首页> 外文期刊>Nucleic Acids Research >The activity binding to the termination region of several pol III genes represents a separate entity and is distinct from a novel component enhancing U6 snRNA transcription.
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The activity binding to the termination region of several pol III genes represents a separate entity and is distinct from a novel component enhancing U6 snRNA transcription.

机译:绑定到几个pol III基因的终止区的活动代表一个单独的实体,并且不同于增强U6 snRNA转录的新型成分。

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摘要

Human TFIIIC1, a basal transcription factor essentially required for expression of all pol III genes, exerts its function without primarily binding to DNA. We report here the purification of a termination site binding activity (TBA) which was initially described to be contained in fractions designated as TFIIIC0. TBA specifically and strongly binds to the termination region of pol III genes with internal promoters and can be completely separated from TFIIIC1and a TFIIIC1related activity (TFIIIC1-like), proving that DNA-binding of TBA is independent of these latter activites. Although TBA is not essentially required for, it strongly stimulates pol III transcription from intragenic promoters. This stimulation strictly depends on the presence of TFIIIC1and is not observed in conjunction with TFIIIC1-like. We further present the identification of a novel activity, TFIIIU, which is also contained in crude fractions of TFIIIC0. TFIIIU can be separated from TBA by further purification and is essentially involved in transcription of the mammalian U6 gene. TFIIIU cannot be substituted for by any of the established U6 transcription factors and thus represents a novel U6 transcription factor.
机译:人TFIIIC1是表达所有pol III基因必不可少的基础转录因子,它在不与DNA结合的情况下发挥其功能。我们在这里报告了终止位点结合活性(TBA)的纯化,该活性最初被描述为包含在指定为TFIIIC0的馏分中。 TBA通过内部启动子与pol III基因的末端区域特异性结合并牢固结合,并且可以与TFIIIC1和与TFIIIC1相关的活性完全分离(类似于TFIIIC1),证明TBA的DNA结合独立于这些后者的活性。尽管TBA并不是必需的,但它强烈刺激了基因内启动子的pol III转录。这种刺激严格取决于TFIIIC1的存在,与TFIIIC1样结合不能观察到。我们进一步提出了一种新活性,TFIIIU的鉴定,它也包含在TFIIIC0的粗馏分中。 TFIIIU可以通过进一步纯化与TBA分离,并且基本上参与哺乳动物U6基因的转录。 TFIIIU不能被任何已建立的U6转录因子取代,因此代表了一种新型的U6转录因子。

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