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1 ter exemplified by immunoprecipitation after chemical cross-linking.
2 of the CbbRRS system), confirmed in vitro by chemical cross-linking.
3 d to ssDNA was determined by protein-protein chemical cross-linking.
4 roduced using homology modeling coupled with chemical cross-linking.
5 adily forms robust gels without the need for chemical cross-linking.
6 inding interactions with SERCA2a measured by chemical cross-linking.
7 nsgenic mouse lens extracts prepared without chemical cross-linking.
8 luorescent protein to the plasma membrane or chemical cross-linking.
9 ssembly of elastic fibers in vivo, preceding chemical cross-linking.
10 a2+ pump (SERCA2a) have been investigated by chemical cross-linking.
11 polymerase chain reaction (PCR), as well as chemical cross-linking.
12 stabilize the pulled nanotubes by subsequent chemical cross-linking.
13 ast to many chaperone complexes that require chemical cross-linking.
14 atography coupled with light scattering, and chemical cross-linking.
15 and alpha,gamma-associations as detected by chemical cross-linking.
16 ated ELP3 and form stable helices only after chemical cross-linking.
17 ycol)-b-poly(L-lysine) (PEG-PLL) followed by chemical cross-linking.
18 we investigated RGS7 complexes using in situ chemical cross-linking.
19 erize it by small-angle x-ray scattering and chemical cross-linking.
20 s (Ag-coupled splenocytes [Ag-SPs]) with the chemical cross-linking agent ethylene-carbodiimide, whic
22 d a non-membrane-permeable cysteine-specific chemical cross-linking agent, a dimer is the predominant
23 results demonstrated that the application of chemical cross-linking agents to etched dentin prior to
25 ilization of peptide oligomers using in situ chemical cross-linking allowed detailed study of their p
27 te the null-like drug sensitivity phenotype, chemical cross-linking analysis revealed no apparent def
29 longated dimers and tetramers as revealed by chemical cross-linking and analytical ultracentrifugatio
31 Here we have addressed this issue by both chemical cross-linking and direct imaging of individual
33 al significance has been verified using both chemical cross-linking and electron paramagnetic resonan
35 forms of each AUF1 protein variant, we used chemical cross-linking and gel filtration chromatography
40 ADHc pathway, supplemented with results from chemical cross-linking and hydrogen-deuterium exchange M
43 We extended the target validation method chemical cross-linking and isolation by pull-down (Chem-
44 o directly target tau pre-mRNA in cells, via chemical cross-linking and isolation by pull-down target
48 3.3 angstrom resolution, in conjunction with chemical cross-linking and mass spectrometric analysis o
49 alytic dimer (alphabeta), based primarily on chemical cross-linking and mass spectrometric analysis.
51 ryo-electron microscopy and verified it with chemical cross-linking and mass spectrometry analysis.
54 raction but not for cleavage of Pro-sigma(K) Chemical cross-linking and mass spectrometry of purified
58 tagging-method, in combination with isotopic chemical cross-linking and mass spectrometry, we have lo
69 to antigen-scaffold linkage: genetic fusion, chemical cross-linking and plug-and-display SpyTag/SpyCa
70 gions of Pluronic F127 micelles, followed by chemical cross-linking and subsequent removal of non-cro
71 Using a proteomic approach based on in-cell chemical cross-linking and tandem affinity purification
72 hermus aquaticus Ffh.FtsY complexes by using chemical cross-linking and tandem mass spectrometry to i
76 tion networks by using data from structural, chemical cross-linking and various high-throughput studi
78 , enzyme-linked immunosorbent assay (ELISA), chemical cross-linking, and ATPase activity) provided ev
79 rs, increased susceptibility of integrins to chemical cross-linking, and biochemical detection of lar
80 yphenylalanine (DOPA) for periodate-mediated chemical cross-linking, and biotin was conjugated to Lys
82 oscopy, small-angle X-ray scattering (SAXS), chemical cross-linking, and enzymatic assays to enlarge
86 y, bimolecular fluorescence complementation, chemical cross-linking, and reciprocal coimmunoprecipita
88 opy, X-ray crystallography, residue-specific chemical cross-linking, and several proteomics technique
89 erium exchange coupled to mass spectrometry, chemical cross-linking, and small angle x-ray scattering
90 e results of analytical ultracentrifugation, chemical cross-linking, and tryptophan fluorescence anal
93 tron-microscopy, cysteine-accessibility, and chemical cross-linking, as well as by computational appr
97 rium exchange (HDX), protein footprinting or chemical cross-linking can provide us with structural in
101 receptor, as the receptor for TLQP-21 using chemical cross-linking combined with mass spectrometry a
102 is, electron microscopic reconstruction, and chemical cross-linking combined with mass spectrometry a
105 to investigate protein/protein interactions, chemical cross-linking combined with mass spectrometry r
107 ultiple experimental constraints provided by chemical cross-linking combined with mass spectrometry,
119 ral approach using cryo-electron microscopy, chemical cross-linking coupled with mass spectrometry, a
120 pts red cell membranes were elucidated using chemical cross-linking coupled with mass spectrometry.
121 tural modeling approach consisting of EM and chemical cross-linking coupled with MS analyses, to anal
122 combination of site-directed mutagenesis and chemical cross-linking, coupled with crystallographic an
123 des this nonspecific oligomerization, MS and chemical cross-linking data combined with CD spectra pro
125 tic analysis, analytical gel filtration, and chemical cross-linking demonstrated that the nucleotide-
126 ally tagged RGS7 constructs, with or without chemical cross-linking, demonstrated RGS7 self-associati
127 -protein interface from NMR spectroscopy and chemical cross-linking detected by mass spectrometry.
129 or-intensive biophysical experiments such as chemical cross-linking, electron paramagnetic resonance,
130 body specific to K-varepsilon-GG to beads by chemical cross-linking, enrichment of ubiquitinated pept
132 rotein-protein interactions was supported by chemical cross-linking experiments combined with LC-MS/M
134 ssociated with the tetramer as isolated, and chemical cross-linking experiments confirm that the tetr
137 itation, analytical ultracentrifugation, and chemical cross-linking experiments have shown that an in
140 ative polyacrylamide gel electrophoresis and chemical cross-linking experiments suggested that AcrB(D
142 e cross-linking reagents and methodology for chemical cross-linking experiments using tandem mass spe
151 sed to unravel protein interaction surfaces, chemical cross-linking followed by identification of the
156 tudy of proteins and protein complexes using chemical cross-linking followed by the MS identification
157 scopy along with our established paradigm of chemical cross-linking followed by tryptic digestion, ma
158 oligomerization has mainly been assessed by chemical cross-linking following cell fractionation stud
159 tionships are investigated: (i) differential chemical cross-linking for the control of membrane disas
160 ucture of hOAT1 using combined approaches of chemical cross-linking, gel filtration chromatography, c
161 nd immunoprecipitations that use physical or chemical cross-linking--have been developed to address t
167 osed on the basis of the analytical data and chemical cross-linking in tandem with mass analysis usin
171 at least two PC bound that is stabilized by chemical cross-linking interacts more effectively with a
176 uterium exchange mass spectrometry (HDX-MS), chemical cross-linking mass spectrometry (XL-MS), and mo
178 enerated a structural model of Rabex5, using chemical cross-linking mass spectrometry and integrative
179 rstanding of mitochondrial function, we used chemical cross-linking mass spectrometry to identify 2,4
180 n solution nuclear magnetic resonance (NMR), chemical cross-linking, mass spectrometry, and molecular
181 wo well established experimental approaches: chemical cross-linking/mass spectrometry (MS) and intern
182 The number of publications in the field of chemical cross-linking/mass spectrometry (MS) for derivi
183 this end, we have utilized a combination of chemical cross-linking/mass spectrometry and computation
185 lized near the actin and myosin interface by chemical cross-linking methods, but its functional contr
186 S, bottom-up proteomics, ion mobility-MS and chemical cross-linking MS into modeling restraints to co
187 he entire beta subunit was constructed using chemical cross-linking, MS, threading, and ab initio app
188 trophysiology, chemical ligand modification, chemical cross-linking, MS/MS-analyses and molecular mod
190 e oligomeric structure of Ano1, we performed chemical cross-linking, non-denaturing PAGE, and electro
195 nteracting residues on FXIII-A(2)* following chemical cross-linking of fibrin(ogen) alphaC389-402 pep
203 The use of mass spectrometry coupled with chemical cross-linking of proteins has become a powerful
204 ermits continuous tuning of RBC strains, and chemical cross-linking of RBCs, a model for diseased cel
206 fulfills distance constraints obtained from chemical cross-linking of the complex at multiple recurr
209 y adsorbed on Au microelectrodes followed by chemical cross-linking of the enzymes acetylcholinestera
213 locked in either the closed or open state by chemical cross-linking or deletion mutagenesis and showe
215 t amounts of stable APD in solution, without chemical cross-linking or polymerization-affecting compo
216 erences in proteolytic cleavage patterns and chemical cross-linking patterns were consistent with kno
217 oaches, including site-directed mutagenesis, chemical cross-linking, peptide mapping, and LC-MS/MS an
220 loops in Drosophila were determined by Hi-C (chemical cross-linking, restriction digestion, ligation,
221 dynamic neuron-oligodendrocyte signaling by chemical cross-linking results in aberrant myelination o
223 Site-directed mutagenesis combined with chemical cross-linking revealed that residue 238 of DrAB
224 gle x-ray scattering (SAXS) measurements and chemical cross-linking revealed that the pASK1-CD.14-3-3
225 red to as the "pointed-end complex." We used chemical cross-linking, RNA interference, and protein ov
226 d immunosorbent assay, Western blot, in vivo chemical cross-linking, ROS assay, and immunofluorescenc
228 electrophoresis under anoxic conditions and chemical cross-linking showed that holo-NfuA forms dimer
231 in the monomeric state (for example, through chemical cross-linking) significantly hampers the fibril
232 lved in the Fd-Delta9D complex by the use of chemical cross-linking, site-directed mutagenesis, stead
234 tathione S-transferase pulldown experiments, chemical cross-linking, size exclusion chromatography, c
235 on method involves microsomal fractionation, chemical cross-linking, solubilization, and one-step aff
236 upted by solubilization in Triton X-100, but chemical cross-linking stabilizes a putative assembly in
237 allenges in protein interaction studies with chemical cross-linking stems from the complexity of intr
238 hylaminopropyl) carbodiimide (EDC)-mediated, chemical cross-linking step that enhances detection of s
240 e G protein-coupled receptor-Galphai protein chemical cross-linking strategy to map the cannabinoid r
243 e basis for small angle x-ray scattering and chemical cross-linking structural analysis of the discre
245 s, density-gradient ultracentrifugation, and chemical cross-linking studies indicated that the functi
249 or for XMRV, Xpr1, mediates this effect, and chemical cross-linking studies show that Xpr1 is associa
253 homodimer." Furthermore, the EPR data and a chemical cross-linking study demonstrated the existence
254 We combined mass spectrometry (MS) with chemical cross-linking, surface accessibility measuremen
258 Consistent with this, we identified through chemical cross-linking that Ecm29 binds to, or in close
259 ss, we show by a yeast two-hybrid system and chemical cross-linking that the lumenal domain of IRAP c
260 ed every prediction tested: Any mutation (or chemical cross-linking) that impaired a conformational r
265 serum albumin (BSA) in solution followed by chemical cross linking to a gold surface through a sulfh
266 angle x-ray scattering and isotope-assisted chemical cross-linking to apoA-I(Delta185-243) in its di
267 To build a more complete model, we used chemical cross-linking to derive distance constraints ac
268 e used time-resolved limited proteolysis and chemical cross-linking to examine nucleotide-induced str
269 , electron paramagnetic resonance (EPR), and chemical cross-linking to probe for intermolecular inter
270 y we used quantitative mass spectrometry and chemical cross-linking to quantify differences in cross-
271 Ono et al. used rapid, zero-length, in situ chemical cross-linking to stabilize the oligomer state,
272 ested this by using cysteine mutagenesis and chemical cross-linking to verify proximal relationships
281 ion and complex structure associations using chemical cross-linking, we have developed a combination
282 Using NMR spectroscopy, gel filtration, and chemical cross-linking, we obtained direct evidence for
283 dy, using analytical ultracentrifugation and chemical cross-linking, we show that calcium or strontiu
285 nation of optical tweezers, mutagenesis, and chemical cross-linking, we show that three structural el
287 this protein to form dimers, as detected by chemical cross-linking, were consistent with the higher
288 ected mutagenesis, cysteine replacement, and chemical cross-linking, were employed to identify contac
289 ini-spectrin dimer were probed further using chemical cross-linking, which identified distinct groups
290 arrier- and PCFT-null HeLa (R1-11) cells and chemical cross-linking with 1,1-methanediyl bismethaneth
291 Thermal curing under reduced pressure or chemical cross-linking with a diepoxide was shown to fix
292 L-6 antibody and protein G was stabilized by chemical cross-linking with glutaraldehyde and the captu
298 termed "multimer-PAGE," that combines in-gel chemical cross-linking with several common electrophoret
299 lose sulfhydryl groups in proteins employing chemical cross-linking with the fluorogenic, homobifunct
300 cted mutagenesis, fluorescence labeling, and chemical cross-linking, with yeast actin mutants contain