首页> 美国卫生研究院文献>Nucleic Acids Research >Initiation of transcription by RNA polymerase II in permeable SV40-infected or noninfected CVI cells; evidence for multiple promoters of SV40 late transcription.
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Initiation of transcription by RNA polymerase II in permeable SV40-infected or noninfected CVI cells; evidence for multiple promoters of SV40 late transcription.

机译:RNA聚合酶II在可感染SV40的可感染或未感染的CVI细胞中启动转录; SV40晚期转录的多个启动子的证据。

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摘要

CV1 cells were made permeable by treatment with lysolecithin and incubated in a transcription mixture containing ribonucleoside triphosphates including ATP or GTP 32P-labeled either in the alpha or beta position. 5'-terminal cap structures (7mGpgamma pbeta palpha X) on newly synthesized RNA were analyzed by digestion with nuclease P1 or with ribonuclease T2/bacterial alkaline phosphatase. Cap structures obtained after labeling with alpha-32P-GTP show that the 32P is found only adjacent to the 7mG residue (i.e., in the gamma position) and adjacent to the penultimate Gm or G nucleotide (i.e., in the alpha position). Analysis of RNA synthesized in the presence of beta-32P-ATP, however, shows GpppA cap structures which are labeled only in the beta position. In the presence of beta-32-p-GTP, only GpppG structures are labeled; these findings exclude the hypothesis that caps are synthesized from GTP and a monophosphate 5'-terminal RNA molecule. The results imply that the initial transcripts are used for cap formation, which indicates that the large majority (if not all) of capping sites correspond to initiation sites for transcription. In cells infected with wild-types SV40 the distribution of virus-specific caps is similar when labeled either with beta-32P-ATP or with alpha-32P-GTP or with 32p-phosphate. Thus, evidence is presented that heterogeneity of the cap structures in late SV40 is a consequence of independent initiation events and not of processing of a primary transcript followed by capping of the 5' ends generated.
机译:通过用溶血卵磷脂处理使CV1细胞具有渗透性,并在含有核糖核苷三磷酸的转录混合物中孵育,该核糖三磷酸包括在α或β位置标记的ATP或GTP 32P。通过用核酸酶P1或核糖核酸酶T2 /细菌碱性磷酸酶消化,分析了新合成的RNA上的5'-末端帽结构(7mGpgamma pbeta palpha X)。用α-32P-GTP标记后获得的帽结构表明仅发现32P与7mG残基相邻(即,在γ位)并且与倒数第二个Gm或G核苷酸(即在α位)相邻。然而,对在存在β-32P-ATP的情况下合成的RNA的分析显示,GpppA帽结构仅在β位置被标记。在存在beta-32-p-GTP的情况下,仅标记GpppG结构;这些发现排除了由GTP和5'末端单磷酸RNA分子合成帽的假设。结果暗示初始转录物用于帽形成,这表明绝大多数(如果不是全部的话)加帽位点对应于转录的起始位点。在用野生型SV40感染的细胞中,用β-32P-ATP或α-32P-GTP或32p-磷酸盐标记时,病毒特异性帽的分布相似。因此,有证据表明,SV40晚期的帽结构异质性是独立启动事件的结果,而不是初级转录本的加工,随后是所生成的5'末端的帽化的结果。

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