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1 membrane morphology and lipid packing became disrupted.
2 n when the canonical TIR1 auxin signaling is disrupted.
3 n of the FOS transcription factor complex is disrupted.
4 ) or lecithin-retinol acyltransferase (LRAT) disrupt 11-cis-retinal synthesis and cause Leber congeni
5               These results demonstrate that disrupting 32-38 and anticodon sequences alters interact
6  we employed a CRISPR/Cas9-based approach to disrupt a subset of cytokinin histidine kinase (HK) rece
7 arian tumor progression based on selectively disrupting a previously unappreciated signaling cascade.
8                                 We show that disrupting a top candidate from the screens, the mitocho
9  Ser/Thr phosphorylation, whilst FGF4-ERK1/2 disrupts a core pluripotency transcriptional circuit req
10 n recovery of a crwn4-2 missense allele that disrupts a predicted NLS and lowers the abundance of CRW
11 , present at nearly 100% heteroplasmy, which disrupts a Watson-Crick base pair in the T-stem-loop.
12                      We find that SCF-FBXL17 disrupts aberrant BTB dimers that fail to stabilize an i
13 otubule-disrupting tumour-selective vascular disrupting agent (VDA).
14  fetal origin of asthma is orchestrated by a disrupted airway epithelium and further perpetuated by a
15 roteomics with a library of nucleosomes that disrupts all exposed histone surfaces to comprehensively
16 epeats (CRISPR)-Cas9 system and a transposon-disrupted allele.
17 ate, the untoward phenotypic consequences of disrupting allelic and non-allelic (e.g. pseudogene) seq
18 e for these recurrent noncoding mutations in disrupting an autoregulatory feedback mechanism, thereby
19 a luciferase reporter system, mutagenesis to disrupt and restore base pairing revealed that the MTE i
20 es with the LDH tetramerization domain, thus disrupting and destabilizing LDH tetramers.
21 ts lacking the set of immunoevasins known to disrupt antigen presentation via MHC class I.
22  CD8 T cell recognition of infected cells by disrupting antigen presentation pathways.
23  levels in cells, and this can be rescued by disrupting APC-mediated actin nucleation.
24 t both the cellular and functional level and disrupted astrocyte-endothelial interactions in both ani
25 ring a broken-symmetry striped phase that is disrupted at both high and low extremes of chemical pote
26 GluR-mediated long-term depression (LTD) was disrupted at these timepoints.
27 RE impairs Mitf/TFEB nuclear import, thereby disrupting autophagy and exacerbating proteostasis defec
28 ol, the psychoactive ingredient of cannabis, disrupts autophagy selectively in the striatum, a brain
29                                              Disrupting bacterial adherence to the intestinal surface
30 us human BAF complex, identifying those that disrupt BAF subunit-subunit and subunit-nucleosome inter
31  AgrC-I, while analogs designed to contain a disrupted beta-turn were dramatically less potent relati
32 hich become buried at the complex interface, disrupt binding of hIL-23p19 to hIL-23R.
33 lammation; all occur within the context of a disrupted bone marrow microenvironment.
34  substitution of the N-terminal plug His-221 disrupts both signaling and transport, leading to dysreg
35   Furthermore, phosphorylation of AGO2(Y393) disrupts both the wild-type and oncogenic KRAS-AGO2 inte
36  recipients in whom tolerance maintenance is disrupted by an episode of acute CMV infection.
37 ibution of pulmonary perfusion, which may be disrupted by cardiopulmonary disease, but this is not we
38  interaction of N-MADD-4B with NLG-1 is also disrupted by heparin, used as a surrogate for the extrac
39 habditis elegans muscle, but this pattern is disrupted by mutations in the mitochondrial fission comp
40 iological actions by 1,25(OH)(2)D, which are disrupted by mutations in the VDR.
41 re an intact optic nerve, its fine-tuning is disrupted by ONS.
42                             This process was disrupted by small interfering RNA (siRNA)-based down-re
43               Once formed, messicles are not disrupted by subsequent changes in P:L ratio.
44 ne, SHANK2, located on Chromosome 11q13, was disrupted by SVs in 14% of MYCN nonamplified high-risk t
45 b downstream of TAL1 and this interaction is disrupted by the -31CBS inversion in T-ALL cells.
46               Phosphorylation of Ser(16) was disrupted by the cardiomyopathy-associated DeltaArg(14)
47 tered when early and recycling endosomes are disrupted by the expression of dominant-negative mutants
48           IL-10 and IFN-gamma signaling were disrupted by using blocking antibodies.
49 ong with decreased myocyte contractility and disrupted Ca(2+) cycling.
50 dues (949)Arg-Arg-Lys(951) to three alanines disrupts CaMKII binding in vitro and CaMKII association
51  facilities facing higher costs might close, disrupting care delivery and access to care.
52 l to the development of new antibiotics that disrupt cell wall biogenesis, a process essential to the
53        QKI-7 upregulation is correlated with disrupted cell barrier, compromised angiogenesis and enh
54 (the majority) and brain-specific risk genes disrupts cell proliferation, neurogenesis, migration, an
55             Early exposure to such endocrine disrupting chemicals (EDC) may affect brain development
56   The presence and distribution of endocrine-disrupting chemicals (EDCs) in the mariculture fish from
57 ndocrine system are referred to as endocrine-disrupting chemicals (EDCs).
58                                    Endocrine disrupting chemicals are common in our environment and a
59 and risk assessment of these thyroid hormone disrupting chemicals.
60 sing role for Cds1 in driving DNA damage and disrupted chromosomal segregation under certain conditio
61                              Acoustic trauma disrupts cochlear blood flow and damages sensory hair ce
62 ing in neurons can worsen disease course and disrupt complex interactions between the IFN-alpha/beta
63               We investigated the normal and disrupted development of microglia in barrel cortex by c
64 cross-linking under reducing conditions that disrupt disulfide bridges, but soluble fibronectin did n
65 rmine the pathway by which these metabolites disrupt DNA repair.
66           Furthermore, shRNA COASY knockdown disrupted downstream PI3K pathway activation and also hi
67  molecular mechanisms of action of 3D genome-disrupting drugs.
68                                              Disrupting each cluster selectively impairs native Ded1
69 f individual microRNA-target interactions by disrupting each predicted miRNA-binding site by CRISPR-C
70 is sequence-specific DNA-binding protein can disrupt EBV latency by driving the transcription of targ
71 trols, mice that had their circadian rhythms disrupted (ECD) had higher Chlamydia loads, more tissue
72           Infiltration of activated PECs may disrupt ECM remodeling in cFSGS.
73  single incorporated zebularine also did not disrupt editing in vitro, suggesting that PPR65 cannot b
74                   This was associated to the disrupting effect that the microwaves had on BSG fiber,
75 le, with reports of strategies that directly disrupt either the RAS interaction with activating guani
76 ferent proteins that localize to the SF base disrupts either SF steady-state length or ciliary force-
77 nt 83 double mutant combinations reported to disrupt embryo development; emphasize the importance of
78 nce-modifying enzyme such as Cas9/gRNAs that disrupts endogenous versions of an essential gene and a
79  interactions, inhibited tube stability, and disrupted endothelial cell junctions.
80 patients, such as increased inflammation and disrupted energy-regulating neuroendocrine signaling (e.
81 lyoxal caging can also be used to reversibly disrupt enzyme-nucleic acid interactions, and we show th
82         report in Science that type III IFNs disrupt epithelial cell proliferation and differentiatio
83 rvicovaginal fluid (CVF) from women with BV, disrupted epithelial polarization.
84 tructures of the arteries were significantly disrupted, especially the tunica media, following incuba
85 or unilateral E2 synthesis inhibition in NCM disrupted eventual song imitation.
86 e formation of sharp Purkinje cell zones and disrupts excitatory axon patterning.
87 on through modulating F-actin, while mutants disrupting F-actin binding are defective in its tumorige
88 ardiomyocyte proliferation and maturation by disrupting fibronectin-integrin signaling, consistent wi
89 r markers, and that LSD1 inhibition globally disrupts FOXA1 chromatin binding.
90                   Mutating region V severely disrupted function without affecting subcellular localiz
91        Notably, these alterations arise from disrupted functional interactions of mGluR5 with estroge
92  could reduce synchrony both within species (disrupting gene flow among subpopulations) and among spe
93 nsure faithful genetic inheritance, SMCs can disrupt genome stability by trapping DNA topological str
94 ace-like stimuli were presented upside-down, disrupting global processing (Experiment 4).
95 rotein synthesis and degradation is found to disrupt glutamatergic transmission and excitability in n
96 though we found little evidence that suramin disrupts glycolytic or glycosomal pathways, we noted inc
97              Lack of ERalpha in GHRH neurons disrupts growth in both sexes and causes pubertal delay
98 teronyssinus allergens in breast milk, which disrupt gut immune homeostasis and prevents oral toleran
99 cer at H-NS-repressed quorum sensing loci by disrupting H-NS nucleoprotein complexes that block trans
100 air-bundle regulators and late Six1 deletion disrupts hair-bundle polarity.
101 ressing the Epe1 C-terminus is sufficient to disrupt heterochromatin by outcompeting the histone deac
102 idelines can be inadequate and contribute to disrupted homeostasis, lean body mass loss, and deterior
103 te nutrient intake leads to oxidative stress disrupting homeostasis, activating signaling, and alteri
104 rminal Src homology and Bcr homology domains disrupts homodimer formation and impacts PI3K signalling
105        Here, we show that inhibition of PARG disrupts homology-directed repair (HDR) mechanisms that
106                Dengue virus (DENV) infection disrupts host innate immune signaling at various checkpo
107 cine-95 (and to a lesser extent, glycine-91) disrupted IFITM3 oligomerization and reduced its antivir
108  a major output of STING signaling; however, disrupting IFN signaling during L. monocytogenes-induced
109 EMENT Spinal cord injury (SCI) significantly disrupts immunity, thus increasing susceptibility to inf
110 e individual's response to threat and may be disrupted in anxiety and post-trauma psychopathology.
111 ain emotional equilibrium, a process that is disrupted in depression.
112 residues, and this membrane sequestration is disrupted in EHEC that expresses constitutively active G
113 scribe the key chromatin regulatory pathways disrupted in gliomas, delineating their physiological fu
114 tissue development, and homeostasis, and are disrupted in human cancers.
115 on calcium activity of dorsomedial iMSNs was disrupted in mice lacking D2Rs on iMSNs, suggesting that
116 cally with the actomyosin network, which was disrupted in patient cells, causing impaired nucleokines
117 ental illness-related susceptibility factor, Disrupted in schizophrenia (DISC1), is involved in host
118 ings indicated that BDNF/TrkB signalling was disrupted in the OC of Nhe6 KO mice, probably due to Trk
119                             Overall, nodules disrupted in the symbiosis were elevated in metabolites
120 trols, mice that had their circadian rhythms disrupted in this ECD model will have a higher Chlamydia
121 ce in all three areas that MD preferentially disrupts in V1, but not in LM or PM.
122 e outer mouth of the selectivity filter (SF) disrupts inactivation and K(+)-selective transport in hE
123 ad the design of canonical vaccines aimed at disrupting infection in the host.
124 ral modifications to cladding materials that disrupt insect vision could reduce the incidence of D. s
125 localized thermal managing strategy, thermal-disrupting interface induced mitigation (TRIM), is repor
126 f metabolism are genetic conditions that can disrupt intermediary metabolic pathways and cause defect
127 low among subpopulations) and among species (disrupting interspecific interactions in communities).
128 ed that the MBD binds to iron and that azide disrupts iron binding.
129 triatal connectivity in TRD participants but disrupted it in HVs independently of inflammatory proces
130 oduction of a germline mutation at Bahcc1 to disrupt its H3K27me3 engagement causes partial postnatal
131           Phosphomimetics of HDA15 partially disrupt its oligomerization and cause loss of enzymatic
132 eukemia (AML) mutation, Arg882His, in DNMT3A disrupts its cooperative mechanism and leads to reduced
133 3a(K14Delta/Delta) mice have increased TEWL, disrupted junctional proteins, and increased susceptibil
134                                   Therefore, disrupting K-Ras PM interaction is a tractable approach
135  enhances proliferation of keratinocytes and disrupts keratinocyte differentiation.
136                    Loss of SAM or Sugt1 both disrupts kinetochore assembly in mitotic cells due to th
137 ing with dominant negative connexin 43 or by disrupting lactate efflux was sufficient to mimic the ef
138         Overall, our study demonstrates that disrupting LDH oligomerization state by targeting their
139  enzyme fructose 1,6-bisphosphatase 1 (FBP1) disrupts liver metabolic homeostasis and promotes tumour
140 nalysis indicates that the R330fs mutant can disrupt localization of ER-alpha and FOXA1.
141 lected for the ability to partition into and disrupt membrane integrity but with no known antiviral a
142 ctivity and extend channel lifetimes without disrupting membrane integrity, in a manner consistent wi
143 ut not dorsal hippocampus (CA1), selectively disrupts memories associated with methamphetamine (METH)
144 t neural and cognitive stress mechanisms may disrupt memory retrieval and restrict prospective planni
145 stemic circulation of bile acids can greatly disrupt metabolic homeostasis.
146 d regulatory Fe-S centers of proteins by LCO disrupts metabolic homeostasis, which negatively impacts
147               Here we show that tumour cells disrupt methionine metabolism in CD8(+) T cells, thereby
148  increase vulnerability of genes in sperm to disrupted methylation.
149               In other words, sulfide likely disrupted microbial cross-feeding between AOB and NOB an
150 of barrier crossings in prevailing winds can disrupt migratory routes towards slightly different goal
151                                     Here, we disrupt minor spliceosome function in the developing mou
152 nt selection pressure against mutations that disrupt miRNA binding.
153 ling in diabetic kidneys, a cardinal sign of disrupted mitochondrial architecture and bioenergetics.
154 ry and motor circuits.SIGNIFICANCE STATEMENT Disrupted mitochondrial transport has been linked to neu
155                                We found that disrupting mitochondrial fission (DRP1/drp-1) or fusion
156                           Gene perturbations disrupt morphogenesis and histo-differentiation.
157               Lack of SMGs and mucus strands disrupted mucociliary transport in EDA-KO pigs.
158 he INR phenotype is caused by a persistently disrupted mucosal barrier, but assessments of gut mucosa
159  "clean" Chinese hamster ovary (CHO) cell by disrupting multiple genes to eliminate HCPs.
160                               Disorders that disrupt myelin formation during development or in adulth
161                        Strategies to restore disrupted myocardial calcitonin signalling thus may offe
162 thogenesis; however, the mechanisms by which disrupted NCT causes neurodegeneration remain unclear.
163  viral genes by degrading ND10 organizers to disrupt ND10.
164      Perilesional sleep-like off-periods can disrupt network activity but are potentially reversible,
165 DC) may affect brain development by directly disrupting neural programming and/or through the microbi
166 ther set (the majority being brain specific) disrupts neurite outgrowth, synaptogenesis, and the 'wir
167  they form lipid-stabilized pores that might disrupt neuronal membranes and ion homeostasis.
168 expression of fusogens in the nervous system disrupts neuronal individuality, which, in turn, leads t
169 y, mice in which both Nf1 and Rac1 loci were disrupted (Nf1(flox/flox)Rac1(flox/flox);PostnCre (+)) w
170 y, mice in which both Nf1 and Rac1 loci were disrupted (Nf1(flox/flox)Rac1(flox/flox);PostnCre(+)) we
171 ransiently suppressed USV production without disrupting non-vocal social behavior.
172 cancer-associated perturbations collectively disrupt normal gene regulatory networks (GRNs) by increa
173 a knockout of a predicted upstream regulator disrupts normal regeneration, validating our prediction.
174                                              Disrupted nucleocytoplasmic transport (NCT) has been imp
175 d coral bleaching and to invasive rats which disrupt nutrient subsidies from native seabirds.
176 of the transcription factor Gli3 is known to disrupt olfactory development, however, if Gli3 plays a
177 c function to inhibiting caspase cleavage to disrupting oligomerization and pore formation.
178 IRE1 kinase inhibitors either allosterically disrupt or stabilize the active dimeric unit, accordingl
179 onoxide) can reduce sugar accumulation, thus disrupting or delaying the recovery process.
180 onstrate that the prevention of gene pairing disrupts oscillations and segmentation, and the linkage
181  mice lacking D2Rs on iMSNs, suggesting that disrupted output of iMSNs contributes to heightened avoi
182                          They also displayed disrupted patterns of paired box 2a (pax2a) and SRY-box
183    Inhibition of VTA-core-projecting neurons disrupted Pavlovian reward learning, and activation of t
184 ble version of a protein phosphatase-1 (PP1)-disrupting peptide (PDP-Nal) that triggers protein phosp
185 us minor coat protein VI contains a membrane-disrupting peptide that is inactive when VI is bound to
186 in patients with myasthenia gravis, although disrupted peripheral tolerance may play a greater role i
187 e key points of vulnerability for therapy to disrupt peritoneal spread and adhesion of ovarian cancer
188 ed States (BX-R) also harbors mutations that disrupt PgABCA2.
189         We conclude that recessive mutations disrupting PgABCA2 are the primary, but not the only, me
190 effectors, YopE and YopT, inactivate RhoA to disrupt phagocytic signaling.
191 n the C terminus that are linked to deafness disrupt phospholipid binding, sensitize the channel to P
192                                      Obesity disrupts physiological homeostasis and alters both syste
193 lly regulated cell invasiveness, in part, by disrupting polarized cell motility under confinement and
194 e, and sensitive assessment of the endocrine-disrupting potential of benchmark chemicals based on dat
195 BAergic transmission onto pyramidal neurons, disrupt prefrontal excitatory-inhibitory balance, and al
196 activity align with the relationship between disrupted prefrontal function and cognitive rigidity in
197  ability to detect environmental conditions, disrupting previous correlations between parental and of
198 sion to impaired information sampling and to disrupted probabilistic reasoning, namely to overweighti
199  we discover that genetic deletion of Gravin disrupts proper accumulation and asymmetric distribution
200 ite specificity in lysates and live cells to disrupt protein function.
201 ls (NSCs) utilize aggresomes to recover from disrupted proteostasis and describe a novel function for
202 ion in the class Ib MHC molecule Qa-1, which disrupts Qa-1 binding to the T cell receptor (TCR)-CD8 c
203 etamine, creating a hyperdopaminergic state, disrupted rats' ability to discriminate between cues ass
204 ction of griseofulvin in adult mice does not disrupt retinal vasculature, function, or morphology.
205 tion in the cell body, the precise impact of disrupting retrograde transport on the organelles and th
206 hemogenetic silencing of lateral OFC neurons disrupted reversal learning, as well as plasticity in S1
207 lative abundance and identified 13 taxa with disrupted rhythmicity in type 2 diabetes (T2D).
208 ns dcl2, dcl3 and dcl4 to the msh1 rootstock disrupts siRNA production and reveals RdDM targets of me
209 g accumulation of lipid metabolites known to disrupt skeletal muscle insulin signalling in sedentary
210 ther demand, in the form of cognitive tasks, disrupted sleep and the cortisol awakening response (CAR
211 ealth and the prevalence of insufficient and disrupted sleep.
212 dation, alters gene expression patterns, and disrupts spine morphology.
213 AT3-dependent transcriptional activation and disrupts STAT3 interaction with the IL-22 receptor.
214 aptotagmin-1 to PIP(2)-containing nanodiscs, disrupting synaptotagmin-1-SNARE interactions.
215 nserved in each LIM domain of these proteins disrupt tensed F-actin binding in vitro and cytoskeletal
216                      Prostaglandin E2 (PGE2) disrupts TGFbeta signaling and suppresses myofibroblast
217                                           We disrupted Tgr5 specifically in Lgr5-positive ISCs in mic
218 d K400A (SH2 position betaD6) is required to disrupt the binding.
219                We then use genome editing to disrupt the coding sequence of a S. rosetta C-type lecti
220  for the end of the 21st century, could thus disrupt the community structure and productivity of a cr
221          Such changes to the environment can disrupt the connection between habitat quality and the c
222  several distinct shifts in brain state that disrupt the contents of consciousness distinct from arou
223   These compounds, including one proposed to disrupt the dimer, slow the rate of substrate processing
224 hat mutations found in individuals with MCHS disrupt the DNA-binding function of MEF2C, and DNA bindi
225 tic and polar-protic solvent combinations to disrupt the H-bonds and hydrophobic interactions holding
226    Increased levels of periodontal pathogens disrupt the homeostasis between the host and its microbi
227 body sequences, we developed nanobodies that disrupt the interaction between Spike and ACE2.
228 on by RAS and to develop inhibitors that can disrupt the KRAS dimerization.
229 a indicate that non-coding somatic mutations disrupt the PAX8 transcriptional network during OC devel
230        Employing CRISPR/Cas9 gene editing to disrupt the Pdgfra gene in two different murine cell lin
231 at the administered pain medication does not disrupt the physiological mechanisms that are beneficial
232 tional disconnection approach to temporarily disrupt the PL-RMTg pathway during cue- or cocaine-induc
233 t-Marie-Tooth disease-causing mutations that disrupt the stability of PMP22 tertiary structure reduce
234 is sufficient to redirect axon targeting and disrupt the topographic map.
235                           This hyperactivity disrupted the balance between excitation and inhibition
236 nformation and that prior cocaine experience disrupted the evolution of representations both within t
237                        Using CRISPR-Cas9, we disrupted the expression of ZFP628 in the mouse and unco
238                                           We disrupted the Fas-associated factor 1 gene (FAF1) in DLD
239 died pigs, which have lungs like humans, and disrupted the gene for ectodysplasin (EDA-KO), which ini
240        Specifically, sucrose supplementation disrupted the homeostasis between acid-producing and alk
241 ell compartment in mice, where loss of VISTA disrupted the major quiescent naive T cell subset and en
242 rontal and default mode network regions, and disrupted the relationships between memory performance a
243     Loss of MGP or its BMP4-binding capacity disrupted the retinal vasculature, resulting in poorly f
244 lls during the contraction phase temporarily disrupted the rhythmic pattern.
245  that prenatal exposure to bisphenol A (BPA) disrupted the transcriptome profiles of genes in the off
246  Inhibiting alpha2delta-1 with gabapentin or disrupting the alpha2delta-1-NMDAR interaction with alph
247 catalysis-mediated signaling without grossly disrupting the cellular architecture.
248                                      Indeed, disrupting the correlations between neural activities de
249 treatment inactivates bacteria by physically disrupting the integrity of the cell membrane.
250 ccess of spillovers can depend critically on disrupting the link between identity and tradition.
251 e progression could potentially be slowed by disrupting the machinery of cell migration.
252 esults in male-biased litters by selectively disrupting the motility of X-bearing sperm cells.
253 he azimuthal position of tropomyosin, likely disrupting the mutant thin filament response to calcium.
254 ciency augmented ERK phosphorylation without disrupting the normal lens fiber gene expression.
255                   The compound is capable of disrupting the PD-1/PD-L1 complex by antagonizing PD-L1
256                                      Indeed, disrupting the putative interaction between a highly con
257 can persist even in the absence of mutations disrupting the silencing pathway.
258 kinase that constitutively inhibits I(Kv1.5) Disrupting the Src-binding motif of Kv1.5 through N-term
259 he outer membrane of gram-negative bacteria, disrupts the alveolar-capillary barrier, triggering pulm
260           By contrast, the m42C modification disrupts the C:G pair and significantly decreases the du
261             Maternal immune activation (MIA) disrupts the central innate immune system during a criti
262                Whereas the disulfide in M112 disrupts the closed conformation to increase k(off), the
263               A single mutation in the RIFIN disrupts the complex, blocks LILRB1 binding of all teste
264        Biochemical assays confirmed that PNP disrupts the GCV system by competing with PLP in GcvP pr
265 c ablation of X-box binding protein 1 (XBP1) disrupts the hepatic 12-hour clock and promotes spontane
266  the aggregates during polymerization, which disrupts the ideal ordering of monomers inside fibrin pr
267                            We show that CLK8 disrupts the interaction between CLOCK and BMAL1 and int
268 simulation revealed that the R1060C mutation disrupts the intramolecular interaction between the POLD
269   We further provided evidence that TGF-beta disrupts the lineage commitment and promotes the accumul
270 ypically a consequence of tissue injury that disrupts the local blood supply but can also occur where
271 ively dividing cells, such as cancer cells - disrupts the longitudinal ordering of the molecules in c
272 D increases neuroinflammation in WT mice and disrupts the neuroinflammatory response in 5xFAD mice an
273 onic deletion of integrin beta1 in the liver disrupts the normal development of hepatocyte polarity,
274  in mPOA both suppresses gregarious song and disrupts the positive association between affective stat
275          A Borealin mutant that specifically disrupts the Sgo1-Borealin interaction results in defect
276 channels, receptors and transporters without disrupting their structure.
277 onstrain intracellular parasite infection by disrupting their vacuole membranes.
278 of PRC1 enzymatic activity does not directly disrupt these interactions.
279 ellular components using small molecules can disrupt these rhythms, causing a phase shift, and we aim
280 owever, lesion of VTA GABA neurons failed to disrupt this effect.
281 imulated production of biologics designed to disrupt this essential RNA-protein interface.
282 r example Antimicrobial peptides (AMPs), can disrupt this protective barrier by formation of leaky po
283 urbations of microtubules and motor proteins disrupt this sequence of events.
284 tiation rate of developing human neurons and disrupting this process impacts the function of nascent
285 ns and illustrates the downstream effects of disrupting this process on sensory and motor circuits.SI
286                    Unless the food matrix is disrupted through breeding or post-harvest treatments, a
287 ng during mealtimes and unscheduled snacking disrupts timed metabolic processes, which further contri
288 herapy-induced OM involve interactions among disrupted tissue structures, inflammatory infiltrations,
289  found that TOGARAM1 variants cause JBTS and disrupt TOGARAM1 interaction with ARMC9.
290 Cas9 (CRISPR-Cas9) and transposon vectors to disrupt Trp53 and overexpress C-Myc (Trp53(KO)/C-Myc(OE)
291                                    Mutations disrupting tubulin binding decrease microtubule density
292 statin A-4 phosphate (CA4P) is a microtubule-disrupting tumour-selective vascular disrupting agent (V
293 cal environment within secondary particle is disrupted upon cycling, it triggers charge distribution
294 GT has been applied to associate likely-gene-disrupting variants encoded from whole genome sequence d
295 our data show that heterozygous, likely gene-disrupting variants in SCAF4 are causative for a variabl
296 entally persistent industrial compounds that disrupt various metabolic pathways.
297  related to transient upper airway narrowing disrupting ventilation, and causing oxyhemoglobin desatu
298 ntal GABAergic interneurons was specifically disrupted, whereas input onto pyramidal neurons remained
299 ult, interactions between species can become disrupted, with potentially detrimental effects.
300 ffects (mind wandering and metacognition) in disrupting working memory, and (3) demonstrate how insuf

 
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