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1 s, is an integral component of the circadian molecular machinery.
2 ell understood, including its efficiency and molecular machinery.
3 rtaken, highlighting new elements in the PCD molecular machinery.
4 ent scaling up and scaling down use distinct molecular machinery.
5  as the lethal hit of CTLs but with distinct molecular machinery.
6 g elaborate and only partially characterized molecular machinery.
7 ythmicity and may be controlled by different molecular machinery.
8  understanding cellular perturbation and its molecular machinery.
9 factors such as RanBP1, employs NES-mediated molecular machinery.
10 sence of agonist may be mediated by distinct molecular machinery.
11 y but differ significantly in the underlying molecular machinery.
12 t active zones are orchestrated by a complex molecular machinery.
13 ncy require precise coordination of a cell's molecular machinery.
14       Cell division depends on sophisticated molecular machinery.
15 he directionality observed in RNA-processing molecular machineries.
16  gene transcripts in relation to interacting molecular machineries.
17 a stepwise process that coordinates multiple molecular machineries.
18 ant cells have developed specific protective molecular machinery against environmental stresses.
19                      Consequently, elaborate molecular machineries and mechanisms emerged during the
20 e mediated by distinct pre- and postsynaptic molecular machineries and to have a specialized role in
21 ts cognate ligands are processed by the same molecular machinery and may antagonistically regulate ea
22 pruning share components of their underlying molecular machinery and may thus represent two developme
23          We find that despite very different molecular machinery and modes of action (catalytic vs st
24 ment is particularly important in autonomous molecular machinery and molecular computation, in which
25                             Commonalities in molecular machinery and processes across FraX and Willia
26 h recent emphasis given to understanding its molecular machinery and regulation.
27 perties, our understanding of the underlying molecular machinery and signalling pathway in CB glomus
28   Gleason pattern 3 cells typically lack the molecular machinery and the genetic abnormalities, which
29 le back to the plasma membrane; however, the molecular machinery and trafficking pathways utilized by
30  contrasts in the phenotype, neurocircuitry, molecular machinery, and cellular processes in these two
31 cesses and functional similarities among its molecular machinery are apparent across all cellular lif
32 f predator-prey interactions on cellular and molecular machinery are poorly understood.
33 nts, apg and aut, have begun to identify the molecular machinery as well as indicate a substantial ov
34  enable analyses of where and when different molecular machineries associate with and act on the BR p
35     Instead, copper selectively up-regulates molecular machinery associated with the cell cycle and c
36                                          The molecular machinery at the nexus of apoptosis and inflam
37 e summarize the current understanding of the molecular machineries behind each of these types of auto
38 ll-induced platelet secretion (TCIPS) or the molecular machinery by which effector molecules are rele
39 ession and reveal additional features of the molecular machinery by which photoreceptors mediate phot
40                                 How the same molecular machinery can elicit such specific and distinc
41            We demonstrate that the essential molecular machinery can, in theory, fit into 0.06 microm
42 in aggregates can be resolved or degraded by molecular machinery conserved from bacteria to eukaryote
43                               Thus, a common molecular machinery contributes to the nuclear maturatio
44 e data link cell surface Ret activation with molecular machinery controlling cytoskeletal dynamics an
45 tion, providing fundamental insight into the molecular machinery controlling ER and plasma membrane c
46  signaling may regulate internalization, the molecular machinery coordinating these two processes rem
47 o this crucial process, we have analyzed the molecular machinery directing polarized transport of RNA
48 chondrial apoptogenic proteins, although the molecular machinery downstream of JNK has not been preci
49                       Many components of the molecular machinery driving cellularisation have been id
50                       Thus, the cellular and molecular machinery driving hepatic functions is of utmo
51                                There are two molecular machineries for pre-mRNA splicing-the major sp
52 cently, advances in our understanding of the molecular machineries for several gliding bacteria revea
53 e-dependently and coordinately regulates the molecular machinery for 2-AG signaling via tropomyosine
54  Thus the cER network serves to organize the molecular machinery for both insertion and removal of ce
55  several key elements of the currently known molecular machinery for endocannabinoid synthesis are th
56                 These vesicles contained the molecular machinery for endocytosis and transcytosis.
57                                  Whereas the molecular machinery for exocytosis in presynaptic termin
58                         We conclude that the molecular machinery for generating characteristic interc
59                                          The molecular machinery for kinase activation, therefore, is
60   The T domain therefore contains the entire molecular machinery for mediating transfer of the cataly
61 (SNAP receptors) are elements of a conserved molecular machinery for membrane targeting/fusion that h
62           Many of these synapses contain the molecular machinery for messenger RNA translation, sugge
63                                  Much of the molecular machinery for motility evolved in early eukary
64 a also contain SAMs expressing the analogous molecular machinery for NE clearance, which thus constit
65  the downregulation of key components of the molecular machinery for necroptosis.
66 ized primarily in the cell body, whereas the molecular machinery for neurite extension and elaboratio
67  communication in the brain, require complex molecular machinery for neurotransmitter release and rec
68 ve capacities, but in lower vertebrates, the molecular machinery for regeneration is an elemental par
69 at twinfilin can be an essential part of the molecular machinery for regulating filament lengths afte
70 pendent polymerase activity and provides the molecular machinery for RNA packaging.
71 ic sites on the membrane that have clustered molecular machinery for secretion [15], organized in par
72 Nature provides highly evolved, finely tuned molecular machinery for solar energy conversion that exq
73               Because complexins bind to the molecular machinery for synaptic vesicle fusion (the SNA
74                                 However, the molecular machinery for the production of oxygenated pol
75               Toward determining whether the molecular machinery for vesicular transmitter release is
76           We are learning to build synthetic molecular machinery from DNA.
77 spite similar fundamental organizations, the molecular machinery, functions, and evolutionary charact
78 tors of subtype 5 (mGluR5) contribute to the molecular machinery governing sleep-wake homeostasis.
79  comparatively little is known regarding the molecular machinery governing this process.
80 te these diverse functions, and an extensive molecular machinery has developed to support the assembl
81                                         This molecular machinery, however, is suspected to be a sourc
82 n, we show that in vivo manipulation of this molecular machinery in mice results in cardiomyocyte ded
83 y, these data provide insights into the SSBR molecular machinery in the cell and point to the involve
84 dinary capacity of HIV to exploit the cell's molecular machinery in the course of infection.
85 many hundreds of proteins that assemble into molecular machinery in the host cell that permit protein
86  increase in the complexity of the apoptotic molecular machinery in vertebrates, in terms of both the
87 ides an optimal system for understanding the molecular machineries involved in blood progenitor commi
88 y post-genomic era is the description of the molecular machineries involved in these processes.
89  define the transcriptional program encoding molecular machinery involved in alpha-synuclein patholog
90 dy represents a major step in unraveling the molecular machinery involved in anaerobic NO(3)(-) and N
91 s recognized role in enamel development, the molecular machinery involved in Ca2+ homeostasis in amel
92 ancer therapy, a better understanding of the molecular machinery involved in chemotherapy-related sen
93                Here we show that part of the molecular machinery involved in ciliogenesis also partic
94 This report demonstrates conservation of the molecular machinery involved in erythrocyte invasion by
95                                          The molecular machinery involved in establishing and maintai
96                                          The molecular machinery involved in GLUT4 vesicle tethering
97                     However, the trafficking molecular machinery involved in lysosome exocytosis and
98                                 However, the molecular machinery involved in regulating caveolar upta
99 ating the plasma membrane recruitment of the molecular machinery involved in Rim101 processing and ac
100 s important to identify and characterize the molecular machinery involved in the assembly and mainten
101 n mutants, is beginning to shed light on the molecular machinery involved in the biogenesis of lysoso
102               In this Review, we discuss the molecular machinery involved in the generation of new ne
103 gested that LMO4 was an integral part of the molecular machinery involved in the negative regulation
104 he past decade has seen understanding of the molecular machinery involved in the pathogenesis of gene
105                 However, the signals and the molecular machinery involved in the redox-dependent regu
106  spindle, although little is known about the molecular machinery involved in this process.
107 ome provides clues to the mechanisms of, and molecular machinery involved in, mitochondrial DNA inher
108 aining embryonic stem cell pluripotency, the molecular machinery involved remains poorly understood.
109 transport rather than directly affecting the molecular machinery involved.
110     Therefore, defining the dynamics of such molecular machinery is critical for understanding cell-s
111 tributed to the inappropriate acquisition of molecular machinery leading to metastatic transformation
112 e a crucial role in conferring dynamicity to molecular machineries like nucleic acid packaging motors
113 however, little is know about the underlying molecular machinery linking these two cytoskeletal syste
114                    Here, we report synthetic molecular machinery made from DNA that controls and reco
115                          The signals and the molecular machinery mediating release of dense matrix gr
116 , and/or, when possible, to have induced the molecular machinery mediating such effects to rely oppor
117 ed by GLUT4 translocation in muscle, but the molecular machinery mediating this process is poorly und
118 s demonstrate that TI cells not only contain molecular machinery necessary for active ion transport,
119 his was associated with the induction of the molecular machinery necessary for PC formation.
120 damental step in the quest to understand the molecular machinery of a cell.
121 rch aimed at understanding and improving the molecular machinery of Agrobacterium responsible for the
122 in complex multicellular organisms, the core molecular machinery of autophagy - the 'autophagy protei
123 we summarize our current knowledge about the molecular machinery of autophagy and the role of the aut
124          Stim and Orai proteins comprise the molecular machinery of Ca(2+) release-activated Ca(2+) (
125 detailed physiological observations with the molecular machinery of Ca(2+)-triggered exocytosis.
126                                          The molecular machinery of cell cycle control is known in mo
127  and worms continue to dissect the intricate molecular machinery of chemical synapses.
128  from shedding considerable new light on the molecular machinery of DNA replication in the archaea, t
129 efore the first unequivocal link between the molecular machinery of Drosophila cell death and the con
130             SNARE proteins are the conserved molecular machinery of exocytosis in the majority of sec
131 substantiated information on the specialized molecular machinery of gametocytogenesis and expedited t
132 cal and genetic analyses have determined the molecular machinery of IFT, but these studies do not exp
133 ta is an important step in understanding the molecular machinery of life.
134 ets coated with Atg8/LC3, a component of the molecular machinery of macroautophagy, and maintains pha
135  taste, relatively little is known about the molecular machinery of mechanosensation.
136 tein receptor (SNARE) complexes are the core molecular machinery of membrane fusion, a fundamental pr
137            Recent evidence suggests that the molecular machinery of RNA interference may function as
138 onventional synapses by interacting with the molecular machinery of synaptic vesicle fusion at the ac
139           To systematically characterize the molecular machinery of the adipocyte that mediates the r
140 to explain both relatively simple modules of molecular machinery of the cell and to achieve system-le
141  that has been made in understanding how the molecular machinery of the cell cycle is used in the pro
142 nscripts is dramatic evidence of the unusual molecular machinery of the early diverging protist G.lam
143 ding of the organization, communication, and molecular machinery of the liver.
144           A promising donor organism for the molecular machinery of this mechanism is the eukaryotic
145 checkpoint complex, an essential part of the molecular machinery on which the SAC relies.
146 ets of genes is limited, and the cooperating molecular machinery or specific genomic anchoring sequen
147 est that the cuticulosome and the associated molecular machinery regulate the concentration of iron w
148 our findings deepen our understanding of the molecular machinery regulating endocytosis and subsequen
149    Recent studies have begun to describe the molecular machinery regulating hypha orientation.
150 uestered before degradation, to identify the molecular machinery regulating sequestration, and to ana
151                                          The molecular machinery regulating these cell death programs
152 by ligands has been studied extensively, the molecular machinery regulating TRPA1 is only poorly unde
153                    Consistent with this, the molecular machineries required for establishing segmenta
154                                 However, the molecular machinery required and possible trafficking ro
155 ated in this process, the composition of the molecular machinery required for efficient directional t
156                  Here, we define the minimal molecular machinery required for FGF2 membrane transloca
157 P), is an essential feature of the conserved molecular machinery required for gliding motility and ce
158 blish PRMT8 as an important component of the molecular machinery required for hippocampal neuronal fu
159                                     With the molecular machinery required for mediating rapid flow-in
160 , confirming that these enterocytes have the molecular machinery required for phagocytosis.
161           In an effort to define the precise molecular machinery required for platelet exocytosis, we
162  mice, and may help to better understand the molecular machinery required for rabies virus spread in
163              These results indicate that the molecular machinery required for the assembly of the mit
164              Thus, subplate neurons regulate molecular machinery required to establish an adult balan
165 ol cell direction have been established, the molecular machinery required to generate the force of th
166                                          The molecular machinery responsible for apolipoprotein B RNA
167                         In recent years, the molecular machinery responsible for apoptosis has been e
168 vided new insights into the structure of the molecular machinery responsible for biological oxygen pr
169                                          The molecular machinery responsible for DNA expression, reco
170                                          The molecular machinery responsible for DNA replication, the
171 ntly over the past two decades; however, the molecular machinery responsible for driving the system r
172 cades of research have uncovered much of the molecular machinery responsible for establishing and mai
173  at the heart of the RNA interference (RNAi) molecular machinery responsible for gene silencing.
174                                          The molecular machinery responsible for myonuclear positioni
175 uman cDNA encoding the mammalian enzyme, the molecular machinery responsible for regulating this acti
176             Recent studies have unveiled the molecular machinery responsible for the biological clock
177 agation of spreading depolarization, but the molecular machinery responsible for the dendritic beadin
178 c manipulations are beginning to unravel the molecular machinery responsible for the storage of fear
179 nrecognized link between neuronal NO and the molecular machinery responsible for the sustained synapt
180            Our evolving understanding of the molecular machinery responsible for the tightly controll
181 TCDD exposure suggest a direct effect on the molecular machinery responsible for these rhythms.
182                    Little is known about the molecular machinery responsible for vesicle docking and
183 rs at a similar rate, suggests that the same molecular machinery serves to partition and place many,
184                                          The molecular machinery synapses use to convey information f
185  findings provide the first insight into the molecular machinery targeted by Rap signaling to modulat
186                                      Yet the molecular machineries that allow each cell to merge info
187 er, and the mouse have not only revealed the molecular machineries that cause the programmed demise o
188 ll surface proteins is mediated by a complex molecular machinery that assembles on the inner surface
189           Overall, water flow is detected by molecular machinery that can vary between hair cells of
190                 Until recently, however, the molecular machinery that carries out reversible palmitoy
191                                          The molecular machinery that carries out the specific target
192                              We describe the molecular machinery that co-ordinates gene transcription
193 a more detailed investigation of the complex molecular machinery that co-ordinates proliferation and
194        Although much is understood about the molecular machinery that confers HIF responsiveness to o
195                    Little is known about the molecular machinery that contributes to site-specific co
196 mic study revealed candidate proteins of the molecular machinery that control the Golgi disassembly a
197                                 However, the molecular machinery that controls active transport of re
198 nstrate how these proteins interact with the molecular machinery that controls and executes the cell-
199 s, the discovery and characterization of the molecular machinery that controls cellular polarization
200 eristic that can be regulated by the complex molecular machinery that controls gene expression.
201                                 However, the molecular machinery that controls Ras ubiquitination has
202                                          The molecular machinery that controls secondary necrosis sta
203  lays a foundation for future studies on the molecular machinery that controls the development of the
204           However, little is known about the molecular machinery that controls the homeostasis of int
205                            Our data reveal a molecular machinery that controls the photoperiodic regu
206 oroplast movement is beginning to define the molecular machinery that controls these movements.
207 s or Ab-secreting plasma cells; however, the molecular machinery that controls this cellular fate is
208                                          The molecular machinery that controls this massive export pr
209 pends crucially on microtubule dynamics, the molecular machinery that couples SGs to microtubule-depe
210                              To identify the molecular machinery that defines Muller glial cell ident
211                                 However, the molecular machinery that determines the type of PCD is p
212 organs, relatively little is known about the molecular machinery that directly governs metabolic plas
213                                          The molecular machinery that directs formation of definitive
214 t extension relies on the same intracellular molecular machinery that directs planar cell polarity (P
215                                To define the molecular machinery that directs repair, we applied lase
216 ies have provided a glimpse of the conserved molecular machinery that directs the localization of spe
217 ntified "embryonic" genes may be part of the molecular machinery that drives this unique growth pheno
218 trate that LOXL2 is a novel component of the molecular machinery that forms cross-linked collagen IV
219       Here, we focused on characterizing the molecular machinery that functions in the sequential syn
220                       The answers lie in the molecular machinery that generates neural crest cells, c
221 ences in transcriptional programming and the molecular machinery that governs the migration, adhesion
222 onal molecular beacon for the recruitment of molecular machinery that imposes silencing across a chro
223                                          The molecular machinery that is involved in the entry and su
224  we present studies aimed at elucidating the molecular machinery that is responsible for the HG-induc
225 e that these new SR-TT junctions contain the molecular machinery that mediate SOCE: stromal interacti
226 suggesting a significant overlap between the molecular machinery that mediates DNA DSB repair, V(D)J
227                                          The molecular machinery that mediates sperm-egg interactions
228 leal tissue provides novel insights into the molecular machinery that mediates their functions and sp
229                                          The molecular machinery that mediates this organelle fission
230 ening in antigen receptor gene assembly, the molecular machinery that mediates this reaction has not
231 ittle is known about their biogenesis or the molecular machinery that modulates this process.
232 HSPA1A) and Hsp110 (HSPH1) formed a powerful molecular machinery that optimally reactivated stable lu
233 g in neurones, but little is known about the molecular machinery that orchestrates the process.The am
234 ies has shed light on the details of how the molecular machinery that orchestrates these attachments
235                                          The molecular machinery that organizes the signaling molecul
236                  They also indicate that the molecular machinery that promotes the wrapping of the gl
237  have proven instrumental for unraveling the molecular machinery that regulates actin polymerization.
238 l cell types, the Par complex is part of the molecular machinery that regulates cell polarity and mai
239          We propose that DBC1 is part of the molecular machinery that regulates fat storage capacity
240 er, little is known regarding the underlying molecular machinery that regulates its stability.
241                                          The molecular machinery that regulates the entry and surviva
242 eletal structure that act by subjugating the molecular machinery that regulates the G1/S transition.
243 rized type of adult stem cell, the intricate molecular machinery that regulates their self-renewal pr
244                               Currently, the molecular machinery that regulates this sorting pathway
245                                          The molecular machinery that shapes the endoplasmic reticulu
246  anchorage to the cytoskeleton; however, the molecular machinery that supports this process remains e
247 s of the gamma-secretase core complex with a molecular machinery that targets and fuses synaptic vesi
248 een described, little is known regarding the molecular machinery that terminates Arc function.
249 PM, indicating that it is a component of the molecular machinery that tether SGs to the PM.
250               Over the past two decades, the molecular machinery that underlies autophagic responses
251 plex is important for the elucidation of the molecular machinery that underlies synaptic transmission
252 cription of the cell from the perspective of molecular machinery (the mechanome) is likely to emerge
253                        Furthermore, a unique molecular machinery, the editosome, catalyzes the proces
254 e codon usage in the context of their host's molecular machinery, their genomes provide another windo
255 ation and illustrates the different usage of molecular machineries to accomplish the same biological
256 ssible to relate the dynamic organization of molecular machinery to cellular function.
257  and the OS share common building blocks and molecular machinery to construct and maintain them.
258  lymphomagenesis by subverting the host-cell molecular machinery to deregulate cell growth and surviv
259 her way in which the virus exploits the host molecular machinery to expand its limited genetic repert
260             How ZIKV interacts with the host molecular machinery to impact neurogenesis in vivo is no
261 dysregulating neutrophil gene expression and molecular machinery to potentially maximize its survival
262 strates that self-renewing mESCs possess the molecular machinery to sense shear stress and provides q
263 s flow-sensing organelles with the necessary molecular machinery to transduce rapidly, mechanical sti
264 ization, domestication, as well as about the molecular machineries underlying them.
265          Together, our data suggest that the molecular machinery underlying axonal insulation and axo
266 d to reveal further important aspects of the molecular machinery underlying lineage commitment.
267 sease is therefore crucial to dissecting the molecular machinery underlying LSC self-renewal.
268                                  Because the molecular machinery underlying LTS is common to many cel
269                 In the quest to identify the molecular machinery underlying mechanoelectrical transdu
270          Integrating these findings with the molecular machinery underlying migration will provide a
271                                 However, the molecular machinery underlying MT dynamics in tip-growin
272                                          The molecular machinery underlying neurotransmitter receptor
273                   Akinduro et al. detail the molecular machinery underlying removal of the nucleus (n
274     Overall, our analysis sheds light on the molecular machinery underlying subunit communication, an
275 havior, yet there is much to learn about the molecular machinery underlying the coordination between
276 nome have generally been hypothesized as the molecular machinery underlying the persistent, often tis
277        To gain a better understanding of the molecular machinery underlying the pleiotropic functions
278                                 However, the molecular machinery underlying these hierarchically thre
279 nologic tolerance, little is known about the molecular machinery underlying this process.
280 velopmental processes in plants, the broader molecular machinery underpinning polarity establishment
281                             Furthermore, the molecular machinery used by normal stem cells for homing
282 spindle and broaden our understanding of the molecular machinery used to move chromosomes.
283 nto diverse mammalian cells by hijacking the molecular machinery used to organize cellular membranes.
284 ings should prove useful for elucidating the molecular machinery used to transmit a signal into a vir
285                                    Thus, the molecular machinery utilized by bladder epithelial cells
286 e than three billion years, during which its molecular machinery was perfected to minimize wasteful r
287 rom the fields of molecular conductivity and molecular machinery we set out to design a crystalline m
288 study multi-protein interactions within such molecular machineries, we have developed a fluorescence
289 : (i) that the rods, and their corresponding molecular machinery, were lost or (ii) that the rods wer
290 d accurate means to describe the dynamics of molecular machinery which orchestrates gene regulation.
291  that these cells share elements of a common molecular machinery with stem cells in other tissues.
292 whether the interval-timing mechanism shares molecular machinery with the circadian timing mechanism.
293                 While we know much about the molecular machinery within each compartment, we are only
294 NA and RNA polymerases with their associated molecular machinery would move along the DNA template wi

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