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所有六种人类腺病毒亚组的E1A蛋白均靶向p300/CBP乙酰转移酶和SAGA转录调节复合物。

The E1A proteins of all six human adenovirus subgroups target the p300/CBP acetyltransferases and the SAGA transcriptional regulatory complex.

作者信息

Shuen Michael, Avvakumov Nikita, Torchia Joe, Mymryk Joe S

机构信息

Department of Microbiology and Immunology, The University of Western Ontario, London, Regional Cancer Centre, 790 Commissioners Road East, N6A 4L6, London, Ontario, Canada.

出版信息

Virology. 2003 Nov 10;316(1):75-83. doi: 10.1016/j.virol.2003.08.005.

Abstract

The N-terminal/conserved region 1 (CR1) portion of the human adenovirus (Ad) 5 E1A protein was previously shown to inhibit growth in the simple eukaryote Saccharomyces cerevisiae. We now demonstrate that the corresponding regions of the E1A proteins of Ad3,-4,-9,-12, and -40, which represent the remaining five Ad subgroups, also inhibit yeast growth. These results suggest that the E1A proteins of all six human Ad subgroups share a common cellular target(s) conserved in yeast. Growth inhibition induced by either full-length or the N-terminal/CR1 portion of Ad5 E1A was relieved by coexpression of the E1A binding portions of the mammalian p300, CBP, and pCAF acetyltransferases. Similarly, growth inhibition by the N-terminal/CR1 portions of the other Ad E1A proteins was suppressed by expression of the same regions of CBP or pCAF known to bind Ad5 E1A. The physical interaction of each of the different Ad E1A proteins with CBP, p300, and pCAF was confirmed in vitro. Furthermore, deletion of the gene encoding yGcn5, the yeast homolog of pCAF and a subunit of the SAGA transcriptional regulatory complex, restored growth in yeast expressing each of the different Ad E1A proteins. This indicates that the SAGA complex is a conserved target of all Ad E1A proteins. Our results demonstrate for the first time that the p300, CBP, and pCAF acetyltransferases are common targets for the E1A proteins of all six human Ad subgroups, highlighting the importance of these interactions for E1A function.

摘要

人腺病毒(Ad)5 E1A蛋白的N端/保守区域1(CR1)部分先前已被证明可抑制简单真核生物酿酒酵母的生长。我们现在证明,代表其余五个Ad亚组的Ad3、-4、-9、-12和-40的E1A蛋白的相应区域也抑制酵母生长。这些结果表明,所有六个人Ad亚组的E1A蛋白共享一个在酵母中保守的共同细胞靶点。Ad5 E1A全长或N端/CR1部分诱导的生长抑制可通过共表达哺乳动物p300、CBP和pCAF乙酰转移酶的E1A结合部分而解除。同样,其他Ad E1A蛋白的N端/CR1部分引起的生长抑制可通过表达已知与Ad5 E1A结合的CBP或pCAF的相同区域而被抑制。在体外证实了每种不同的Ad E1A蛋白与CBP、p300和pCAF的物理相互作用。此外,编码yGcn5(pCAF的酵母同源物和SAGA转录调节复合物的一个亚基)的基因缺失恢复了表达每种不同Ad E1A蛋白的酵母中的生长。这表明SAGA复合物是所有Ad E1A蛋白的保守靶点。我们的结果首次证明,p300、CBP和pCAF乙酰转移酶是所有六个人Ad亚组E1A蛋白的共同靶点,突出了这些相互作用对E1A功能的重要性。

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