コーパス検索結果 (1語後でソート)
通し番号をクリックするとPubMedの該当ページを表示します
1 3, a 3'-end RNA-processing and transcription termination factor.
2 form of Sup35p, a subunit of the translation termination factor.
3 mary site of action is the rho transcription termination factor.
4 of the Saccharomyces cerevisiae translation termination factor.
5 cled in the presence of the La transcription termination factor.
6 he prion form of the yeast Sup35 translation termination factor.
7 ltered conformation of the Sup35 translation termination factor.
8 olymerase, and the rho gene, which encodes a termination factor.
9 in the prion domain of Sup35, a translation-termination factor.
10 mpeting for RNA binding with polyadenylation/termination factors.
11 on factors or with translation elongation or termination factors.
12 n exchange of elongation and polyadenylation/termination factors.
13 ue in the GGQ motif of ribosomal translation termination factors.
14 ng factors, 3'-end-processing complexes, and termination factors.
15 n Tyr1 and both transcription initiation and termination factors.
16 ides underlying the binding of transcription termination factors.
17 yces cerevisiae and that Gle1 interacts with termination factors.
18 elements and mRNA elongation, processing and termination factors.
20 ochondria is the mitochondrial transcription termination factor 1 (MTERF1, also denoted mTERF), which
21 -29% identical to mouse TTF-1 (transcription termination factor-1) and Saccharomyces cerevisiae REB1
22 hibit termination of Pol II by transcription termination factor 2 (TTF2) as well as block elongation
24 mined the structure of the Rho transcription termination factor, a hexameric RNA/DNA helicase, with s
26 nitiation factor activity of La augments its termination factor activity to produce a novel mechanism
29 at a stalled RNAP in the absence of vaccinia termination factor and U(5)NU when transcription elongat
30 codon nucleotide context, the activities of termination factors and the abundance of suppressor tRNA
31 cessing or translation, and (iii) recruiting termination factors and thereby silencing laterally tran
32 NELF interacts with Pcf11, a transcription termination factor, and diminishing Pcf11 in primary CD4
33 TP-dependent RNA polymerase II transcription termination factor, and discovered that it was identical
34 up35 protein is a subunit of the translation termination factor, and its conversion to the [PSI (+)]
38 Using the Escherichia coli Rho transcription termination factor as a model system, we have used solut
40 otein, normally a subunit of the translation termination factor, but impaired in this vital function
41 rpedo model in which Rat1 is not a dedicated termination factor, but is an integrated component of th
42 rmination activity (Eta), the first archaeal termination factor capable of disrupting the transcripti
44 rase requires a termination factor (vaccinia termination factor/capping enzyme) and is coupled to the
45 ies are shared by the homologous translation termination factor complex eRF1:eRF3, suggesting a commo
46 We demonstrate that negative and positive termination factors control the efficiency of terminatio
47 bacterial morphogenesis, but polymerization termination factors controlling this process have yet to
49 interaction of transcription initiation and termination factors during gene looping in budding yeast
51 have shown that domain 1 of the translation termination factor eRF1 mediates stop codon recognition.
54 s have proposed a direct role for eukaryotic termination factors eRF1 and eRF3 (and the related facto
55 34p and Hbs1p are similar to the translation termination factors eRF1 and eRF3, indicating that these
58 and self-propagating form of the translation termination factor eRF3 (Sup35), can be cured of its inf
60 prion state of the S. cerevisiae translation termination factor eRF3, Rps23p hydroxylation can either
64 (Leu(UUR)) gene that binds the transcription termination factor failed to reveal any difference in oc
68 inase 1alpha (CK1alpha), and the translation termination factor GSPT1] whose ubiquitylation is induce
69 tmRNA(+) and DeltatmRNA cells, whereas other termination factors had little or no effect on recycling
70 racterized in each domain, but transcription termination factors have been identified only in bacteri
73 binder of ARL 2, Paxillin, and transcription termination factor I have not been previously reported t
76 present the first example of a transcription termination factor in Saccharomyces cerevisiae that affe
77 results suggest that the mechanisms used by termination factors in archaea, eukarya, and bacteria to
78 human TTF2, an RNA polymerase (Pol) I and II termination factor, in mitotic repression of transcripti
80 To our knowledge, intended aggregation of a termination factor is a way to overcome the bacterial tr
82 consistent with a model in which a required termination factor is converted from an inactive to an a
84 se that a critical function of transcription termination factors is to prevent TEC from blocking DNA
87 is devoid of the mitochondrial transcription termination factor MOC1 and aberrantly expresses the mit
90 of the so-called mitochondrial transcription termination factor (mTERF) family are found in metazoans
91 a member of the mitochondrial transcription termination factor (MTERF) family of proteins, MTERF4, r
94 -4 1), encodes a mitochondrial transcription termination factor (mTERF)-related protein, one of 35 Ar
95 tch of the human mitochondrial transcription termination factor MTERF1, which has a modular, superhel
97 -binding dynamics of the yeast transcription termination factor Nab3 in response to glucose starvatio
98 w that it is the translation initiation (not termination) factor, namely eIF3, which critically promo
99 ignal (UUUUUNU) in the nascent RNA, vaccinia termination factor, nucleoside triphosphate phosphohydro
102 Our data reveal that WNK1 phosphorylates the termination factor PCF11 on its RNA polymerase II (Pol I
104 a56 mutant allele by impeding recruitment of termination factors Pcf11p and Rna15p (subunits of cleav
107 a protein related to the yeast transcription termination factor Rai1, is essential for piRNA producti
109 ity control (post PT QC) mechanism where the termination factors recognize mismatched (i.e. error-con
111 homohexameric Escherichia coli transcription termination factor Rho along RNA, rates for association
112 hat a major function of the Escherichia coli termination factor Rho and its cofactor, NusG, is suppre
113 The expression and activity of transcription termination factor Rho and the requirement for transcrip
116 mutations in Escherichia coli transcription termination factor Rho enhance in vitro transcription te
124 vities of the Escherichia coli transcription termination factor rho have been investigated using natu
125 ons M219K, S266A, and G337S in transcription termination factor Rho have been shown to confer resista
126 k, we describe the role of the transcription termination factor Rho in prophage maintenance through c
133 pe and mutant Escherichia coli transcription termination factor Rho provides a model for the enzyme-R
137 the essential Escherichia coli transcription termination factor rho utilizes Mg(2+) and ATP as a subs
138 HEH domains from the bacterial transcription termination factor Rho, bacterial and eukaryotic lysyl-t
139 roles in the Escherichia coli transcription termination factor Rho, E211, R366, R212, and D265, and
140 Mutants in Escherichia coli transcription termination factor Rho, termed rho(nusD), were previousl
141 mutations in rho, the gene for transcription termination factor Rho, that block the growth of phages
142 he transcription elongation Nus proteins and termination factor Rho, which are involved in rRNA antit
153 les: initiation factors, elongation factors, termination factors, ribosomes, mRNA, amino-acylsyntheta
155 Ser5-P while that bound to the transcription termination factor Rtt103 had higher levels of Ser2-P.
160 roteins are, respectively, the translational termination factor Sup35 and the yet poorly characterize
161 Pin3) promotes conversion of the translation termination factor Sup35 into its prion form, [PSI(+)].
162 rom the prion domain NM of yeast translation termination factor Sup35 persistently propagate and inva
163 rains, weak and strong, of yeast translation termination factor Sup35 with respect to angular orienta
171 as a mimic of a normal 3'-UTR, recruits the termination factor Sup35p (eRF3) and stabilizes nonsense
172 The prion [PSI+] forms when the translation termination factor Sup35p adopts a self-propagating conf
173 hange in the conformation of the translation termination factor Sup35p is the basis for the prion [PS
174 tional, ordered aggregate of the translation termination factor Sup35p that influences new Sup35 prot
175 conformation and function of the translation termination factor Sup35p, and is transmitted from mothe
177 self-propagating amyloid of the translation termination factor, Sup35p, of Saccharomyces cerevisiae.
179 La RNA-binding protein is a transcription termination factor that facilitates recycling of templat
180 results, we suggest Grs1p is a transcription termination factor that may interact with the 3'-end of
181 tify many core spliceosome and transcription termination factors that control the RNA outputs of repo
184 differences in the abundance or activity of termination factors to modulate the balance of terminati
185 case DDX5 and RNA polymerase I transcription termination factor (TTF-I), it has been speculated that
186 pping proteins Edc3, Dcp1a, and Dcp2 and the termination factor TTF2 coimmunoprecipitate with Xrn2, t
187 gnal to the elongating polymerase requires a termination factor (vaccinia termination factor/capping
189 nscription termination requires the vaccinia termination factor (VTF), NPH I, a single stranded DNA-d
190 ing polymerase requires a trans-acting viral termination factor (VTF/capping enzyme), and is coupled
194 sult of aggregation of the Sup35 translation termination factor, which increases stop codon read-thro
195 e yeast prion protein Sup35 is a translation termination factor, whose activity is modulated by seque
196 of paused pol II, knockdown of decapping or termination factors Xrn2 and TTF2 shifted polymerase awa
WebLSDに未収録の専門用語(用法)は "新規対訳" から投稿できます。