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1 oughout the corneal stroma with differential temporal expression.
2 ulated by HIV according to their patterns of temporal expression.
3 ysregulation of embryonic myosin heavy chain temporal expression.
4  host and snoRNA with often different spatio-temporal expression.
5 e HCMV translation products and follow their temporal expression.
6           We find, for all major patterns of temporal expression, a substantive amount of gene expres
7 ndings suggest that variations in the spatio-temporal expression, accompanied by discriminate interac
8 in several parameters, including spatial and temporal expression, allosteric regulation, and heat sta
9 s to be close correlation of the spatial and temporal expression among Maml1, Notch1 and Hes1 in the
10 as shown for three candidates by spatial and temporal expression analyses in five grape cultivars.
11                                              Temporal expression analyses revealed that CDX4 was expr
12                                  Spatial and temporal expression analyses revealed that PPARgamma imp
13                                              Temporal expression analysis of conserved and novel miRN
14                                              Temporal expression analysis of PTM5 in staged vascular
15 nic cerebral hypoperfusion induces a complex temporal expression and activation of inflammasome compo
16 ed by Kar4, on average, are delayed in their temporal expression and exhibit a more stringent dose re
17 rier function assays to delineate the spatio-temporal expression and function of matriptase in mouse
18 ter model, we reproduced the observed spatio-temporal expression and localization patterns of these p
19  of PMP22 at cell junctions, we examined the temporal expression and protein localization during deve
20 e present study were to determine the spatio-temporal expression and putative E regulation of EBP1 in
21 enes differed from one another in both their temporal expression and response to IFN-gamma.
22                             Furthermore, the temporal expression and selective inhibition of FGF rece
23 ures of plaque vulnerability, although their temporal expression and their respective value in predic
24 , we extend previous approaches to perform a Temporal Expression-based Analysis of Metabolism (TEAM).
25 ndent sample set demonstrated characteristic temporal expression changes for each gene.
26 ssion efficiency, cell type specificity, and temporal expression characteristics.
27 ression in known JH target tissues, in which temporal expression corresponds with periods of hormone
28 0 genes - and particular wiring that elicits temporal expression coupled to organelle morphogenesis.
29 ar targeting of MtPT4 is mediated by precise temporal expression coupled with a transient reorientati
30 ce of biomolecular interaction networks from temporal expression data is presented.
31 ets of neural precursors generating distinct temporal expression domains within the plane of the neur
32           Results provide information on the temporal expression during caryopsis development for a s
33 ry elements necessary for proper spatial and temporal expression during development in transgenic mic
34 signaling factors that varied in spatial and temporal expression during development of the mouse ENS.
35 n of p75 to certain types of neurons and its temporal expression during development prompted speculat
36  of the TKDPs, coupled with their restricted temporal expression during development, likely reflects
37 are analyzed with respect to their function, temporal expression during the cell cycle, correlation w
38                                 Differential temporal expression during the developmental cycle was s
39 ental timing in C. elegans, and their proper temporal expression ensures cell lineage patterns are co
40 s, but sequences determining its spatial and temporal expression have not been identified.
41 xible tool to determine genes having similar temporal expression, hence possibly related biological f
42                           Proper spatial and temporal expression in the anterior endoderm prechordal
43 ization assays indicate that prokr1b spatial-temporal expression is consistent with gnrh3.
44 are controlled by several genes whose spatio-temporal expression is tightly regulated.
45                                  Spatial and temporal expression levels of the potential VvGT genes w
46 unctional groups of genes with varied spatio-temporal expression modes affected by selective pressure
47 genomic regulatory code, for the spatial and temporal expression of a key developmental control gene.
48              RNA secondary structure and the temporal expression of adenosine deaminase acting on RNA
49 The aim of this study was to investigate the temporal expression of angiogenic biomarkers during woun
50 f AR(+) tumor cells where MDM2 regulates the temporal expression of AR during transcriptional activit
51 a mechanism involving restricted spatial and temporal expression of Arp2/3 complex and N-WASP, whose
52                    Previously, we identified temporal expression of beta-catenin during liver develop
53  chosen as a model to define the spatial and temporal expression of BHMT during development.
54                                          The temporal expression of biglycan and decorin on the apica
55                                          The temporal expression of cap5 and hla and the regulatory g
56 vitro recapitulated in vivo retinogenesis in temporal expression of cell differentiation markers and
57 phorylation event is required for the normal temporal expression of cell-cycle-regulated genes such a
58                                              Temporal expression of chlamydial genes during the intra
59                                   The spatio-temporal expression of CTLA-2beta mRNA precisely overlap
60 hritic inflammation, we demonstrate that the temporal expression of cytokines during the incubation p
61 elopmental events by controlling spatial and temporal expression of developmental patterning genes vi
62 ved cells that may contribute to the spatial-temporal expression of DSPP during tooth development.
63                                  The spatial-temporal expression of DSPP is largely restricted during
64 n this study, we determined the cellular and temporal expression of EAAT1-3 in the developing human c
65 that a risk allele that perturbs the spatial/temporal expression of EN2 could significantly alter nor
66 , Smith, and colleagues demonstrate that the temporal expression of Epo is critical for determining w
67 vation in order to ensure proper spatial and temporal expression of forespore-specific genes.
68 Enhancer binding proteins (EBPs) control the temporal expression of fruiting body development-associa
69 ng the sequences that direct the spatial and temporal expression of genes and defining their function
70                 To test this hypothesis, the temporal expression of genes and proteins associated wit
71 ogy require detailed knowledge of the spatio-temporal expression of genes and proteins.
72 ian clock, which is critical for the correct temporal expression of genes and their products, is cont
73 tory mechanism that controls the spatial and temporal expression of genes during development.
74                                  Mapping the temporal expression of genes during human brain developm
75 nt role for Pkc1p in controlling the correct temporal expression of genes in the cell cycle.
76                      The precise spatial and temporal expression of genes is essential for proper org
77  modules (CRMs) act sequentially to regulate temporal expression of genes, but how the switch from on
78 atory sequences that control the spatial and temporal expression of genes.
79   In Caenorhabditis elegans, the spatial and temporal expression of germline genes is controlled post
80 croarray data revealed a differential spatio-temporal expression of GGPPS genes.
81     The transcriptional basis of the spatial-temporal expression of guidance cues and their cognate r
82 ranscriptional repressor and controls normal temporal expression of haploid cell genes during spermio
83 tent with emerging evidence that the precise temporal expression of Hox genes is crucial for the esta
84 the EE results in a significant delay in the temporal expression of Hoxc8.
85 tation for virus production, but the correct temporal expression of IE2 86 and IE2 40 together has th
86                                          The temporal expression of IL-12Rbeta2 on OX40-stimulated CD
87                                              Temporal expression of IL-17 and IL-23 in submandibular
88                              We examined the temporal expression of IL-1beta, IL-4, IL-6, IL-10, IL-1
89 our study demonstrate for the first time the temporal expression of inflammatory genes during LPS-ind
90 eloping retinal neurons is important for the temporal expression of intrinsic fate determinants but n
91 ed three components: identifying the spatial-temporal expression of ITIH3 in the developing human bra
92         We conclude that KSHV fine-tunes the temporal expression of its genes by modulating PPD activ
93 conclude that KSHV uses PPD to fine-tune the temporal expression of its genes by preventing their pre
94 ll functioning depends on the precise spatio-temporal expression of its genetic material.
95                                          The temporal expression of JADE1S correlated with the acetyl
96  translational regulation in fine-tuning the temporal expression of localized RNA, and this may provi
97                                              Temporal expression of MMP-9 inversely correlated with M
98 ) soluble factors alone regulate spatial and temporal expression of morphogenetic molecules and proce
99 n of bvgAS transcription is required for the temporal expression of multiple phenotypic phases that o
100 criptional events to control the spatial and temporal expression of muscle-specific genes.
101                     The distinct spatial and temporal expression of nocturnin and PARN suggests that
102 novo infection, pTyr(705)-STAT3 promoted the temporal expression of ORF59, a viral replication protei
103                                          The temporal expression of PAI-1 was examined by real-time P
104 reviously, and here we find that the complex temporal expression of pb in the labium is like that of
105                              The spatial and temporal expression of plant and fungal N metabolism gen
106                                              Temporal expression of positive and negative angiogenic
107  bioinformatics to determine the spatial and temporal expression of proteins in cells, tissues and wh
108 ic process, we set to determine the distinct temporal expression of proteins regulating the formation
109               We found that MKs regulate the temporal expression of Pyk2 and its subcellular localiza
110 erse transcription-PCR was used to study the temporal expression of qsrP, acfA, and ribB during the e
111        In this study, we examined the spatio-temporal expression of recently discovered ERalpha36 (ES
112                               In M0 MDM, the temporal expression of representative genes from Salmone
113 on of molecular clock proteins influence the temporal expression of SCN neuronal state or intercellul
114     These results suggest that proper spatio-temporal expression of Sema3c, regulated positively by F
115            However, the specific spatial and temporal expression of semaphorin 6B (Sema6B) in chick c
116  Gene cluster analysis showed differences in temporal expression of SfAV-1a genes, enabling their ass
117  a determinacy factor, regulates the spatial-temporal expression of SGL1 during leaf morphogenesis an
118                                  Varying the temporal expression of Slc26a4 revealed that E16.5 to P2
119                                              Temporal expression of Snai1 mirrored that of vimentin a
120                                  Spatial and temporal expression of specific basic-helix-loop-helix (
121 oenvironments established by the spatial and temporal expression of specific signaling molecules are
122 ient to recapitulate the correct spatial and temporal expression of SpPks.
123  Based on these results, we propose that the temporal expression of T3S genes in Chlamydia is control
124 oding RNA molecules that control spatial and temporal expression of targeted genes through post-trans
125  authors describe studies on the spatial and temporal expression of the CFH gene and localization of
126 ess to these growth factors is determined by temporal expression of the cytokine-specific IL-2 recept
127 with iron, H2O2 and hemin treatment, and the temporal expression of the genes is very similar.
128  novel system that allows tightly controlled temporal expression of the IE2 proteins and provides com
129                           Here, we study the temporal expression of the inhibitory receptor programme
130 plays an important role in co-ordinating the temporal expression of the LEE by controlling grlRA expr
131   We propose that Mce1R facilitates balanced temporal expression of the mce1 products required for or
132                We analyzed the evolution and temporal expression of the microRNA complement and seque
133 is study was to characterize the spatial and temporal expression of the mouse Ctrp5 gene, determine t
134 is study was to characterize the spatial and temporal expression of the mouse Mfrp gene, determine ti
135 t this early priming is required for correct temporal expression of the myeloid master regulator PU.1
136                                          The temporal expression of the phoPR promoters was investiga
137 ied a cardiovascular progenitor based on the temporal expression of the primitive streak (PS) marker
138        We also used these data to define the temporal expression of the spore proteome, and in doing
139 predictably, or depend on changes in spatial-temporal expression of the targeted gene.
140 onserved in eudicots directs the spatial and temporal expression of the transcription factor DUO1 to
141 olanaceous species depends on sequential and temporal expression of the WUSCHEL-RELATED HOMEOBOX (WOX
142 lencers, function to control the spatial and temporal expression of their target genes.
143                      In order to address the temporal expression of these important genes in vivo, th
144                            Understanding the temporal expression of these molecules could afford bett
145                                          The temporal expression of these patterns over 72 hrs was si
146 tion of ahrC transcription revealed that the temporal expression of this locus observed in wild-type
147 dback control of the gyrase promoter and the temporal expression of three topoisomerases.
148                                          The temporal expression of tissue-specific PCs varied in wil
149                   Thus, in angiogenesis, the temporal expression of TNF is critical: it delays angiog
150 ng the high intraocular pressure METHOD: The temporal expression of TNF-alpha was ascertained with im
151  redox functions and may control spatial and temporal expression of TR1 transcripts.
152  combinatorial rules that control the phased temporal expression of transcription factors, histones,
153 uses heat-induction to precisely control the temporal expression of transgenes, we labeled two popula
154     The observed changes correlated with the temporal expression of TSP2 in the ischemic muscle of wi
155      We propose that the dynamic spatial and temporal expression of Tubb2b reflects specific function
156 forward regulatory motif, which controls the temporal expression of u-shaped.
157 like (upd-like) cause changes in spatial and temporal expression of upd-like in the developing wing a
158   Using this system, we were able to control temporal expression of vGPCR and to monitor its expressi
159 tween amino acids 271 and 275, modulates the temporal expression of viral genes.
160  in accelerated virus growth and accelerated temporal expression of viral proteins.
161                                   The proper temporal expression of virulence genes during infection
162 embryonic life is dependent on molecules the temporal expression of which is tightly regulated.
163  (Trp53) gene, we examined the impact of the temporal expression of wild type p53 in preventing stem
164 generation, we adopted a method to alter the temporal expression of WldS protein in neurons by chemic
165                    The specific cellular and temporal expressions of HO-2 and HO-1 were characterized
166       We found that each HDAC has a distinct temporal expression pattern and regulates transcription
167              The ZRS drives the early spatio-temporal expression pattern in the limb of tetrapods.
168 transcripts, as well as the miR156-dependent temporal expression pattern of a 35S::GUS-SPL3 transgene
169 (Day28) subjects were characterized by an AM temporal expression pattern of Day 1 enrichment of innat
170                              The spatial and temporal expression pattern of dlf1 indicates a threshol
171  reporter that recapitulates the spatial and temporal expression pattern of endogenous Tctex-1.
172  the normal postnatal brain, the spatial and temporal expression pattern of FGFR3 parallels the appea
173  we have determined the detailed spatial and temporal expression pattern of FOXP2 mRNA in the develop
174 d in tube-forming endothelial cells reveal a temporal expression pattern of genes primarily associate
175              Therefore, our results reveal a temporal expression pattern of miR-17-92 by antigen-spec
176 d out a detailed analysis of the spatial and temporal expression pattern of the gene Fgf10, by compar
177                   To address the spatial and temporal expression pattern of the two homologs, C-termi
178 ndicate that RNAi does not contribute to the temporal expression pattern of this gene.
179                     We found that the spatio-temporal expression pattern of VEGF in the ectoderm corr
180 talloproteinase 7 (MMP7) as an enzyme with a temporal expression pattern that corresponded with carti
181 genes that must be expressed, as well as the temporal expression pattern, for the development of func
182                    We clustered the genes by temporal expression pattern, identified transcription fa
183 ollagen type I genes showed a similar spatio-temporal expression pattern, indicating their co-regulat
184                              When grouped by temporal expression pattern, these TFs explain much of t
185 in DNA supercoiling that correlates with the temporal expression pattern.
186 ption factor (lin-29) primarily controls the temporal expression pattern.
187 ative cluster analysis grouped into distinct temporal expression patterns >900 known human genes that
188 or co-expression network based comparison of temporal expression patterns (NACEP).
189  transcriptome analysis revealed distinctive temporal expression patterns among the cold-regulated ge
190 in callosal fibers based on both spatial and temporal expression patterns and analysis of gene-target
191 0A4 in normal mammary gland, its spatial and temporal expression patterns and possible function in br
192                                  Spatial and temporal expression patterns appear to have been evoluti
193  identified two PG-specific P450 genes whose temporal expression patterns are correlated with changes
194             Interestingly, these spatial and temporal expression patterns coincide with the expressio
195                                              Temporal expression patterns demonstrated that the super
196            Each ligand displays differential temporal expression patterns during embryogenesis and sp
197 t mH2A1 and mH2A2 have different spatial and temporal expression patterns during embryonic developmen
198 eplichores largely corresponds both to their temporal expression patterns during growth and to an inf
199              Transcript abundance levels and temporal expression patterns for double-strand break rep
200 the current study, we found distinct spatial-temporal expression patterns for the mRNA of TIMP family
201                              The spatial and temporal expression patterns in C. elegans embryos of 10
202 lso show that genetic manipulations of their temporal expression patterns in mice alter the timing of
203  rtcl genes display highly correlated spatio-temporal expression patterns in roots, despite the signi
204 s pathway of melanin, were cloned, and their temporal expression patterns in the integument were comp
205 lopmental enhancers with desired spatial and temporal expression patterns in the zebrafish brain.
206   Methods for capturing these spatial and/or temporal expression patterns include in situ hybridizati
207 scription factors, whose defined spatial and temporal expression patterns may also be influenced by a
208                                              Temporal expression patterns of AhR target genes were al
209  expression reveals constitutive spatial and temporal expression patterns of all gene family members
210 role of miR398 in specifying the spatial and temporal expression patterns of CSD1 and CSD2 mRNAs.
211 anscription-PCR to determine the spatial and temporal expression patterns of each AtKT/KUP gene acros
212                              The spatial and temporal expression patterns of FGFs and FGFRs and the a
213                                              Temporal expression patterns of hypoxia-inducible factor
214 f this study was to elucidate how changes in temporal expression patterns of individual components of
215 lia have come via monitoring the spatial and temporal expression patterns of individual transcription
216                              The spatial and temporal expression patterns of Notch signaling genes in
217 ntial for generating the complex spatial and temporal expression patterns of Notch target genes durin
218                                              Temporal expression patterns of other lncRNA-messenger R
219 o illuminate its properties, the spatial and temporal expression patterns of PKHD1 were determined in
220 rs regulating various aspects of the spatial-temporal expression patterns of TCF7L2, including expres
221                                              Temporal expression patterns of the Bordetella pertussis
222 ervous system, we determined the spatial and temporal expression patterns of the gene products of AHI
223                              The spatial and temporal expression patterns of the genes provide inform
224 and verified genes by qPCR revealed that the temporal expression patterns of these genes are consiste
225  as sensors, we demonstrate that spatial and temporal expression patterns of these genes in the endos
226                              The spatial and temporal expression patterns of these two genes show ext
227 ential to accurately measure the spatial and temporal expression patterns of transcription factors an
228 er analysis of these genes revealed distinct temporal expression patterns of transcriptional activati
229  models for the prediction of precise spatio-temporal expression patterns on the one side, and crude,
230                                  Spatial and temporal expression patterns show startling similarity b
231 d to be essential for permitting spatial and temporal expression patterns that approximate normal end
232 iP promoters potentially define their spatio-temporal expression patterns under developmental and str
233 g the mycorrhiza-induced genes, two distinct temporal expression patterns were evident.
234 ng analysis, 13 miRNA clusters with distinct temporal expression patterns were identified.
235                                 However, the temporal expression patterns were strongly dependent on
236 has an unusual developmental cycle marked by temporal expression patterns whose mechanisms of regulat
237 unctional DNMs, (2) exhibited similar spatio-temporal expression patterns, (3) shared significantly m
238 ins having a common function exhibit similar temporal expression patterns, and genes specifying funct
239                       By determining spatial-temporal expression patterns, reporter constructs provid
240  CesA gene family has adapted differentially temporal expression patterns, suggesting an integrated r
241 to be accompanied by a change in spatial and temporal expression patterns, suggesting that duplicated
242 ression level information in addition to the temporal expression patterns, we can uncover sequence-le
243 lust, we clustered host genes based on their temporal expression patterns.
244 genes clustered into four anatomical and six temporal expression patterns.
245 te specificity, kinetic characteristics, and temporal expression patterns.
246 egulated clusters based on the similarity of temporal expression patterns.
247 s that exhibit diverse structural layout and temporal expression patterns.
248 nt and identified new genes with interesting temporal expression patterns.
249 athways differing in biological function and temporal expression patterns.
250 nt Hox3 paralog), with disparate spatial and temporal expression patterns.
251  Twist2 are themselves controlled by spatial-temporal expression, phosphoregulation, dimer choice and
252 ocedure to identify genes that have a common temporal expression profile across two or more experimen
253 his study, we have characterized the spatial-temporal expression profile of a recently identified rec
254 surprising since it does not follow from the temporal expression profile of CtrA and, in turn, simula
255                                          The temporal expression profile of lncRNAs revealed two nove
256 ecture, and explain the rising, then falling temporal expression profile of the alx1 gene in terms of
257 tasets, we generated a gene network based on temporal expression profile similarities.
258                                         This temporal expression profile, along with its fibronectin-
259 n transcription, resulting in an oscillatory temporal expression profile.
260 for development: beginning from their spatio-temporal expression profiles and extending to their down
261                                  Its spatial-temporal expression profiles are also different from tho
262                           The differences in temporal expression profiles are consistent with cultiva
263                                          The temporal expression profiles displayed by taste organoid
264           These HD proteins exhibit distinct temporal expression profiles during osteoblast different
265  leg muscle identified positively correlated temporal expression profiles for some gene classes, and
266 ing wild-type germline development to define temporal expression profiles for these genes.
267                                          The temporal expression profiles indicate that 5% of the gen
268 constructed DNA microarrays and analysed the temporal expression profiles of 1817 among the 2129 uniq
269 d transcript counting method we characterise temporal expression profiles of 23,642 genes.
270                                 However, the temporal expression profiles of alphaSMA and collagen I
271                             Furthermore, the temporal expression profiles of four regulatory genes in
272 MS) and immunohistochemistry to evaluate the temporal expression profiles of gangliosides during the
273    Moreover, our quantitative studies of the temporal expression profiles of Mm-antiNos1 RNA in the m
274                             Here, we compare temporal expression profiles of one-to-one orthologs in
275 characterization of a database that contains temporal expression profiles of sequences found in 35,28
276 ting of muscular dystrophy, we characterized temporal expression profiles of the diaphragm in dystrop
277                            We determined the temporal expression profiles of the IR-responsive genes
278 inct clusters of genes that have overlapping temporal expression profiles suggesting they have a key
279 smids, 37 promoters of various strengths and temporal expression profiles, and 10 protein-localizatio
280 nservation of let-7-C microRNA sequences and temporal expression profiles, these findings indicate th
281 re grouped into six clusters according their temporal expression profiles.
282 g15 and cpg15-2 diverge in their spatial and temporal expression profiles.
283  different fli1+ cell types display distinct temporal expression profiles.
284 sified into four clusters based on different temporal expression profiles.
285 odeling process and were clustered into four temporal expression profiles; transiently up- or downreg
286      However, neither Hinfp function nor its temporal expression relative to histone H4 genes during
287                 Experiments manipulating its temporal expression showed that Pla allows Y. pestis to
288                     Further, analysis of its temporal expression showed that the construct is express
289                                              Temporal expression studies of TaIAR3 indicate that the
290                                  Spatial and temporal expression studies using GFP and LacZ promoter
291 olutionary conservation and the cellular and temporal expression suggest that Trib may be required fo
292 protein expression indicated tissue-specific temporal expression that was associated with the early s
293 n combined with specific methods of cell and temporal expression, the extension of this approach to h
294 noid biosynthesis beyond correct spatial and temporal expression, their predicted subcellular localiz
295 ionality reduction, and identifies canonical temporal expression trajectories (e.g., degradation, gro
296                   Based on their spatial and temporal expression, transcription factors of the Forkhe
297  defining biologically relevant pathways and temporal expression trends were identified by using a se
298 g with selection of targets with spatial and temporal expression well aligned to interventional requi
299  in this regulatory hierarchy requires early temporal expression, which is characteristic of low-thre
300 t and second-layer temporal factors define a temporal expression window of BTB-zinc finger nuclear pr

 
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