NRVS structural characterization of the reactive Fe(IV)=O int
253 We report here the genetic, biochemical, and structural characterization of the redJ gene product.
254  present a detailed in vitro biochemical and structural characterization of the S100B-RSK1 interactio
255                       Full spectroscopic and structural characterization of the siloxide products is
256                                  Comparative structural characterization of the T. cruzi CYP51 comple
257                          Here, we report the structural characterization of the talin rod: 13 helical
258                           We carried out the structural characterization of the three preparations us
259          Herein, we report the isolation and structural characterization of the trinuclear electron-t
260           Here, we performed biophysical and structural characterization of the TRX1-binding domain o
261                         This is based on the structural characterization of the two partner proteins,
262 sent thorough kinetic analyses combined with structural characterization of the VCA0947 SpeG enzyme f
263 ate STIV and available genetic tools allowed structural characterization of the virus and viral compo
264 eport systematic high-pressure transport and structural characterizations of the newly discovered sup
265                                              Structural characterizations of the QsrR-DNA and QsrR-me
266  resonance Raman (rR) spectra now permitting structural characterization of their key Fe-O-O fragment
267 IV-1-infected individuals, and isolation and structural characterization of these antibodies are reve
268       Here, we review recent advances in the structural characterization of these antibodies with the
269                                              Structural characterization of these base methylation mo
270                            Spectroscopic and structural characterization of these compounds supports
271                 The first-time isolation and structural characterization of these elusive molecules d
272 ivo, and here, we report the biochemical and structural characterization of these enzymes.
273                     Despite their potential, structural characterization of these glycan epitopes rem
274                                          NMR structural characterization of these metabolites identif
275                              Biochemical and structural characterization of these mutants along with
276 isted in the public database, and therefore, structural characterization of these proteins has played
277      However, due to their ephemeral nature, structural characterization of these species remains cha
278                                              Structural characterization of these surfaces is perform
279                    Extensive biochemical and structural characterization of these transcription facto
280                                      For the structural characterization of these transmetalation int
281 m-phage dynamics are genetic, molecular, and structural characterizations of these groups of phages.
282 products along with in-depth biochemical and structural characterizations of these large enzymes have
283 eptides are largely unknown due to a limited structural characterization of this protein family.
284 Here we report the synthesis, isolation, and structural characterization of three cadmium selenide QD
285 ygenated diterpenoids, which in turn enabled structural characterization of three novel compounds pro
286  lactams by treatment with acid and the full structural characterization of three resulting N-protona
287 ia borane (AB) have led to the syntheses and structural characterizations of three anionic aminoboran
288 ere greatly expand the utility of NMR in the structural characterization of transient states in nucle
289 yze misfolded proteins and peptides, but the structural characterization of transiently formed misfol
290 e general problem of determining the precise structural characterization of translocation breakpoints
291                               Functional and structural characterizations of TRPV1 shed light on vani
292             Here we present a functional and structural characterization of two closely related AA9-f
293                            The synthesis and structural characterization of two novel ternary interme
294 tudy reports on the detailed biochemical and structural characterization of two of these.
295                 The analysis also led to the structural characterization of two reactive precolibacti
296                                 Solution and structural characterization of two such sets of orthogon
297   Here we describe a solution-NMR method for structural characterization of UCP2.
298              In addition, we also report the structural characterization of vDHBPS in its apo form an
299                        Thus, the kinetic and structural characterization of vDHBPS reveals the molecu
300 us expression and subsequent biochemical and structural characterization of ZgLamAGH16 from Zobellia

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