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3 generate electricity from the waste heat can play a key role in achieving a global sustainable energy
6 ults suggest that epicardial Hippo signaling plays a key role in adaptive immune regulation during th
7 ear that antigen presentation in lymph nodes plays a key role in adaptive immunity, the cellular mech
8 e kinase (ATM) to the damaged site, where it plays a key role in advancing the DNA damage checkpoint
9 xpression of multiple mesenchymal genes that play a key role in airway branching and alveolar formati
12 , homocysteine (Hcy), and glutathione (GSH), play a key role in an extensive range of physiological p
13 yl-CoA with acetaldehyde as intermediate and play a key role in anaerobic redox balance in many ferme
16 vo production of IFN-beta in response to VSV plays a key role in antiviral defense during infection.
17 re, for the first time, we show that Zdhhc13 plays a key role in anxiety-related behaviors and motor
18 sphorylation mediated by PK4 kinase activity plays a key role in artemisinin resistance in recrudesce
19 poral development of extraocular motoneurons plays a key role in assembling a functional oculomotor c
25 family is an important class of enzymes that plays a key role in bacterial resistance to antibiotics.
26 ed that N-cadherin expression in mural cells plays a key role in barrier function, as CRISPR-mediated
27 ngiopoietin 1 (Ang-1) is agonistic for Tie2, plays a key role in blood vessel maturation and stabilit
30 human infants, we have shown that TNF-alpha plays a key role in brain inflammation, including recrui
31 erm birth.Inflammation mediated by microglia plays a key role in brain injury associated with preterm
34 Our data demonstrate that PAR2 signaling plays a key role in CE-induced AHR and airway inflammati
35 in (RIP) homotypic interaction motifs (RHIM) play a key role in cell death and inflammatory signallin
36 B) is a family of transcription factors that play a key role in cell survival and proliferation in ma
38 ferlin is a large transmembrane protein that plays a key role in cell membrane repair and underlies a
39 extracellular matrix or to surrounding cells plays a key role in cell proliferation and differentiati
43 Polycomb-repressive complexes PRC1 and PRC2 play a key role in chromosome silencing induced by the n
46 ention.SIGNIFICANCE STATEMENT Working memory plays a key role in cognition, and working memory is imp
52 s support a model in which this IDR of Med13 plays a key role in controlling a molecular switch that
53 indicate that MrpL35, with its partner Mrp7, play a key role in coordinating the synthesis of the Cox
54 es changes in the filter conformation, which play a key role in defining both selectivity and permeat
55 figurations of these entanglements appear to play a key role in determining the polymerization rates
56 ll (cubic zinc-blende or hexagonal wurtzite) plays a key role in determining the photoluminescence pr
58 odeling shows that the elastic strain energy plays a key role in determining the total formation ener
59 RK pathway, the serine/threonine kinase BRAF plays a key role in development and homeostasis and repr
61 networks and their underlying metric spaces play a key role in dictating the existence of multi-frac
63 imosomal protein from Gram-positive bacteria plays a key role in DNA replication and restart as a loa
64 its introduction in 2009, this technique has played a key role in driving biological discovery, and y
65 r filopodia or phagocytic cup formation, but plays a key role in driving macrophage lamellipodial spr
66 , NMDA receptor-mediated AMPK inhibition may play a key role in early brain metabolic defects in AD.
67 the redox non-innocence of the pyridine can play a key role in enabling high regioselectivity for di
68 ne of the central processes in cell biology, playing a key role in endocytosis, exocytosis, and vesic
69 suggested that reactive oxygen species (ROS) play a key role in epigenetic regulation of miR-663.
71 e data demonstrate that the cAMP-PKA pathway plays a key role in epigenetic regulation of key profibr
72 basic building block of the chromatin fiber, plays a key role in epigenetic regulatory processes that
73 up the oral microbiome are now understood to play a key role in establishment and maintenance of oral
75 eous catalysts in which the chelating ligand plays a key role in facilitating the catalytic reaction
76 nuclear GSK3beta by Ser(389) phosphorylation plays a key role in fear response, revealing new potenti
79 ization of contractile cytoskeletal networks plays a key role in force generation, while on the tissu
80 troma stimulated CRC development and growth, played a key role in formation of the immune-privileged
83 coelastic properties, which we speculate may play a key role in generating heterogeneous mechanical s
84 an orthogonal pattern of growth orientations plays a key role in generating out-of-plane deformations
85 Single-stranded DNA-binding proteins (SSBs) play a key role in genome maintenance, binding and organ
87 atrol, pterostilbene, piceids and viniferins play a key role in grapevine (Vitis vinifera) leaf defen
88 that the immediate-early 2 (IE2) protein may play a key role in HCMV-caused neurodevelopmental disord
91 rominent corepressor is TOPLESS (TPL), which plays a key role in hormone signaling and development.
95 ement of sulfate groups along the GAG chain, plays a key role in HSV binding, we tested two native GA
98 ind that none of these residues in isolation plays a key role in IAPP self-assembly, whereas simultan
99 The adenylate cyclase toxin-hemolysin (CyaA) plays a key role in immune evasion and virulence of the
100 for the hypothesis that oxidative stress may play a key role in impacting TRN PV neurons at early sta
101 13A5), a sodium-coupled citrate transporter, plays a key role in importing citrate from the circulati
102 ugh intestinal barrier disruption presumably plays a key role in inflammatory bowel disease (IBD) dev
106 nsic, Caspase-1 and -8 inflammasome response plays a key role in intestinal immune defense and pathol
107 bsiding volcano-tectonic barriers would have played a key role in Late Cretaceous climate changes.
109 folding that holds chromosome pairs together plays a key role in limiting the levels of double-strand
111 ecule (CAM) localized at neuronal membranes, playing a key role in maintaining the mechanical integri
114 nslational regulation of L1 retrotransposons plays a key role in maintaining trans-generational genom
115 nterspecific social information transfer can play a key role in many aspects of animal ecology from f
117 ameter-growth cessation in trees will likely play a key role in mediating species and ecosystem respo
118 protein kinase catalytic subunit (DNA-PKcs) plays a key role in mediating non-homologous end joining
119 reactive oxygen species (ROS) in the kidney plays a key role in mediating renal injury in diabetes.
121 These findings indicate that Grx1 induction plays a key role in mediating the protective effect of l
122 hese data provide in vivo evidence that TIA1 plays a key role in mediating toxicity and further sugge
123 t the RSC is very active during PS and could play a key role in memory consolidation taking place dur
124 lian target of rapamycin complex 1 (mTORC1), plays a key role in metabolism and binds chromatin; howe
125 n regions are rich in androgen receptors and play a key role in modulating aggressive behavior in ani
126 ential expression of restriction factors may play a key role in modulating the susceptibility of diff
128 vertebrate, we show that the gut microbiota plays a key role in modulating vertebrate life span.
130 udies of MhsT and LeuT, we propose that TM5i plays a key role in Na2 binding and release associated w
131 first time that local mRNA sequence context plays a key role in near-cognate aminoacyl-tRNA selectio
132 nd mammalian target of rapamycin and as such plays a key role in neuronal function and survival.
136 the G protein coupled receptor (GPCR) S1pr2, plays a key role in pancreas development linking lineage
144 A (SAUR) genes promote elongation growth and play a key role in PM H(+)-ATPase activation by inhibiti
151 s that 8-oxo-purine ribonucleotides may have played a key role in primordial nucleic acids prior to t
152 on of these modes demonstrating that sulfate plays a key role in producing highly acidic fine aerosol
153 sable elements in prokaryotic genomes, which play a key role in prokaryotic genome organization and e
155 encircling the anterior portion of the eye, plays a key role in promoting aqueous humor outflow and
157 ein, we show that focal-adhesion-kinse (FAK) plays a key role in promoting hepatic stellate cells (HS
158 rfamily of GTPases, and Ras-PI3K interaction plays a key role in promoting tumor formation and mainte
159 dial (lch5) organ of Drosophila larvae-which plays a key role in proprioceptive locomotion control.
160 servations confirm that catchment morphology plays a key role in providing refuges with low groundwat
162 c structure and strong electron correlations plays a key role in realizing robust superconductivity w
167 t, a dynamic process which has been shown to play a key role in regulating both cellular adhesive pro
168 -cells of pancreatic islets, K(ATP) channels play a key role in regulating glucose-dependent insulin
172 rier transport of Abeta, suggesting it might play a key role in regulating the balance between Abeta
173 CANCE STATEMENT CaV1 L-type calcium channels play a key role in regulating the output of central neur
175 modification of proteins by phosphorylation plays a key role in regulating all aspects of eukaryotic
176 SK channels in spines by backpropagating APs plays a key role in regulating both EPSP amplitude and S
178 te nucleus of the mammalian hypothalamus and plays a key role in regulating food consumption and ener
179 nating from the ventral tegmental area (VTA) plays a key role in regulating reward-seeking behaviors.
180 CREB-H, an ER-anchored transcription factor, plays a key role in regulating secretion in metabolic pa
181 n convertase subtilisin/kexin type 9 (PCSK9) plays a key role in regulating the levels of plasma low-
182 of RIPK1 in the intermediate domain by TAK1 plays a key role in regulating this critical decision.
191 man and Syme's research in 1979 continues to play a key role in shaping recent efforts to uncover the
193 activation of the cAMP/pkA signaling pathway play a key role in spontaneous lizard retinal axon regen
195 The surface tension (gamma) of xylem sap plays a key role in stabilizing air-water interfaces at
197 rovide direct evidence that epithelial cells play a key role in stimulating connective tissue healing
200 inding site distal to the active center that plays a key role in substrate DNA binding and catalytic
204 The alphaLbeta2 integrin LFA-1 is known to play a key role in T lymphocyte migration, which is nece
205 llular pool of LFA-1 in naive CD8(+) T cells plays a key role in T cell activation and differentiatio
207 ne structure of the fatty acids was found to play a key role in the binding of a glycolipid to the ca
208 nt of the basal ganglia and is well known to play a key role in the control of motor function via bal
209 Prefibillar species have been proposed to play a key role in the cytotoxicity of amyloid fibrils a
210 ergence and integration network suggested to play a key role in the definition of peripersonal space.
213 y sensorimotor experience, and therefore may play a key role in the development of imitative capaciti
217 expressed within or around organ primordia, play a key role in the formation, shaping, and subdivisi
218 principal neurons of the mammalian brain and play a key role in the function of nerve cell circuits.
221 mmune responses against HIV-1.IMPORTANCE DCs play a key role in the induction of immune responses aga
222 developmental and peroxisomal processes that play a key role in the maturation and stability of corti
223 energy densities, all-solid-state batteries play a key role in the next generation energy storage de
225 an electron and a hole in a solid material, play a key role in the optical properties of insulators
226 , a degenerative process that is believed to play a key role in the pathogenesis of many diseases, ar
227 (+) T cells within the CNS are considered to play a key role in the pathogenesis of multiple sclerosi
228 Accumulating evidence indicates that T cells play a key role in the pathology of lymphedema by promot
229 the specific arrangement of the linkers can play a key role in the photophysical properties of MOFs.
233 ion by electrocatalytic water splitting will play a key role in the realization of a sustainable ener
234 differentiation, indicating that macrophages play a key role in the redifferentiation of the blastema
236 c BRDT members, are epigenetic "readers" and play a key role in the regulation of gene transcription.
237 We conclude that adipose tissue eosinophils play a key role in the regulation of normal PVAT anti-co
238 r species for influenza A viruses (IAVs) and play a key role in the transmission of IAVs between spec
242 ducing organelles of bacterial ancestry that played a key role in the origin and early evolution of c
243 indicates that a reduction of insolation is playing a key role in the link between the weakening of
244 toskeletal changes and inflammation, thereby playing a key role in the mechanisms of disease progress
245 the GDP-binding pocket identified Arg(93) as playing a key role in the nucleotide interaction and rev
246 ion of reactive oxygen species (ROS) in vivo plays a key role in the ageing process has been extensiv
247 itment of NMII to the secretory granules but plays a key role in the assembly and activation of NMII
248 unit of the NADH: ubiquinone oxidoreductase, plays a key role in the assembly and activity of complex
249 system promotes depressive-like behavior and plays a key role in the aversive effects of stress.
255 with these entities is important as imaging plays a key role in the diagnostic workup, and prompt di
256 transporter 4 (Glut4) to the plasma membrane plays a key role in the dynamic regulation of glucose ho
257 results demonstrate that glutamate signaling plays a key role in the dynamics of SD, and that impaire
258 gamma production by these lymphocytes likely plays a key role in the early control of the parasite an
259 led by metals and ceramics, polymer-based AM plays a key role in the emerging AM of advanced multifun
261 ll-specific transmembrane protein (DC-STAMP) plays a key role in the induction of osteoclast (OC) cel
264 flammasome, a caspase-1 activation platform, plays a key role in the modulation of liver inflammation
267 escence proves that the halide stoichiometry plays a key role in the optoelectronic properties of the
268 the endothelium by pro-inflammatory stimuli plays a key role in the pathogenesis of a multitude of v
270 Brain-derived neurotrophic factor (BDNF) plays a key role in the pathophysiology and treatment of
272 cription factor SHORT VEGETATIVE PHASE (SVP) plays a key role in the progression from vegetative to f
275 Collectively, our data suggest that USP15 plays a key role in the regulation of dynamic protein-pr
278 E STATEMENT Water channel aquaporin 4 (AQP4) plays a key role in the regulation of water homeostasis
280 ocalized in the ventral tegmental area (VTA) plays a key role in the reinforcing and addictive proper
282 nce of dibenzyl substituents at the nitrogen plays a key role in the stereochemical outcome of the re
283 eeping sigma(70)-holoenzyme (Esigma(70)) and plays a key role in the transcriptional reprogramming up
285 he ion to be incorporated into the ice phase plays a key role in the ultimate size of the ice grains
290 The inflammatory mediators, COX-2 and PGE2, played a key role in this effect, as indicated by honoki
293 endent up-regulation of Cox-1 expression may play a key role in tissue homeostasis and wound healing
294 served innate immune system is considered to play a key role in tissue injury recognition and the sub
297 iator is a multi-unit molecular complex that plays a key role in transferring signals from transcript
298 ond those for the environment, indeed it may play a key role in transitioning towards a more sustaina
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