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1 th of the virus and has been classified as a late gene.
2 n DCs, this mutant virus expresses early and late genes.
3 e and represses expression of both early and late genes.
4 ios than most lytic genes, including classic late genes.
5 lymerase (RNAp) to transcribe its middle and late genes.
6 ut few did so to homologs of intermediate or late genes.
7 an essential role in the expression of viral late genes.
8 tion) and the relationship between early and late genes.
9  as it escapes the pause and transcribes the late genes.
10 ferred by the early genes and another by the late genes.
11 oloenzyme for transcription of its early and late genes.
12 indromic structure devoid of E2, E3, E4, and late genes.
13 hat SspA is a transcription activator for P1 late genes.
14 ric DNA progeny for optimal transcription of late genes.
15 al activator complex to induce expression of late genes.
16 ired for transient expression of baculovirus late genes.
17 ordinate the activation of a larger group of late genes.
18 igma(66) -dependent and sigma(28) -dependent late genes.
19 ibits the downstream expression of early and late genes.
20  I, II, and III, or early, intermediate, and late genes.
21  of key early genes at 6 h and transition to late gene activation by 12 h by both viruses.
22 te Q fever, and the expression levels of the late genes ALOX15, CLECSF1, CCL13, and CCL23 were specif
23 ight of the fact that U(L)31 is designated a late gene and pU(L)31 is not a virion component.
24 e pointed to impaired expression of specific late genes and at lysosomal targeting of egressing virio
25                 This mutant does not express late genes and behaves nearly indistinguishably from the
26  factors are essential for the expression of late genes and formation of spores, and identify dozens
27     Down-regulated genes included chlamydial late genes and genes involved in proteolysis, peptide tr
28  of differentiation led to the expression of late genes and production of infectious HPV16 virions.
29 ential for the expression of viral early and late genes and viral growth.
30  the late promoter, leading to expression of late genes and virion morphogenesis.
31 er cell had no effect on the accumulation of late genes and virus yield.
32            The cvsod gene was expressed as a late gene, and cvSOD activity was detected in purified v
33  the translation levels of a subset of HSV-1 late genes, and this function requires the C terminus of
34 teriophage that specifically transcribes its late genes, and thus represents a novel type of bacterio
35                       Interestingly, only 16 late genes are essential for genetic transformation.
36                             Some of the ES18 late genes are novel, while others are most closely rela
37 iciently activates many early genes, whereas late genes are poorly activated, and virus growth is sev
38 hanism or pathway that coregulates the viral late genes as a group.
39 y genes at 2 h and for most intermediate and late genes at 4 and 8 h after infection.
40 y genes at 2 h and for most intermediate and late genes at 4 and 8 h.
41 ression of selected delayed early (UL89) and late genes at early times in the infection.
42 at baculoviruses replicate and express their late genes at normal levels in the absence of its two di
43 ctivates a subset of viral delayed-early and late genes, at least in part through posttranscriptional
44              Significantly, deletion of some late genes attenuated pneumococcal fitness to the same l
45 ZEBRA suppresses Rta's ability to activate a late gene, BLRF2.
46 repressed promoters of Chlamydia trachomatis late genes, but not early or mid genes.
47 of the herpes simplex virus 1 (HSV-1) gamma2 late genes by still unknown mechanisms.
48 ory protein needed for expression of the HIV late genes, can influence CTL killing.
49 ssed; at the same time, the synthesis of the late genes, capsid proteins, is suppressed and S-HML are
50                    Transcriptome analysis of late gene changes suggested roles for the transcription
51  expected of the immediate-early, early, and late gene classes.
52 tion only enhanced expression of a subset of late genes, consistent with a direct requirement for SM
53 ta indicate that the spatial organization of late genes contributes to temporal regulation of myogeni
54                    In addition, EBV and KSHV late gene core promoters could be activated by MHV-68 ly
55 was highly skewed and was most evident on 13 late genes, demonstrating why SM is essential for infect
56 y also provides evidence for a second, viral late gene-dependent pathway that triggers loss of Ser-2P
57                 Transcription of herpesvirus late genes depends on several virus-encoded proteins who
58 imary (immediate-early genes) and secondary (late genes) differentiation stages of the cycle.
59  is produced via splicing and that vLIP is a late gene, due to its sensitivity to inhibition of DNA r
60 nd protein for IE2 and viral early and early-late genes during a second wave of viral gene expression
61 expression from many viral delayed-early and late genes during infection.
62 transcriptional switch from the early to the late genes during P1 lytic growth.
63 -Myb, and reassociates with the promoters of late genes during S phase.
64 r 1) gene is required for expression of very late genes during the final phase of infection.
65                                     The four late genes encode an extensin-like protein, a peptide tr
66  addition to late transcription factors; the late genes encoded many morphogenesis and mature virion
67 e mRNA accumulation from a transfected viral late gene encoding glycoprotein C (gC).
68 a group specifically defective at activating late gene expression (seven mutants).
69 cell surface staining for CAR required virus late gene expression and a CAR-binding fiber protein eve
70 ne recombinase and is required for both very late gene expression and budded virus production.
71  of ICP22 result in similar defects in viral late gene expression and growth in HEL cells, despite ha
72 l juglone or dominant-negative Pin1 enhanced late gene expression and production of infectious virus,
73 t not UV-inactivated CMV, rescued VVDeltaE3L late gene expression and replication.
74 NA replication occurred but intermediate and late gene expression and resolution of genome concatemer
75 her has the most beneficial effect for early-late gene expression and synthesis of infectious virus.
76 frame 24 (ORF24) and ORF34 vTFs ablated both late gene expression and viral replication.
77 omoter activity does not necessarily lead to late gene expression and virus shedding.
78 e reflects its role in stimulating early and late gene expression and/or its role in inhibiting host
79 , indicating that the mechanisms controlling late gene expression are conserved among gammaherpesviru
80  onset of infection; however, both early and late gene expression are significantly delayed, even if
81 ene expression not only because it activates late gene expression but also because it suppresses earl
82 RF31), ORF24, and ORF34 that is required for late gene expression but not viral DNA replication.
83 of natural infections by the virus, in which late gene expression can fail to occur, allowing the vir
84                           This suggests that late gene expression does not strictly require amplifica
85 l DNA replication, but each is essential for late gene expression during both de novo lytic replicati
86 e investigated the cis element that mediates late gene expression during de novo lytic infection with
87           As ICP22 is known to enhance viral late gene expression during infection of certain culture
88 /cut all play definitive roles in regulating late gene expression during normal myeloid development.
89 ion of myogenic transcription by restricting late gene expression during the early stages of myogenes
90 alovirus (MCMV) protein pM92 regulates viral late gene expression during virus infection.
91                       CMV rescued VVDeltaE3L late gene expression even in the presence of ganciclovir
92 ase in viral copy number and an induction of late gene expression from a differentiation-specific pro
93 n of C/EBPbeta isoforms blocks activation of late gene expression from complete viral genomes upon di
94 xpression of RALYL or hnRNP C1 induced HPV16 late gene expression from HPV16 subgenomic plasmids and
95 sistent with a direct requirement for SM for late gene expression in addition to its contribution to
96                                              Late gene expression in gammaherpesviruses requires the
97 nc finger transcription factors required for late gene expression in P2- and P4-related bacteriophage
98 nc finger transcription factors required for late gene expression in P2- and P4-related bacteriophage
99 d ie-1/ie-0) blocked virus DNA synthesis and late gene expression in permissive Spodoptera frugiperda
100  manner and fails to induce efficient gamma2 late gene expression in restrictive cells.
101 d an increased requirement for UL97 in viral late gene expression in strains with full-length ULb' re
102  propose that EUO is the master regulator of late gene expression in the chlamydial developmental cyc
103  studies and immunoblot analyses showed that late gene expression in the double mutant was equivalent
104     The activation of sigma(G), which drives late gene expression in the forespore, follows forespore
105 l into the forespore of factors required for late gene expression in this compartment.
106  viral replication, viral DNA synthesis, and late gene expression in Vero cells.
107 s triggers KSHV replication, the kinetics of late gene expression is accelerated by 12 to 24 h and th
108  mutant skeletal phenotype and suggests that late gene expression is dependent on a critical level of
109 presence of ganciclovir, indicating that CMV late gene expression is not required for complementation
110              However, the mechanism by which late gene expression is regulated has not been well char
111 bodies, we revealed that ORF52 displays true late gene expression kinetics and confirmed its cytoplas
112 ion combined with the direct effect of SM on late gene expression leads to a global deficiency of lat
113  the differentiation-dependent activation of late gene expression of high-risk papillomaviruses.
114   We therefore examined the effects on viral late gene expression of inhibition of the synthesis or a
115 potential E4 function in regulation of viral late gene expression through the inhibition of a host ce
116 tion by DNA viruses is the coupling of viral late gene expression to genome replication.
117 ch recruits mother cell proteins involved in late gene expression to the outer forespore membrane.
118     This critical role of ORF18 and ORF30 in late gene expression was also observed during KSHV react
119                       To investigate whether late gene expression was dependent on the amplification
120                   Furthermore, the defect in late gene expression was likely due to a deficiency in t
121 ect and valganciclovir treatment showed that late gene expression was nonessential.
122             In these assays, an induction of late gene expression was seen upon differentiation that
123 , cervical cancer cells permissive for HPV16 late gene expression were identified and characterized.
124  amplification and differentiation-dependent late gene expression were observed in mutant cell lines,
125 entiation-dependent genome amplification and late gene expression were significantly decreased in cel
126                              Such defects in late gene expression were the result of inefficient prog
127 e lefs (lef-8, lef-9, p47, and pp31) blocked late gene expression without affecting virus DNA replica
128             This is required for herpesviral late gene expression, a complex and poorly understood ph
129 resulted in reduced genome amplification and late gene expression, along with decreased levels of cel
130 ate the ORF31-ORF34 interaction required for late gene expression, and (iii) a complex consisting of
131 s of UL97 inhibition on viral DNA synthesis, late gene expression, and production of cell-free virus
132         Viral DNA replication, but not viral late gene expression, is required for the regulation of
133 ot require MCMV immediate early 1, pM27, and late gene expression, it was restricted to MCMV-infected
134 -early gene expression, viral DNA synthesis, late gene expression, or packaging of viral DNA into nuc
135 ecific double-stranded RNAs inhibited AcMNPV late gene expression, reduced yields of budded virus by
136 iquitin-activating enzyme E1, also prevented late gene expression, supporting the role of the ubiquit
137 mbled ICP27 in its capacity to enhance HSV-1 late gene expression, suppress the splicing of a viral i
138 hat pM92 is an additional viral regulator of late gene expression, that these regulators (represented
139    Therefore, while SM is essential for most late gene expression, the proximate block to virion prod
140  phosphonoacetic acid, an inhibitor of viral late gene expression, thus suggesting that accumulation
141                           Suppression of the late gene expression, usually by integration of the vira
142 uring infection, including the regulation of late gene expression, viral DNA packaging, and infectiou
143 e if this event participates in the onset of late gene expression, we purified SpoIVB, SpoIIQ, and Sp
144 tiation-dependent human papillomavirus (HPV) late gene expression, while the liver-enriched inhibitor
145 hat blocked postreplicative intermediate and late gene expression.
146 n the loss of viral genome amplification and late gene expression.
147 ong with decreased viral DNA replication and late gene expression.
148 ation block occurs prior to intermediate and late gene expression.
149 d account for the effect on intermediate and late gene expression.
150  effects on Pol II from its effects on viral late gene expression.
151 regulatory element (NRE) that inhibits viral late gene expression.
152 s was generated and shown to be defective in late gene expression.
153 e expression leads to a global deficiency of late gene expression.
154  little is known regarding the regulation of late gene expression.
155 ding support for sigma(28) as a regulator of late gene expression.
156 in promoting viral DNA replication and viral late gene expression.
157 ffected, demonstrating its essential role in late gene expression.
158 lasm, respectively, throughout the period of late gene expression.
159 d titratable manner, resulting in a delay in late gene expression.
160 ression assays as a gene important for viral late gene expression.
161 gives rise to a specific inhibition of HSV-1 late gene expression.
162 sults suggested that hnRNP C1 controls HPV16 late gene expression.
163 c elements, and BET inhibitors prevent viral late gene expression.
164 se element (RRE), thereby facilitating viral late gene expression.
165 ms linked to either viral DNA replication or late gene expression.
166 f KSHV episomes and a molecular mechanism of late gene expression.
167 egalovirus (CMV) gene, UL79, is required for late gene expression.
168 ized or normal cells led to severely reduced late gene expression.
169 ting efficient E4 mutant DNA replication and late gene expression.
170 tion factors activated viral replication and late gene expression.
171 se of infection by regulating both early and late gene expression.
172 c), and HuR that are known to regulate HPV16 late gene expression; or were shown by a gene expression
173 e essential for regulation of lambdoid phage late gene expression; potentially, sigma70 acts at other
174 es of HCF-1 were also required for efficient late-gene expression and occlusion body formation in TN3
175 d for lytic competence in the context of the late-gene expression system of an induced lambda lysogen
176                    Viral DNA replication and late-gene expression, however, are not required.
177 or early-gene expression but dispensable for late-gene expression.
178 shows that the anti-sigma factor controlling late-gene flagellar synthesis is secreted less by flagel
179 elected fragment came from the promoter of a late gene (gB) and contained at least two direct RTA bin
180 gene expression switches from early genes to late genes in a highly regulated manner.
181 lso facilitates the expression of adenovirus late genes in a rodent cell background while having litt
182 ressed by a sigma(28) promoter that controls late genes in the flagellar regulon.
183           The expression of intermediate and late genes, in particular, was visualized with unprecede
184 coded factor essential for the expression of late genes independently of viral DNA synthesis.
185             Notably, ORF19 behaves as a true late gene, indicating that RTA regulates all three phase
186                      Chromatin remodeling in late genes is characterized by a late and marked increas
187                  Transcription of middle and late genes is dependent on protein synthesis and mediate
188 ivated transcription of the bacteriophage T4 late genes is generated by a mechanism that stands apart
189                 Transcription of herpesviral late genes is stimulated after the onset of viral DNA re
190 t expression of replication-dependent gamma2 late genes is, at least in part, regulated by CDK9 depen
191  are derived from the UL138 locus with early-late gene kinetics during productive infection.
192 ription activator (RTA) protein, accelerated late gene kinetics, and production of virus with decreas
193 ed that the cmvIL-10 gene was expressed with late gene kinetics.
194 hese conditions, the regulatory sequences of late gene loci were not in close proximity, and these ge
195 transition from MyoD to myogenin occurred at late gene loci, concomitant with loss of HDAC2, the appe
196 odeling enzyme interaction and remodeling at late-gene loci.
197 ative sigma factor, drives transcription of "late" genes, many of which are essential for transformat
198      The differentiation of intermediate and late genes may enhance understanding of poxvirus replica
199 n regulates the accumulation of selective Ad late gene mRNAs and is involved in the proper transition
200 lso promotes the nuclear export of the viral late gene mRNAs by acting as an adaptor between the vira
201                                     At these late genes, Myog does not bind efficiently without Myod;
202 cytoplasmic (NFATc) pathway and promotion of late-gene occupancy by NFATc4, and these mechanisms inhi
203                                          The late genes of SV40 are not expressed at significant leve
204  target the noncoding control region and the late gene open reading frame of the JCPyV genome.
205 NA polymerase from a regulatory pause of the late gene operon of bacteriophage lambda, and that this
206 uting for transcription of an extremely long late genes operon of Xp10.
207  promoters is essential to regulation of the late gene operons.
208                                       The Ad late gene product L4-22K has been associated with dispar
209 hereas the accumulation of an early-late and late gene product was significantly retarded.
210                RNA transcripts for VZV gE, a late gene product, were detected in T-cell populations t
211 ted for by both the retarded accumulation of late gene products and the drug-induced depletion of ER
212  had severe reduction in the accumulation of late gene products and was thus unable to produce infect
213 60 form of the protein, and therefore, these late gene products are not produced.
214                                              Late gene products terminate bacterial cell division and
215                  These RNAs, which behave as late gene products, are not predicted to be conserved in
216                                        Other late gene products, gB, gE, and Us9, accumulated to high
217 iral proteins recognized are predicted to be late gene products, in addition to the early intermediat
218 n the production of both immediate early and late gene products, indicating that a block to progeny v
219  the further accumulation of viral early and late gene products, the severity of which is dependent o
220 B cells were mainly intermediate rather than late gene products.
221 show that the MCMV miRNAs are both early and late gene products.
222 ntributed to optimal expression of early and late gene products.
223 V-1 IE gene promoters (ICP0 and ICP27) and a late gene promoter (gC).
224  BALF5p, and highlight the complexity of EBV late gene promoter activation by Rta.
225 rminators that interact both with DNA in the late gene promoter segment and with RNA polymerase subun
226 te bacteriophage under the regulation of the late gene promoter.
227 eporter plasmid to support activation of the late gene promoter.
228 a specific site just downstream of the phage late-gene promoter.
229 d for the subsequent recruitment of FoxM1 to late gene promoters during G2.
230 tes for Sp1, upstream of the TATA box, while late gene promoters generally lack such sites.
231 (EGFP) from immediate early (IE), early, and late gene promoters indicated that the block to producti
232 imal pause that occurs at all lambdoid phage late gene promoters is essential to regulation of the la
233 hed and used to assess the activity of viral late gene promoters upon infection with MHV-68.
234  DNA sequence required for the activation of late gene promoters was mapped to a core element contain
235                               Rta binding to late gene promoters was not seen at early time points bu
236 t did cause an increase at delayed-early and late gene promoters.
237  the transcription initiation complex at the late gene promoters.
238 re required for MHV-68 to activate the viral late gene promoters.
239 nduces pausing at a site near lambdoid phage late-gene promoters.
240 nd proceed in antisense orientation into the late gene region, leading to the formation of highly uns
241  solid foundation for mechanistic studies of late gene regulation.
242 ferases could bind to and modify histones at late-gene regulatory sequences.
243            Transcription of bacteriophage T4 late genes requires concomitant DNA replication.
244 man orthologous promoters for both Early and Late genes revealed that 241 gene promoters were predict
245 artially suppressed and the adenovirus major late gene's classical TATA box-dependent promoter is tot
246 nscripts from selected early, late, and very late genes showed that late and very late transcription
247                                              Late gene suppression is achieved through the production
248  enhances Rta protein function, but inhibits late gene synthesis and virion production, during KSHV l
249 ion elongation factor 1alpha (Ap-eEF1A) as a late gene that might serve this coupling function in sen
250                   We hypothesized that these late genes that are dispensable for competence are benef
251 o represses promoters for a second subset of late genes that are transcribed by an alternative polyme
252 with the apparent lack of codons in the same late genes that correspond to tRNAs that the genomes of
253 or transcription activation of several viral late genes that depend on lytic replication and therefor
254  Brg1 are critical for the expression of the late genes that induce terminal muscle differentiation.
255 rst time, in embryonic tissue, that myogenic late genes that specify the skeletal muscle phenotype ar
256  studies identified early, intermediate, and late genes that were commonly up-regulated by all three
257 d 35 candidate early genes and 127 candidate late genes that were up-regulated at 5 and 15 min, respe
258 irectly in transcription of bacteriophage T4 late genes: the sigma-family protein gp55 provides promo
259  EBV latency gene loci showed that they are "late" genes, they are nuclear, and they tend to localize
260 a VACV mutant that conditionally transcribes late genes to sequence the two classes of mRNAs.
261                We have previously shown that late genes transcribed by the major chlamydial RNA polym
262 s viral trans factors crucial for activating late gene transcription following viral DNA replication
263 discovery of the viral mutants that uncouple late gene transcription from DNA replication lays an imp
264 , given that these mutations do not increase late gene transcription in the absence of genome replica
265 eletion of lef-6 affected DNA replication or late gene transcription in the context of an infection.
266 y, it was thought that only intermediate and late gene transcription produced double-stranded (ds) RN
267 f the anti-sigma factor FlgM and concomitant late gene transcription promoted by sigma28.
268 cells, and viral DNA synthesis and early and late gene transcription were inhibited.
269 ssential for either viral DNA replication or late gene transcription, but the absence of lef-6 result
270   ICP4 is required for all delayed-early and late gene transcription, ICP0 stimulates transcription o
271  abrogating postreplicative intermediate and late gene transcription.
272 A synthesis and more pronouncedly inhibiting late gene transcription.
273 nuclei as sites of viral DNA replication and late gene transcription.
274  holoenzyme reflects its role in stimulating late gene transcription.
275 eraction in regulation of terminase or other late gene transcription.
276 xpression of gC, and that the high levels of late-gene transcription may be largely due to the induct
277 Cs), domains in which viral DNA replication, late-gene transcription, and encapsidation take place, i
278  for TBP in vaccinia virus intermediate- and late-gene transcription.
279 f the gp45 sliding clamp in activation of T4 late-gene transcription.
280                          The host-encoded P1 late-gene transcriptional activator, SspA, failed to sho
281 ing factor which activates splicing of viral late gene transcripts that contain weak 3' splice sites.
282  DNA replication but failed to express viral late gene transcripts, leading to nonproductive infectio
283                  A ribozyme specific for the late gene U(L)20 was packaged in an adenovirus vector (A
284 r required for the expression of the phage's late genes under the control of promoter P(R').
285  not affected; however, the transcription of late genes was abolished.
286 onged and the expression of intermediate and late genes was almost undetectable.
287             However, the transcription of P1 late genes was deficient in an sspA mutant in vivo.
288 S showed that transcription of late and very late genes was lower at later times posttransfection rel
289 eason for the requirement for Carm1/Prmt4 at late genes was to facilitate SWI/SNF chromatin-remodelin
290                                              Late genes were dependent on ComX for CSP-induced expres
291                              Among these, 14 late genes were important for fitness in mice.
292 g sites, and that of these, 51 Early and 145 Late genes were previously not known to be NFkappaB targ
293                                        These late genes were systematically deleted, and the resultin
294                                    One HSV-1 late gene which is highly dependent on ICP27 during infe
295 ulated ICP4 gene and the glycoprotein C (gC) late gene, which was not regulated.
296 ivated transcription of the bacteriophage T4 late genes, which is coupled to concurrent DNA replicati
297                                              Late genes, which primarily encode virion structural pro
298  EUO to selectively bind promoter regions of late genes, which would prevent their transcription by R
299 tor of CDK9, suppresses expression of gamma2 late genes with an IC50 of 5 mum, which is at least 10 t
300                       Us5 was regulated as a late gene, with partial dependency on DNA replication fo

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