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1 -degrading bacteria at the physiological and molecular level.
2 l compounds, though poorly understood at the molecular level.
3 ne might expect corresponding changes at the molecular level.
4 biological effects of NGF and proNGF at the molecular level.
5 tigation of the influence of knotting at the molecular level.
6 tand the adsorption of chiral compounds at a molecular level.
7 zed actuation of the mechanical bonds at the molecular level.
8 spatial resolution approaching virtually the molecular level.
9 r understanding of how cells function at the molecular level.
10 these mutations enable host adaptation on a molecular level.
11 to better understand ADP-ribosylation at the molecular level.
12 dapted species never described before at the molecular level.
13 , yet they are rarely well understood at the molecular level.
14 cture of the DASA isomerization pathway on a molecular level.
15 ough specific mechanisms poorly known at the molecular level.
16 he bacterial reductive dehalogenation at the molecular level.
17 erized the cation-preferring channels at the molecular level.
18 how genetic variants influence traits at the molecular level.
19 sable to understanding their mechanisms on a molecular level.
20 sed on spin-polarized currents controlled at molecular level.
21 mode of action of these biomolecules at the molecular level.
22 promotes BAT dysfunction, especially at the molecular level.
23 h DUB specificity has been understood at the molecular level.
24 host-I2 and I2-I2 binding interactions at a molecular level.
25 comparison of human and mouse biology at the molecular level.
26 ogical processes in cells and tissues at the molecular level.
27 erstand evolution of assortative mating at a molecular level.
28 in temporal cortex, suggesting a role at the molecular level.
29 better understanding of the technology at a molecular level.
30 Kdo-N3 incorporation into E. coli LPS at the molecular level.
31 terise how well these interfaces work at the molecular level.
32 te and visualize the electrostatic forces at molecular level.
33 diverse cells perceive ECM alignment at the molecular level.
34 which constitute fundamentals of life on the molecular level.
35 no- and oligosaccharides was assessed at the molecular level.
36 esponding birch pollen allergen Bet v 1 at a molecular level.
37 al sciences, but it is not understood at the molecular level.
38 ubstrates, alpha-Fe2O3 nanoparticles, at the molecular level.
39 DNA robot that performs cargo sorting at the molecular level.
40 lved in this tolerance remain unclear at the molecular level.
41 sm seems to be different from mammals at the molecular level.
42 cell surface adhesion at the functional and molecular level.
43 how such interactions emerge and evolve on a molecular level.
44 vailable tools to mimic such structures at a molecular level.
45 s are insufficiently understood at the basic molecular level.
46 gistics of working with these creatures at a molecular level.
47 efore allow investigation of phenotypes at a molecular level.
48 to our understanding of cell membranes at a molecular level.
49 function, yet it is poorly understood at the molecular level.
50 ssion to humans and initial infection at the molecular level.
51 mputational model of toxin production at the molecular level.
52 yers of water on Ru(0001) and Pt(111) at the molecular level.
53 ed pseudotyping, is poorly understood at the molecular level.
54 ediates at the solid-liquid interface at the molecular level.
55 er matrices to mimic biological systems at a molecular level.
56 n is surprisingly difficult to obtain at the molecular level.
57 active T cells and characterized them at the molecular level.
58 ledge of how drugs interact with P-gp at the molecular level.
59 ing the cell's nanoscale architecture at the molecular level.
60 e sub-atomic, atomic, supra-atomic, or supra-molecular level.
61 ure's solution for directing movement at the molecular level.
62 s for modeling neurological disorders at the molecular level.
63 on and outcome of the immune response at the molecular level.
64 t where we can truly connect the dots at the molecular level.
65 (Cyt) b6f within thylakoid membranes at the molecular level.
66 rvr1 is similar to the vernalized state at a molecular level.
67 ships, but is often poorly understood at the molecular level.
68 ge of the proteome-wide interaction space at molecular level.
69 understand interspecies PrP propagation on a molecular level.
70 ly due to species separation enforced at the molecular level.
71 ehensive picture of energy conversion at the molecular level.
72 stics disclosed also a high heterogeneity at molecular level.
73 de materials can be tuned rationally, at the molecular level.
74 e clarified at the population, cellular, and molecular levels.
75 as evaluated at morphologic, histologic, and molecular levels.
76 t effects can be produced at the circuit and molecular levels.
77 ively at the whole-heart, cardiomyocyte, and molecular levels.
78 tic insights on how it works at cellular and molecular levels.
79 ental effects of ageing at morphological and molecular levels.
80 at the clinical, pathological, cellular, and molecular levels.
81 responses, very little is understood at the molecular level about the initial sensing of environment
84 ombus formation are yet to be defined at the molecular level, allosteric disulfide bonds that are mod
87 The etiology is not well understood on a molecular level and causal agents show a great diversity
88 of action of several KCa3.1 blockers at the molecular level and could be used for structure-assisted
89 al knowledge about interacting partners on a molecular level and focusing comparative sequence analys
90 in both living and nonviable systems at the molecular level and has a high potential on early diagno
91 disease progression at both the cellular and molecular level and identify A20 as a novel downstream s
92 late transport has been characterized at the molecular level and is performed by at least one carrier
93 e a fundamental understanding of life at the molecular level and lead to important applications to bi
94 acilitated by host-guest interactions at the molecular level and nanofibril formation at colloidal-le
95 l-time will help understand the changes on a molecular level and offers us a basis to understand the
96 rities between Gs and Golf activation at the molecular level and provides a novel set of tools to sea
97 rgen molecules dissect the IgE response on a molecular level and put allergy research on the map of p
98 e a rare glimpse of silicon chemistry on the molecular level and shed light on the remarkable non-adi
100 d adult reticulocytes functionally or at the molecular level, and importantly no aberrant protein exp
101 m umbilical cord's Wharton's Jelly (WJ) on a molecular level, and potentially render them unsuitable
102 hromosomes has not been characterized at the molecular level, and the degree of sequence variation am
103 etic proton undergo ionization at individual molecular level, and the excitation primarily derives fr
104 ontribute to deciphering Ub signaling at the molecular level, and with the synthetic tools in hand, c
105 To address this deficiency a biomimetic molecular-level approach is developed that employs light
107 he non-covalent interaction is to direct the molecular-level arrangement (or disposition) of the tect
108 there is little mechanistic evidence at the molecular level as to how changes in temperature are tra
109 d via insect vectors, little is known at the molecular level as to how the viruses are recognized and
110 understand antibody-mediated immunity at the molecular-level based on the direct determination of ser
113 nt maturation (SFTP-B, SFTP-D, ABCA3) at the molecular level, but did not alter the numerical density
114 potent states have been characterized at the molecular level, but their biological importance remains
115 nective tissue disorder characterized at the molecular level by a loss of telopeptide lysine hydroxyl
116 omochiral or heterochiral aggregation at the molecular level by chiral and prochiral adsorbates on su
117 In these processes, forces generated at the molecular level by motor proteins are transmitted by dis
118 We validated the network architecture at the molecular level by native polyacrylamide gel electrophor
119 regulated steps that are orchestrated at the molecular level by specific cyclins that act in associat
120 developing world and are characterized on a molecular level by the presence of genes that encode the
121 ges a divide, showing how replication at the molecular level can be used to drive macroscale droplet
122 nderlying plant biomass recalcitrance at the molecular level can only be achieved by accurate analyse
123 planations for microcephaly are supported by molecular level changes that may have increased its viru
127 coupled these macroscopic measurements with molecular-level characterization of the polysaccharide c
129 M mutations cause compound phenotypes at the molecular level, combining compromised DNA binding with
130 erences in the dynamics of ILs in SILMs on a molecular level compared to the bulk IL, and the study o
131 se, bulk chemical properties (O:C, H:C), and molecular-level composition of SOA formed from the ozono
132 rin-mediated traction forces at the bulk and molecular levels, consistent with a motor-clutch model i
133 sophisticated interfacial design, often with molecular level control, but we have no tools to charact
135 nction of such a repression mechanism at the molecular level could lead to a disturbance of later eve
136 ransport resonances associated with discrete molecular levels could play a key role in thermoelectric
139 therapeutic strategies, but visualizing the molecular-level details of this exchange has been diffic
144 s emerge from metabolic regulation, from the molecular level (e.g. homeostasis of total metabolite po
145 s of such assemblies in cell biology and (3) molecular-level engineering of self-assembled recombinan
146 ochemistry offers exciting opportunities for molecular-level engineering of stress-responsive propert
147 RATIONALE: Stratification of asthma at the molecular level, especially using accessible biospecimen
151 We apply this new technique to elucidate the molecular-level geometry of (13)C-enriched methionine an
152 ity to study disease at the most fundamental molecular level has led to a reclassification of human c
154 g the electrostatics of lipid membranes at a molecular level has the potential to offer great insight
157 d nine Btk inhibitors and characterized on a molecular level how their interactions with Btk define t
158 ortant step forward in understanding, at the molecular level, how a major agricultural pest promotes
160 , including i) adverse effect; ii) effect at molecular level; iii) effect related to pharmacokinetics
163 ions how plasma-generated RONS interact on a molecular level in a biological environment, e.g. cells
166 tends those observations to the cellular and molecular level in the centrilobular phenotype of emphys
167 logues are prepared and characterized at the molecular level, in particular by solid-state NMR, and t
169 ong 5-HT neuron subtypes at the cellular and molecular levels, including differences in the capacity
170 surface patterning, opening new avenues for molecular level information storage, and boosting the em
171 merged as a powerful approach to provide key molecular-level information about active-site structures
174 agnosis and treatment of disease by allowing molecular-level information to be used during routine me
176 lecular resolution of this approach offers a molecular-level insight into the dynamics of these bioin
177 vel of single GAG chains, which provides new molecular-level insight into the role of mechanical forc
178 chanism of such processes, as they provide a molecular-level insight of structural and electronic cha
184 noparticles (e.g., Au38), but also represent molecular-level insights on long-standing puzzles in nan
185 rn multi-herb prescriptions through rigorous molecular-level investigations and standardized clinical
187 A deeper understanding of mechanics at the molecular level is essential for the design and construc
188 f host-microbiota interactions (HMIs) at the molecular level is important since it may provide insigh
189 al and phase transformations of water at the molecular level is key to understanding a variety of mul
190 ems, gaining clear mechanistic detail at the molecular level is key towards understanding the operati
194 tions of calcium with lipid membranes at the molecular level is of great importance in light of their
195 tween extrinsic and intrinsic factors at the molecular level is one promising route to identifying th
202 understanding of soil organic matter at the molecular level itself key to develop the most efficient
205 sport mechanisms have been discovered at the molecular level, little is known about the factors regul
206 The ability to use asymmetry to operate molecular-level machines or macroscopically functional d
207 print of MB in birds to characterize, at the molecular level, MB in the non-avian theropod Tyrannosau
208 ts from logistic regression, text-mining and molecular-level measures for comorbidities such as genet
209 construct a drug-specific pathway in which a molecular-level mechanism of action is formulated based
213 inment by light is well characterized at the molecular level, mechanisms that underlie the direct eff
217 o reveal the mechanism of these disorders at molecular level, mobility and spatial rearrangements of
220 The surprisal-based model captures important molecular-level nonequilibrium physics, yet the simple f
221 ies of chemically simple systems, but direct molecular-level observations of nucleation in atmospheri
223 ransmission are regulated independently on a molecular level or whether they are simply a continuum o
227 Importantly, Raman spectroscopy revealed molecular-level perturbations of fibril conformation by
228 Developing nanotechnology that would allow molecular-level phenomena to drive such movements in art
229 ith experimental observations and provides a molecular-level picture of how E1P to E2P enzyme conform
233 is review ranges from the purely fundamental molecular-level processes that govern solvent behavior t
234 es and present new avenues for understanding molecular-level properties influencing expression and so
237 olecular dynamics simulations to resolve the molecular level recognition mechanisms and calculate the
238 ssure versus passive drift in evolution on a molecular level, refutes the debated activity/stability
243 The realization of complex topologies at the molecular level represents a grand challenge in chemistr
244 gineering nanoparticle (NP) functions at the molecular level requires a detailed understanding of the
245 of a gene's expression and regulation at the molecular level requires identification of all proteins
246 efficient access to sequence control at the molecular level, resulting in topologies with specific e
248 stereomers that cannot be deracemized at the molecular level, self-organize to form single-handed hel
249 ddress immunological IgE cross-reactivity on molecular level, seven recombinant antigens 5 of the mos
251 rtance of integrating phenotypic data at the molecular level (signaling and gene expression) with tho
252 on can be segregated at least partially on a molecular level.SIGNIFICANCE STATEMENT Action potential-
253 Here we combine nanoscale experiments with molecular-level simulation to study the breakdown of sph
254 currently very challenging to determine the molecular-level structure(s) of these peptides in the ma
256 ollagen by triple helix formation, to detect molecular level subfailure damage to collagen in mechani
257 tory mechanism utilized by green plants on a molecular level that allows them to safely dissipate the
258 ally important biomarkers at the circuit and molecular level that can now be explored in patients wit
259 chemicals to identify proximal cells at the molecular level that can participate in cooperative proc
260 We have proved for the first time at the molecular level that the o-NO2 group contributes less co
261 mulations approaches to characterize, at the molecular level, the antioxidant capacity of 5-HT and it
266 models to better define, at the cellular and molecular level, the underlying mechanisms between BBB b
269 d by visualizing and recording events at the molecular level, this is still possible only in especial
270 to probe protein-nanoparticle binding at the molecular level, this work reveals one of nature's strat
271 g the effects of HIU on whey proteins on the molecular level, thus moving further toward implementing
272 ses information on pathogen variation at the molecular level to gain insights into a pathogen's niche
273 ow that polycystins and TAZ integrate at the molecular level to reciprocally regulate osteoblast and
274 s integrate extracellular information at the molecular level to regulate YAP1's nuclear localization
276 e ability to characterise variability at the molecular level, to apply mathematical models to the int
279 vitro anticancer activity, which defines the molecular level understanding and regions of structure-a
282 eutics against these bacteria necessitates a molecular level understanding of the structure-dynamics-
283 e [B12X12](2-) MCAs provides the basis for a molecular level understanding of their observed unique p
284 ehicles, focusing on inconsistencies between molecular-level understanding and regional observations.
285 rface complexation is limited by the lack of molecular-level understanding of As-water-mineral intera
287 e to the central role of this cluster in the molecular-level understanding of hydrogen bonding in wat
288 structure is therefore important to obtain a molecular-level understanding of protein functions and t
289 ffective treatments for HCC will depend on a molecular-level understanding of the specific pathways d
294 role of SVP2 in kiwifruit development at the molecular level, we analysed the genome-wide direct targ
297 determine the impact of CAG expansion at the molecular level, we have developed novel allele-specific
299 port for this phylogenetic hypothesis at the molecular level, we sequenced the genomes of four cacti
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