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Cloning and characterization of the beta subunit of human proximal sequence element-binding transcription factor and its involvement in transcription of small nuclear RNA genes by RNA polymerases II and III.

机译:人类近端序列元素结合转录因子β亚基的克隆鉴定及其在RNA聚合酶II和III参与小核RNA基因转录中的作用。

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摘要

The proximal sequence element (PSE)-binding transcription factor (PTF), which binds the PSE of both RNA polymerase II- and RNA polymerase III-transcribed mammalian small nuclear RNA (snRNA) genes, is essential for their transcription. We previously reported the purification of human PTF, a complex of four subunits, and the molecular cloning and characterization of PTF gamma and delta subunits. Here we describe the isolation and expression of a cDNA encoding PTF beta, as well as functional studies using anti-PTF beta antibodies. Native PTF beta, in either protein fractions or a PTF-Oct-1-DNA complex, can be recognized by polyclonal antibodies raised against recombinant PTF beta. Immunodepletion studies show that PTF beta is required for transcription of both classes of snRNA genes in vitro. In addition, immunoprecipitation analyses demonstrate that substantial and similar molar amounts of TATA-binding protein (TBP) and TFIIIB90 can weakly associate with PTF at low salt conditions, but this association is dramatically reduced at high salt concentrations. Along with our previous demonstration of both physical interactions between PTF gamma/PTF delta and TBP and the involvement of TFIIIB90 in the transcription of class III snRNA genes, these results are consistent with the notion that a TBP-containing complex related to TFIIIB is required for the transcription of class III snRNA genes, and acts through weak interaction with the four-subunit PTF.
机译:结合RNA聚合酶II和RNA聚合酶III转录的哺乳动物小核RNA(snRNA)基因的PSE的近端序列元件(PSE)结合转录因子(PTF)对于它们的转录至关重要。我们以前曾报道过人类PTF的纯化,这是四个亚基的复合物,以及PTFγ和δ亚基的分子克隆和表征。在这里,我们描述了编码PTF beta的cDNA的分离和表达,以及使用抗PTF beta抗体进行的功能研究。蛋白质级分或PTF-Oct-1-DNA复合物中的天然PTF beta均可被针对重组PTF beta的多克隆抗体识别。免疫耗竭研究表明,PTF beta是体外两类snRNA基因转录所必需的。此外,免疫沉淀分析表明,在低盐条件下,大量和相似摩尔量的TATA结合蛋白(TBP)和TFIIIB90可以与PTF弱结合,但是在高盐浓度下这种结合会大大降低。以及我们先前对PTFγ/ PTFδ与TBP之间的物理相互作用以及TFIIIB90参与III类snRNA基因转录的演示,这些结果与以下观点相一致:需要与TFIIIB相关的含TBP的复合物III类snRNA基因的转录,并通过与四亚基PTF的弱相互作用而起作用。

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