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1              Further findings support PIP2's role in modulating a fast, myosin-independent, and Ca(2+
2 we present clear evidence of the LxL cycle's role in modulating a rapid component of NPQ that is nece
3 at are known to play critical, but distinct, roles in modulating a variety of physiologically relevan
4 on of the xanthene benzoate plays a critical role in modulating Abeta aggregation and cytotoxicity.
5 l metabolites, and other steroids may play a role in modulating Abeta production and thus risk for AD
6 kidney cells, which are best known for their role in modulating acid-base homeostasis.
7 gnment was previously found to have a causal role in modulating activation of inflammatory versus ant
8     In this study, we determined estradiol's role in modulating activity within cortical and subcorti
9 s and processing in the brain and may play a role in modulating AD pathogenesis.
10       To study whether glycosylation plays a role in modulating ADAM activity, a tumor necrosis facto
11 nate control of persistent MNV, apart from a role in modulating adaptive immunity.
12 fy DRN 5-HT neuron activity which may play a role in modulating affective behavior.
13 re rich in androgen receptors and play a key role in modulating aggressive behavior in animal models.
14 icrobial communities (microbiota) may have a role in modulating allergic and immune disorders of the
15 eceptor subtype 1 but not 2 plays a critical role in modulating AMPAR clustering, suggesting that tar
16 r domains of AMPAR and STZ play an important role in modulating AMPAR function through contact surfac
17         Dendritic cells (DC) play a critical role in modulating antigen-specific immune responses eli
18 ally known to regulate histone function, its role in modulating antiviral restriction factor activity
19 ese genes' opposing levels of expression and roles in modulating anxiety behavior.
20 s been shown to weakly repress NFkappaB, its role in modulating AP-1 has not been established.
21 hat EYA4 displays TSG-like properties with a role in modulating apoptosis and DNA repair.
22            These interactions play divergent roles in modulating AQP2 trafficking, phosphorylation, u
23  indicate that norepinephrine may play a key role in modulating arousal states and NREM EEG delta pow
24 Arp3 and show that each one plays a distinct role in modulating Arp2/3 function.
25 ions are scattered randomly, consistent with roles in modulating assembly of higher-order structures
26    Thereby, myeloid ADAM10 may play a causal role in modulating atherosclerotic plaque stability.
27 hat dACC excitatory neurons play a principal role in modulating attention to task-relevant stimuli.
28 smission has been shown to play an important role in modulating attentional processing of visual stim
29 adrenaline or noradrenaline, plays important roles in modulating behavior and synaptic functions.
30 onstrate that sleep plays a more fundamental role in modulating behavioral plasticity than previously
31 effects suggest that the G72 gene may play a role in modulating behaviors relevant to psychiatric dis
32  targets and events may also play a critical role in modulating biological responses to ionizing radi
33 tein in a genetic model reveals an important role in modulating BMP signaling during the asymmetric d
34 R (BB0647) in B. burgdorferi plays important roles in modulating borrelial host adaptation.
35 tions such as phosphorylation play a crucial role in modulating both the tertiary and quaternary stru
36 ection of breast cancer, and their suggested role in modulating breast cancer cell behaviour, very li
37 cer stem cells, indicating that SET9 plays a role in modulating breast cancer metastasis.
38 nding by eIF4E1a 2-fold, demonstrating their role in modulating cap binding.
39 protein-C phosphorylation plays an important role in modulating cardiac muscle function and accelerat
40 nical forces play an increasingly recognized role in modulating cell function.
41 esults indicate that DnaA plays an important role in modulating cell physiology, separate from its ro
42 kine receptor type 4 (CXCR4) plays a crucial role in modulating cell trafficking in hematopoietic ste
43                In addition to its structural role in modulating cell-surface adhesion, here we demons
44 ge of a myriad of genes, which play critical roles in modulating cell cycle arrest, DNA repair, and c
45 ones, brassinosteroids (BRs), play essential roles in modulating cell elongation, vascular differenti
46 Extracellular microenvironments have crucial roles in modulating cell interactions during development
47 l protein kinases PknA and PknB play crucial roles in modulating cell shape and division.
48 ol gene expression patterns and play crucial roles in modulating cell survival and function.
49 pe inactivation of K(+) channels plays a key role in modulating cellular excitability.
50 tification that Parkin has a multifunctional role in modulating cellular fatty acid uptake and mitoch
51  nutrient-limited conditions, suggesting its role in modulating cellular metabolism.
52 ee radical production, may play an important role in modulating cellular signaling under conditions o
53 nd-induced protein allostery plays a central role in modulating cellular signalling pathways.
54 expression changes induced by smoking, their role in modulating changes associated with lung cancer i
55  conformational dynamics of PAGE4 may play a role in modulating changes between PCa cell phenotypes.
56 at chromatin remodeling ATPases have diverse roles in modulating chromatin structure.
57 ssential Argonaute CSR-1 to play key nuclear roles in modulating chromatin, chromosome segregation an
58 atch repair (MMR) pathways play an important role in modulating cis-Diamminedichloroplatinum (II) (ci
59                    Thus, they may play a key role in modulating climate change.
60 er, we reveal that attention plays a crucial role in modulating competition; without attention, rival
61 TnI (C-I) interaction, which plays a crucial role in modulating contractile activation.
62 expressed in the heart, yet their functional roles in modulating contractile function remain incomple
63 n the cerebral cortex, which play a critical role in modulating cortical output to the basal ganglia,
64               Initially identified for their role in modulating CREB transcription, the past 5 years
65 e for a yin-yang of IFN function through its role in modulating crosstalk between multiple cytokines
66 Our study reveals that DAB2IP has a critical role in modulating CSC properties via CD117-mediated ZEB
67 ows that viral genetic factors play a larger role in modulating disease severity than anticipated.
68 tea have been suggested to play an important role in modulating disease-risk in humans by suppressing
69 icoid-KLF11-MAO A pathway may play a crucial role in modulating distinct pathophysiological steps in
70 esolution, in order to better understand its role in modulating diverse behaviors.
71 ries, we identified genes that play critical roles in modulating diverse functions of dendritic cells
72 mmation by Tet proteins independent of their role in modulating DNA methylation remains largely unkno
73 nt effects are implicated as playing a major role in modulating electrostatic interactions via throug
74 ptor, the 5-HT1B receptor has a lesser known role in modulating emotional behavior.
75 -containing microglia may still play a local role in modulating encephalitogenic CD4(+) T cell respon
76 epcans could play an important physiological role in modulating endocannabinoid signaling.
77 r protein sorting 34 (Vps34) plays a central role in modulating endocytic pathways, maintaining podoc
78 hat interleukin 6 and hepcidin play distinct roles in modulating erythropoiesis in AI.
79 ced aversion and suggest a mechanism for its role in modulating escalation of voluntary ethanol intak
80 n plant tissues (endophytic), play an active role in modulating ethylene levels in plants.
81 e highly regulated processes that play major roles in modulating eukaryotic gene expression.
82  glutamate (Glu) receptors (mGluRs) play key roles in modulating excitatory neurotransmission in the
83 r near secretory vesicles, have an important role in modulating exocytosis.
84 mal B cell development and play an important role in modulating expression of the V(D)J recombinase.
85 onstrated that miRNA-449a plays an important role in modulating expression of YKL40 through targeting
86 s been shown that BK channels play a pivotal role in modulating feedback from A17 amacrine cells to r
87 e tested the hypothesis that it also plays a role in modulating flows and matrix hydration potential.
88  POA circuits and highlight their additional role in modulating food intake and body weight.
89  that central TTR may also play a functional role in modulating food intake and energy balance.
90 O were applied to determine their respective roles in modulating gap junction coupling.
91 tance of a novel CRAC domain in GP64 and its role in modulating gene delivery in AcMNPV.
92 other epigenetic signals, plays an important role in modulating gene expression and can therefore est
93 "CpG islands", play a particularly important role in modulating gene expression.
94  translational level also plays an essential role in modulating gene expression.
95 d the associated co-chaperones play a direct role in modulating gene transcription.
96 and euchromatin are likely to have important roles in modulating gene expression and variability with
97 egulators, microRNAs (miRNAs) play important roles in modulating gene expression; therefore, we sough
98  establish that cholesterol plays a critical role in modulating GIRK activity in the brain.
99  adjacent to operons encoding GRs play major roles in modulating GR function in spores of Bacillus sp
100 refore, FXR and SHP appear to play a limited role in modulating HBV biosynthesis, suggesting that alt
101 with SHP, which has been suggested to play a role in modulating hepatic GR function.
102  Macrophage-derived AnxA1 plays a functional role in modulating hepatic inflammation and fibrogenesis
103 egative regulation loop that plays important roles in modulating hepatic circadian rhythmicity and ag
104 egions near the G interface, consistent with roles in modulating heteropolymer assembly.
105 ptidoglycan deacetylation plays an important role in modulating host inflammatory responses to H. pyl
106 The intestinal microbiota plays an important role in modulating host-pathogen interactions, but littl
107 lcium chelating salts may play a more subtle role in modulating hydration during manufacture of casei
108 this signalling complex to play an important role in modulating hypothalamic neuronal excitability, w
109 -mediated Ca(2+) signalling plays a critical role in modulating hypothalamic neurosecretory function.
110  establish that cholesterol plays a critical role in modulating I(K,ACh) in atrial cardiomyocytes via
111                                 However, its role in modulating IFN responses remains poorly defined.
112 address recent findings on caspase-8 and its role in modulating IL-1beta and inflammation.
113 ar features, we conclude that GIMAP6 plays a role in modulating immune function and that it does this
114 ignaling has been shown to play a variety of roles in modulating immune responses to HSV and other pa
115                                 However, its role in modulating immunity in the microanatomical niche
116 d that environmental conditions play crucial roles in modulating immunity and disease in plants and a
117  highlight that dlPFC and ipTC play a causal role in modulating implicit attitudes about violence and
118 o, suggesting that the above process plays a role in modulating inflammatory diseases.
119                          Lubricin may play a role in modulating inflammatory responses through intera
120           The let-7 miRNA family plays a key role in modulating inflammatory responses.
121  from thalamic interneurons plays a critical role in modulating information transfer between thalamus
122 he thalamic reticular nucleus has a critical role in modulating information transfer from the thalamu
123 trophils and the endothelium plays important roles in modulating innate immunity.
124 glucose, GLP-1, or KCl stimulation through a role in modulating insulin secretory vesicle localizatio
125              Interleukin-6 (IL-6) has a dual role in modulating insulin sensitivity, with evidence fo
126  natriuretic peptides that play an important role in modulating intravascular volume and vascular ton
127 nt, thus haem has two functionally separable roles in modulating Irr activity.
128 that ATP binding to synapsin IIa plays a key role in modulating its function and in defining its cont
129      RECQ1's assembly state plays a critical role in modulating its helicase, branch migration (BM),
130 beta-Catenin phosphorylation plays important roles in modulating its functions, but the effects of di
131 re we show that cholesterol plays a critical role in modulating K(ACh) currents (I(K,ACh)) in atrial
132 ewal of LTHSCs and a previously unrecognized role in modulating leukemia development in CML.
133 e examined 48,231 C. elegans genes for their role in modulating lifespan and aging.
134 clock, and its C terminus plays an important role in modulating light sensitivity and activity of the
135          The rs58542926 exerts a significant role in modulating lipid traits, including total cholest
136  data demonstrate that trNK cells play a key role in modulating local responses to ischemic tissue in
137 tem plays an important but poorly understood role in modulating longevity.
138  CK2, which appears to play a key regulatory role in modulating M oligomerization and association wit
139 mation of the VWF A domains plays a critical role in modulating macrophage-mediated clearance of VWF
140 guing possibility that VWF may play a direct role in modulating malaria pathogenesis.
141 ng of placental vitamin D metabolism and its role in modulating maternal circulating vitamin D metabo
142 mics on this timescale suggests an important role in modulating membrane protein function.
143 ve a rather rudimentary understanding of its role in modulating metacommunity assembly.
144 ould be that the modifications play opposite roles in modulating misreading by the two classes of tRN
145  not been appreciated that GatCAB may play a role in modulating mistranslation rates.
146 ved caspase-3, and LC-3 II/I, indicating its role in modulating mitochondrial fragmentation, oxidativ
147  function in skeletal muscle in rodents, its role in modulating mitochondrial function in the liver i
148                     Thus, Grx2 plays a vital role in modulating mitochondrial metabolism in cardiac m
149 ta support a model in which ATM plays direct roles in modulating mitochondrial homeostasis and sugges
150 ient signaling molecule that has a conserved role in modulating mood and behavior.
151 novel regulator of multiple ARGs that have a role in modulating motivation for cocaine.
152  summary, TSP-1 appears to play an accessory role in modulating Mp activity in BlaJ mice in a gender,
153  profiles, and may play important regulatory roles in modulating mRNA degradation or translational ef
154  suggests that TCR pathways may play a wider role in modulating mutation frequencies in different par
155 dy demonstrates that acetylation plays a key role in modulating myocardin function in controlling car
156 ved neurotrophic factor (BDNF) has a crucial role in modulating neural and behavioral plasticity to d
157 emonstrate that cholesterol plays a critical role in modulating neuronal GIRK currents.
158  functions in the CNS, including a potential role in modulating neuronal growth and synapse formation
159         Since the proteasome plays a central role in modulating neuronal response through regulation
160 ind H2S tightly and was postulated to play a role in modulating neuronal sensitivity to H2S in condit
161 ny mammalian CNS neurons where they play key roles in modulating neuronal activity.
162  intrinsic properties, noise plays different roles in modulating neuronal input-output curves, which
163  coagonist of the NMDAR, plays a significant role in modulating NMDAR-mediated synaptic transmission
164          The AT-hook motif in SA1 plays dual roles in modulating non-specific DNA binding and subdiff
165 naling, but recent studies suggest a broader role in modulating normal cellular functions.
166 f cellular homeostasis that have a conserved role in modulating organismal aging and fitness.
167 m bone marrow stromal cells (BMSCs), takes a role in modulating osteoblast and osteoclast formation.
168  metalloprotease aureolysin plays a critical role in modulating osteomyelitis pathogenesis.
169 nd ADP-adenosine signaling play an important role in modulating P2X-mediated BSM contraction.
170 e-receptor-positive breast tumors and play a role in modulating pathway choice for the repair of doub
171 in the Sphagnum bryosphere play an important role in modulating peatland C cycle responses to experim
172 d the first extracellular loop have critical roles in modulating peptide ligand binding and receptor
173 on or ESLD (<30 mg/dl) and appears to have a role in modulating PGE2-mediated immune dysfunction.
174 ranscriptome, with a special interest in its role in modulating placental vascular function.
175 OX and BR pathways and help to clarify their role in modulating plant defense.
176    Thus, in addition to its well-established role in modulating proliferation during periods of tissu
177 onalize the dynamics of S-thiolation and its role in modulating protein nanomechanics, offering molec
178 dependent methyltransferases plays essential roles in modulating protein function in both normal and
179                  NOS1AP gene variants play a role in modulating QT intervals in healthy subjects and
180 -translational modifications play a critical role in modulating RB activity, but additional levels of
181 ans, but whether adiponectin has a causative role in modulating renal disease is unknown.
182  may inhibit fibrosis, suggesting a possible role in modulating renal disease.
183 izes collagen, suggesting that it may play a role in modulating renal fibrosis.
184 c nucleus (STN) is thought to play a central role in modulating responses during conflict.
185 iminished rPPC grey matter volume may have a role in modulating risk preferences in older adults.
186               RNA helicases play fundamental roles in modulating RNA structures and facilitating RNA-
187 at both adrenergic sensors play an important role in modulating several aspects of S. Typhimurium pat
188  results suggest that L(pro) plays a pivotal role in modulating several pathways of the immune respon
189 r with grazing pressure, plays a significant role in modulating shrub encroachment and ensuing land d
190      Regulated actin dynamics play a central role in modulating signaling events at the immunological
191 1) is an actin-regulatory protein that has a role in modulating smooth muscle contraction.
192 ontrols glycosphingolipid synthesis, plays a role in modulating stem cells.
193 poxygenase (5LO), herein we investigated its role in modulating stress-dependent development of the A
194 ditory cortex (A1) have been shown to play a role in modulating subcortical processing.
195 ycans within the A2 domain play an important role in modulating susceptibility to ADAMTS13 proteolysi
196  synaptic terminals, where they play a vital role in modulating synaptic transmission.
197  been clearly demonstrated to serve critical roles in modulating synaptic signaling and plasticity th
198         Co-inhibitory molecules play a major role in modulating T-cell receptor signaling upon antige
199       The actin cytoskeleton plays essential roles in modulating T-cell activation.
200                      However, its functional role in modulating tau neuropathology remains to be eluc
201 s in patients suggest that SP110 plays a key role in modulating TB susceptibility in concert with NFk
202 omere stability and also plays an unexpected role in modulating telomerase enzyme activity.
203 hat human lung fibroblasts play an important role in modulating Th cell responses to NTHi.
204 that magnesium and calcium ions play a major role in modulating the ability of these enzymes to act a
205          Whether these fluctuations play any role in modulating the accuracy of behavioral responses
206 ults demonstrate that IL-10 plays a critical role in modulating the adaptive immune response to RSV b
207 ) (N17) has been suggested to play a crucial role in modulating the aggregation propensity and toxici
208 test the hypothesis that the mPFC has a dual role in modulating the amygdala and PAG in juveniles, we
209 ts demonstrate that ZNF24 plays an essential role in modulating the angiogenic potential of microvasc
210 eferred to as the "microbiome," play a vital role in modulating the balance between clearance of path
211          Lysosomal activity has an important role in modulating the balance between these two pathway
212 onstrate that PEPC in leaves plays a crucial role in modulating the balance of carbon and nitrogen me
213 o PD models, we show that Nox1 has a crucial role in modulating the behavior of alpha-synuclein expre
214 g involved in ERAD of SUR1 and Kir6.2, has a role in modulating the biogenesis efficiency and surface
215 osylation of N-glycoproteins plays a crucial role in modulating the biological functions of glycoprot
216 ese results suggest that CstF-64 plays a key role in modulating the cell cycle in ESCs while simultan
217 cific Ocean does play an early and important role in modulating the changes in atmospheric CO2 concen
218 our data suggest that the wrist domain has a role in modulating the channel's response to external st
219  sulfates along native GAG chains may play a role in modulating the characteristics of the HSV-GAG in
220 hallmark of an adaptive immune response, its role in modulating the chronic inflammation that accompa
221 dy we demonstrate that PGK has an additional role in modulating the complement attack.
222 l function of inclusions and their potential role in modulating the consequences of aggregation.
223     Subglacial topography plays an important role in modulating the distribution and flow of basal wa
224 e propose that fatty acids play an important role in modulating the effects of Angptl4.
225 e serotonin 1A receptor (5-HT1A) has a major role in modulating the effects of serotonin on mood and
226        The route of delivery seems to play a role in modulating the efficacy of MSC therapy in AMI sw
227  that ICP27 plays a heretofore-unappreciated role in modulating the efficiency of progeny virion rele
228 biota and soil organic matter may play a key role in modulating the environmental effect of nanomater
229 s on the eukaryotic cell have played a major role in modulating the evolution of the mitochondrial ge
230 n a reaction cavity would play a significant role in modulating the excited state properties of molec
231 ognized that molecular chaperones play a key role in modulating the formation of amyloid fibrils, a p
232 l geniculate nucleus (dLGN) and play a major role in modulating the gain of thalamic signal transmiss
233 ction with DNA, CATH-2 can play an important role in modulating the immune response at sites of infec
234 t Tyr(1092) and Tyr(1143) plays an important role in modulating the inhibitory effect of WNK4 on ROMK
235 sular polysaccharides that play an important role in modulating the initial interactions once the bac
236 consistent with the INS playing an important role in modulating the intrinsic functional connectivity
237 nscriptional regulator Id-1 plays a critical role in modulating the invasiveness of glioblastoma cell
238  a profibrotic growth factor in CKD, but its role in modulating the kidney's response to AKI is not w
239           In conclusion, Ohr plays a central role in modulating the levels of fatty acid hydroperoxid
240                                   Although a role in modulating the lipid composition of the unique m
241 n of phyB abundance does not play a dominant role in modulating the magnitude of the PIF-promoted, sh
242 cs at the ice surface may play a significant role in modulating the mechanism and rate of heterogeneo
243 previously demonstrated to play an important role in modulating the migration of monocytes, neutrophi
244 ed that HCV core protein plays a significant role in modulating the mTOR/S6K1 signaling pathway.
245             To determine whether VWF plays a role in modulating the pathogenesis of CM in vivo, we fu
246 and splenic vascular niche play an essential role in modulating the physiology of adult hematopoietic
247 olate, Y100 plays an important electrostatic role in modulating the pKa of the N5 of DHF to enable th
248 e the opposing, POP-1 activity, suggesting a role in modulating the potency of the cellular polarizin
249 ally sweet wine and it can play an important role in modulating the production and the release of vol
250 th hypoxia, and tissue pO(2) plays a central role in modulating the progression of chronic kidney dis
251            cAMP signaling plays an essential role in modulating the proliferation of different cell t
252               SOCS2, therefore, plays a dual role in modulating the rate of hepatocyte proliferation.
253 erfacial lipids, and explored their possible role in modulating the rate of receptor association and
254 at tRNA selection plays an important general role in modulating the rates and rhythms of protein synt
255 rth Atlantic Ocean dynamics played an active role in modulating the response of the atmosphere to sol
256      Cholesterol (CHOL) molecules play a key role in modulating the rigidity of cell membranes and co
257            Whether alphaB-crystallin plays a role in modulating the secondary damage after CNS trauma
258 ore, iron impurities are shown to play a key role in modulating the selectivity of Rh/SiO2 catalysts
259 e that the alphaCPs play a direct and global role in modulating the splicing activity and inclusion o
260 opment and plays an evolutionarily conserved role in modulating the strength of synaptic transmission
261 regions, indicating that they play an active role in modulating the structural features of this CBP f
262 ession of restriction factors may play a key role in modulating the susceptibility of different popul
263 sis, and show that plasma IgG may play a key role in modulating the thrombotic process.
264 and cshA and plays an important trans-acting role in modulating the transcription and ensuing express
265 ood and other bodily fluids, play a critical role in modulating the tumor microenvironment and affect
266   Downregulation of SERCA2a plays a critical role in modulating the vascular and right ventricular pa
267 suggest that the placenta may play an active role in modulating the vitamin D metabolite profile in m
268            Genetic factors play an important role in modulating the vulnerability to body mass index
269 ore chemistry is shown to play a significant role in modulating the water flux.
270 ng activities of gp41CD as well as potential roles in modulating the actin cytoskeleton and overcomin
271  of mammalian sodium channels play important roles in modulating the expression and gating of mammali
272 ly of secreted metalloproteases play crucial roles in modulating the extracellular matrix (ECM) in de
273 with cysteinyl S(gamma) atoms play important roles in modulating the functional and structural proper
274 RNAs carried by herpesviruses play important roles in modulating the host cell, thereby facilitating
275 N-H...S(gamma) hydrogen bonds play important roles in modulating the mechanical and kinetic propertie
276 iods should be considered as having distinct roles in modulating the metabolism of omega-6 and omega-
277 ns that function as Lewis acids play pivotal roles in modulating the reactivity of oxygen-containing
278 naged ecosystems play an extremely important role in modulating their atmospheric abundance.
279 transcriptional regulation, play significant roles in modulating their contribution to cytokinin sign
280 ism, epigenetic mechanisms have an essential role in modulating these properties by regulating gene e
281 ted costs and that feedback plays a critical role in modulating this ability to effectively take adva
282 ions during infancy might play an additional role in modulating this causal pathway, as well as contr
283 Caspase-3 activation, while miR-98 plays key role in modulating this effect.
284  released from platelets plays a mechanistic role in modulating thrombosis in the presence of VWF.
285 nteracts with VWF and may play a mechanistic role in modulating thrombosis.
286 sphorylation of NF-kappaB plays an important role in modulating transcriptional activity of NF-kappaB
287 ifications are believed to have an important role in modulating transcriptional regulation of UVB-ind
288  which have been suggested to play a crucial role in modulating troponin function during beta-adrener
289 interactions play an increasingly recognized role in modulating tumor growth.
290 R signaling has been found to have important roles in modulating tumorigenesis and metastasis in seve
291 epithelial tumours, and is thought to play a role in modulating tumour growth.
292                                 However, its role in modulating tumour MDR remains unclear.
293  attractive therapeutic targets, given their roles in modulating various cancer-related signaling pat
294 tracellular matrix proteins play an integral role in modulating vascular homeostasis in health and di
295    Nitric oxide (NO) signaling plays a major role in modulating vascular tone and remodeling in the p
296 ation, the microvasculature plays a critical role in modulating vascular tone by endothelial release
297 rylated forms of beta-catenin play important roles in modulating vascular pathophysiology through dif
298  we show that the gut microbiota plays a key role in modulating vertebrate life span.
299 is also expressed in the brain, although its role in modulating whole-body energy balance remains unk
300     We hypothesize that Wls plays a critical role in modulating Wnt signaling during lung development

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