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一种新型的不依赖YY1的沉默子可抑制人乳头瘤病毒16型增强子的活性。

A novel YY1-independent silencer represses the activity of the human papillomavirus type 16 enhancer.

作者信息

O'Connor M J, Stünkel W, Zimmermann H, Koh C H, Bernard H U

机构信息

Institute of Molecular and Cell Biology, Singapore 117 609, Singapore.

出版信息

J Virol. 1998 Dec;72(12):10083-92. doi: 10.1128/JVI.72.12.10083-10092.1998.

Abstract

Regulation of the human papillomavirus type 16 (HPV-16) E6 promoter is a complex process in which transcriptional repression as well as activation plays an important role. Here, we identify a negative regulatory element that in the context of a continuous long control region fragment overcomes the activation of the HPV-16 enhancer. This silencing element, which we have termed a PSM (papillomavirus silencing motif), consists of two copies of the sequence 5'-TAYAATAAT-3' that overlap the origin of replication. Each copy of this 9-bp sequence binds the same unknown cellular factor, which we refer to as PSM-BP (PSM binding protein). Both copies of the binding sequence are required for transcriptional repression, and we provide evidence that suggests that this particular organization results in the stabilization of a PSM-BP dimer. The silencing motif, while functioning in either orientation, showed a positional requirement between the enhancer and the promoter. Experiments with both a heterologous enhancer and a promoter also demonstrated a general ability of this element to function as a transcriptional silencer in non-HPV systems. Our findings provide an important addition to our understanding of HPV-16 gene regulation and an interesting model for the study of transcriptional repression.

摘要

人乳头瘤病毒16型(HPV - 16)E6启动子的调控是一个复杂的过程,其中转录抑制和激活都起着重要作用。在此,我们鉴定出一个负调控元件,在连续的长控制区片段的背景下,它能克服HPV - 16增强子的激活作用。这个沉默元件,我们称之为PSM(乳头瘤病毒沉默基序),由两个5'-TAYAATAAT-3'序列拷贝组成,它们与复制起点重叠。这个9碱基序列的每个拷贝都结合相同的未知细胞因子,我们将其称为PSM - BP(PSM结合蛋白)。结合序列的两个拷贝对于转录抑制都是必需的,并且我们提供的证据表明,这种特殊的结构导致了PSM - BP二聚体的稳定。沉默基序虽然在两个方向上都能发挥作用,但在增强子和启动子之间显示出位置需求。使用异源增强子和启动子进行的实验也证明了该元件在非HPV系统中作为转录沉默子的一般能力。我们的发现为我们对HPV - 16基因调控的理解增添了重要内容,并为转录抑制研究提供了一个有趣的模型。

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