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蛋白激酶C抑制va基因转录起始复合物的形成。

Protein kinase C inhibits formation of va gene transcription initiation complex.

作者信息

Shannon Timothy E, James Calvin B L

机构信息

Department of Biology, Francis Marion University, Florence, South Carolina 29501, USA.

出版信息

In Vitro Cell Dev Biol Anim. 2003 Nov-Dec;39(10):460-7. doi: 10.1290/1543-706X(2003)039<0460:PKCIFO>2.0.CO;2.

Abstract

Activation of protein kinase c (PKC) reduces transcription from the polymerase III (pol III)-transcribed adenovirus VA gene. Data presented here support a role for PKC in disrupting the formation of transcription-competent initiation complexes. The study used the plasmids VA and VA/EL (VA gene with a linker to distinguish its transcript from that of the VA gene) in in vitro assays to show that preincubation of either template for a minimum of 10 min before the activation of PKC did not result in PKC-induced repression of transcription. In contrast, under the same conditions, efficient transcription occurs from a preincubated template but not from a second template if it is added during or after the activation of PKC. Simultaneous preincubation of both VA and VA/EL resulted in efficient transcription from both templates. Rescue experiments confirm that PKC modifies a target within transcription factor B (TFIIIB) because phosphocellulose fractionation of whole-cell extracts that yield partially purified pol III transcription factor, TFIIIB, successfully rescues VA transcription from PKC-induced repression. Subsequent studies confirmed that the TATA box-binding protein (TBP), a constituent of TFIIIB, substituted for the crude preparation of TFIIIB. These data support a conclusion that activation of PKC triggers a cascade that likely involves the sequestration or degradation of TBP, resulting in the disruption of the steps that leads to successful pol III transcription initiation.

摘要

蛋白激酶C(PKC)的激活会减少由聚合酶III(pol III)转录的腺病毒VA基因的转录。本文提供的数据支持PKC在破坏具有转录活性的起始复合物形成过程中所起的作用。该研究在体外试验中使用了质粒VA和VA/EL(带有连接子的VA基因,以区分其转录本与VA基因的转录本),结果表明,在激活PKC之前,将任何一种模板预孵育至少10分钟,都不会导致PKC诱导的转录抑制。相比之下,在相同条件下,如果在激活PKC期间或之后添加第二个模板,则预孵育的模板会发生高效转录,而第二个模板则不会。同时对VA和VA/EL进行预孵育会导致两种模板都发生高效转录。拯救实验证实,PKC修饰了转录因子B(TFIIIB)中的一个靶点,因为对全细胞提取物进行磷酸纤维素分级分离可得到部分纯化的pol III转录因子TFIIIB,该分级分离成功地拯救了VA转录,使其免受PKC诱导的抑制。随后的研究证实,TFIIIB的一个组成部分TATA盒结合蛋白(TBP)可替代TFIIIB的粗制品。这些数据支持了这样一个结论,即PKC的激活引发了一系列反应,可能涉及TBP的隔离或降解,从而导致导致pol III转录起始成功的步骤被破坏。

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