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1 studied how the photophysical properties and subcellular accumulation of nonconventional coumarin-bas
2 dence indicates that external stress-induced subcellular adaptation is accomplished through dynamic c
3 epending on the stress and that its terminal subcellular address influences the decision between init
6 as a method capable of tracking the dynamic subcellular and protein interaction "social network" of
8 However, a correlative approach that enables subcellular antibiotic visualisation in pathogen-infecte
12 ing, immunoprecipitation, mass spectrometry, subcellular binding pattern analyses in primary neuronal
14 ces is via microvesicle particles, which are subcellular bodies released directly from cellular membr
15 hed in cells undergoing the initial steps of subcellular branching as a direct response to FGF signal
16 n atrial myocytes predisposes these cells to subcellular Ca waves that occur during the action potent
17 is driven by the underlying stochasticity of subcellular Ca waves, which perturbs AP repolarization a
18 rates a new role for the circadian system in subcellular Ca(2+) signalling, in addition to its role i
19 aging in awake mice, we observed spontaneous subcellular calcium events as well as strong agonist-evo
23 ly relevant cell states involve cellular and subcellular changes that are only accessible by microsco
24 r changes (cell-cell interactions as well as subcellular changes) that accompany human cell fate tran
25 ese data highlight how protein import into a subcellular compartment can be regulated by ubiquitinati
26 fected by both the sex of the animal and the subcellular compartment in which the receptor is express
30 tion and protein activity, achieving precise subcellular compartmentalisation of RAB13 protein functi
31 se receptors to fine membrane structures and subcellular compartmentation of beta(3)-AR/cGMP signals
32 embrane contact sites (MCSs) are specialized subcellular compartments formed by closely apposed membr
35 ntial firing drives calcium responses within subcellular compartments of male rat spinal cord lamina
36 Thus, the activation of acetate in distinct subcellular compartments provides plants with the metabo
37 years as a driving force for the assembly of subcellular compartments termed membraneless organelles.
38 and cytoskeleton act in concert in distinct subcellular compartments to drive forward cell migration
39 very in plants are unable to target specific subcellular compartments with high precision, limiting o
40 is considered a protein present in these two subcellular compartments, and here we report that it not
41 of autophagy are distributed across neuronal subcellular compartments, how local machinery regulates
42 strubtion of ERK susbtrates across different subcellular compartments, it is important to understand
52 nal model of a deformable cell that includes subcellular components responsible for mechanosensing.
54 spatially concordant or discordant, such as subcellular concordant or discordant Ca2+alternans in ca
56 ic cell and delivers cargo proteins to their subcellular destinations, such as sites of action or deg
57 pability to quickly scan intact samples with subcellular detail, the DeepDOF microscope can improve t
58 orescence microscopy can reveal cellular and subcellular details down to the molecular level with flu
59 ces of SNX14 mutations to be consequences of subcellular disruption to autophagy and lipid metabolism
60 these findings provide new insights into the subcellular distribution and roles of specific PATs and
61 channel activity, and pendrin abundance and subcellular distribution in wild-type and intercalated c
62 nse, we measured pendrin label intensity and subcellular distribution in wild-type mice, knockout mic
63 ealed stiffness-dependent differences in the subcellular distribution of actomyosin contractility, wi
64 oblasts and that HIPK4 deficiency alters the subcellular distribution of an F-actin capping protein i
68 We therefore comprehensively determined the subcellular distribution of mammalian PATs in dorsal roo
69 sed several orthogonal approaches to map the subcellular distribution of PI, including localizing exo
70 aimed to identify changes in expression and subcellular distribution of proteins involved in IMTG st
78 t (AIS) of excitatory pyramidal neurons; the subcellular domain where action potentials are initiated
79 ambiguity is critical as CaM is enriched in subcellular domains where Ca(V) channels reside, such as
82 tion to visualize and analyse the growth and subcellular dynamics of individual wild-type and mutant
83 on and simulation of SBML representations of subcellular dynamics within multiscale models of epithel
88 ction-limited optical performance to resolve subcellular features can be maintained while significant
89 restingly, SIMR-1 also localizes to distinct subcellular foci adjacent to P granules and Mutator foci
90 the potential of this approach by revealing subcellular force patterns throughout phagocytic engulfm
91 results provide general insight into how the subcellular forces are generated and maintained within i
98 gh immunofluorescence staining, immunoblots, subcellular fractionation, and immunoprecipitation exper
99 ted gene silencing, confocal microscopy, and subcellular fractionation, we identified a nuclear varia
101 s in Na,K-ATPase subunit distributions among subcellular fractions; and greater inactivation of eIF2a
103 h remains unknown about the roles of Sac1 in subcellular homeostasis and organismal development.
104 i neurons in zebrafish embryos together with subcellular imaging, optogenetics, and photopharmacology
105 cting structural and functional cellular and subcellular information on complex mammalian bodies and
106 architectures, inability to form uniform and subcellular interfaces, or faradaic reactions at electro
110 ocesses, particularly those occurring at the subcellular level, critically control the formation of c
111 to interrogate biological soft matter at the subcellular level, in this case, on a cellular model of
116 e-of-the-art tissue-clearing methods provide subcellular-level optical access to intact tissues from
117 helial cells to conferring new properties at subcellular levels to regulate collective cell behavior.
120 impaired organellar interfacing, to propose 'subcellular lipidome imbalance' as a likely common patho
121 has provided insights on membrane reshaping, subcellular localisation of components, host-pathogen in
122 inferred losses), accompanied by changes in subcellular localisations and substrate specificities.
126 t FUS acetylation regulates the RNA binding, subcellular localization and inclusion formation of FUS,
127 anulin readthrough protein displayed similar subcellular localization as the wild-type progranulin pr
128 s in close proximity to Tim-3 and alters its subcellular localization by directing it to Rab 5-positi
129 ons, as well as SHELL heterodimerization and subcellular localization by yeast two-hybrid, bimolecula
130 Among these were several proteins that lack subcellular localization data or that are currently assi
131 nt in brain development, the extent to which subcellular localization differs as the brain matures ha
133 Here, we report examination of the dynamic subcellular localization of all three RLRs within the in
134 ion in U. maydis, interacts and controls the subcellular localization of Biz1, a transcriptional fact
135 es have implicated changes in expression and subcellular localization of connexin-43 (Cx43), the majo
142 e present study describes the expression and subcellular localization of PDLIM1 for the first time, a
143 reserves the native structure, activity, and subcellular localization of PTP1B, affords changes in ac
144 ic mRNAs, we describe for the first time the subcellular localization of selected Par proteins in bla
146 imate striatum, we compared the cellular and subcellular localization of striatal GluD1 immunoreactiv
147 tion is unknown, raising questions about the subcellular localization of the final stage of TPP biosy
148 reporter system to evaluate the kinetics and subcellular localization of the interaction of ASO and P
149 fically interacts with SART3, regulating the subcellular localization of the protein deubiquitinase U
152 determine the endogenous gene expression and subcellular localization of the sole Na(V) channel in bo
153 osphorylation controls RING domain-dependent subcellular localization of TRAF2 to modulate the spatio
155 by using local mitochondrial polarity and a subcellular localization redistribution property of the
158 between the activity of CAs (with different subcellular localization, abundance and gene expression)
159 nteraction with biomembranes, differences in subcellular localization, and relocalization after irrad
160 ssay, CyQuant, annexin V, JC-1, cytochrome C subcellular localization, caspase 3 activation, and immu
161 ges affect delivery efficiency and determine subcellular localization, effects that could permit the
162 rmation on PKARIalpha catalytic activity and subcellular localization, live-cell fluorescence imaging
164 found that protein turnover is influenced by subcellular localization, protein function, complex asso
165 d super-resolution microscopy, light-induced subcellular localization, reaction-diffusion modelling a
166 ocyte damage is not clear, including APOL1's subcellular localization, topology, and whether the dama
180 disassembly of such substrates in different subcellular localizations and, hence, power a plethora o
181 However, how PLKs are targeted to distinct subcellular localizations during meiotic progression rem
182 cts leads to protein products with different subcellular localizations, we propose that after gene du
183 ration and phagocytic processing at distinct subcellular localizations: Trpml regulates hemocyte migr
184 ematic and comprehensive analysis of protein subcellular location as a critical part of proteomics ('
185 rom the Human Protein Atlas as the source of subcellular location information, and built classificati
186 lification method to noninvasively image the subcellular location of RNA targets in living cells.
189 t-inducible nuclear exporter, to control the subcellular location of the H2Bub1 E3 ligase, Bre1.
191 We show that Inp1 is present in the correct subcellular location to interact with both the plasma me
195 udied for many years, but annotating protein subcellular locations and understanding variation of the
197 timate the fractions of protein in different subcellular locations, and can help to quantify the chan
198 ycosylation between individuals, cell types, subcellular locations, and pathophysiological conditions
199 Cofactors can target PP1 to substrates or subcellular locations, but it remains unclear how they m
205 nting ectopic functionality at inappropriate subcellular loci and orienting tissue morphogenesis.
207 rosomes are key players in the initiation of subcellular lumen formation in Drosophila melanogaster,
208 h leads to the extension and guidance of the subcellular lumen within the tracheal terminal cell (TC)
210 own on the what leads to the growth of these subcellular luminal branches or makes them progress thro
212 n leak and uncoupling as a potentially novel subcellular mechanism for the maturational failure of ol
213 ess granules (SGs) are prominent examples of subcellular, membraneless compartments that are observed
222 invasion, but has not incorporated detailed subcellular modelling RESULTS: We present a framework th
223 cell reporter, pHluorin-CD63, allows dynamic subcellular monitoring of exosome secretion in migrating
230 zing and tracking target biomolecules and/or subcellular organelles labeled with imaging probes.
231 o rapidly and reversibly recruit proteins to subcellular organelles, to induce organelle contacts, an
237 phenomenon whereby global cell shape affects subcellular organization to modulate signaling that enab
238 emerged as a new paradigm for understanding subcellular organization, prebiotic life, and the origin
241 3sigma in skin keratinocytes, shows aberrant subcellular partitioning and function in differentiating
243 us to investigate the effect of mutations in subcellular pathways on the migration of cells within th
244 e morphology, cytoskeletal organization, and subcellular pattern of force generation in corneal kerat
245 s a novel platform enabling the profiling of subcellular phenotypes associated with perturbation.
246 onfined spaces within a microfluidic device, subcellular photoactivation of Rac1, diffusion of cytopl
247 , I discuss NAD(+) metabolism, how different subcellular pools of NAD(+) are established and regulate
249 ighly controlled photothermal stimulation at subcellular precision without the need for genetic modif
251 model system to investigate the cellular and subcellular processes underlying complex cell-shape dete
256 es first allowed the observation of peculiar subcellular protrusions along tanycyte processes and at
258 unction of P2Y11 receptors depended on their subcellular redistribution and autocrine stimulation by
259 cpRAPID system enables chemical-controllable subcellular redistribution of proteins, as well as induc
260 vely at the biochemical level, analyzing the subcellular redox dynamics of NAD in living plant tissue
261 s of improved biosensors targeted to various subcellular regions via sequence specific motifs to meas
265 sive study of complex glycogen metabolism at subcellular resolution and may help reveal new features
266 ria in live or fixed osteosarcoma cells with subcellular resolution at 1 nM, but also efficiently con
268 hibit a large increase in fluorescence, with subcellular resolution, subsecond kinetics and nanomolar
273 ological function of single lipid species on subcellular scales in quantitative live-cell experiments
275 phosphatases regulate a myriad of essential subcellular signaling events, yet they remain difficult
276 which likely represents the initial or early subcellular site of SARS-CoV-2 viral entry during host r
278 which a uridine-adding enzyme is anchored to subcellular sites, where it directly marks RNAs with 3'
280 ical circuits that involves the differential subcellular sorting of family-related synaptic proteins.
281 y how this process is controlled in time and subcellular space and integrated with the cell's protein
283 ity for biological imaging through combining subcellular spatial resolution with high-performance Orb
284 sions, (ii) resolving anatomical features at subcellular spatial resolution, (iii) biomolecular profi
287 ving 3D sub-diffraction-limit information in subcellular structures and organelles that have rotation
289 lled 'tomography-guided 3D reconstruction of subcellular structures' (TYGRESS) that is a hybrid of cr
290 icroscopy is a powerful tool for visualizing subcellular structures, interactions and protein functio
291 te mitochondrial defects in distinct retinal subcellular structures, the vascular/neural network in D
293 ritical determinant of neuronal output, with subcellular targeting of synaptic inhibition able to exe
294 plication history, alternative splicing, and subcellular targeting patterns to identify cases of subl
297 ferential posttranslational modification and subcellular trafficking, potentially resulting in select
299 ults suggest that attempts to define precise subcellular translation sites using anti-puromycin immun
300 ical structure of the heart, but also on its subcellular (ultrastructural) architecture, which enable