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异质性核糖核蛋白E1和E2在调节HIV-1基因表达方面具有不同作用。

hnRNP E1 and E2 have distinct roles in modulating HIV-1 gene expression.

作者信息

Woolaway Kathryn, Asai Kengo, Emili Andrew, Cochrane Alan

机构信息

Department of Molecular and Medical Genetics, University of Toronto Toronto, Ontario, Canada.

出版信息

Retrovirology. 2007 Apr 23;4:28. doi: 10.1186/1742-4690-4-28.

Abstract

Pre-mRNA processing, including 5' end capping, splicing, and 3' end cleavage/polyadenylation, are events coordinated by transcription that can influence the subsequent export and translation of mRNAs. Coordination of RNA processing is crucial in retroviruses such as HIV-1, where inefficient splicing and the export of intron-containing RNAs are required for expression of the full complement of viral proteins. RNA processing can be affected by both viral and cellular proteins, and in this study we demonstrate that a member of the hnRNP E family of proteins can modulate HIV-1 RNA metabolism and expression. We show that hnRNP E1/E2 are able to interact with the ESS3a element of the bipartite ESS in tat/rev exon 3 of HIV-1 and that modulation of hnRNP E1 expression alters HIV-1 structural protein synthesis. Overexpression of hnRNP E1 leads to a reduction in Rev, achieved in part through a decrease in rev mRNA levels. However, the reduction in Rev levels cannot fully account for the effect of hnRNP E1, suggesting that hmRNP E1 might also act to suppress viral RNA translation. Deletion mutagenesis determined that the C-terminal end of hnRNP E1 was required for the reduction in Rev expression and that replacing this portion of hnRNP E1 with that of hnRNP E2, despite the high degree of conservation, could not rescue the loss of function.

摘要

前体mRNA加工,包括5'端加帽、剪接和3'端切割/聚腺苷酸化,是由转录协调的事件,这些事件可影响随后mRNA的输出和翻译。RNA加工的协调在诸如HIV-1的逆转录病毒中至关重要,在HIV-1中,低效剪接和含内含子RNA的输出是病毒蛋白完整互补序列表达所必需的。RNA加工可受病毒和细胞蛋白的影响,在本研究中,我们证明了hnRNP E蛋白家族的一个成员可调节HIV-1 RNA代谢和表达。我们表明,hnRNP E1/E2能够与HIV-1 tat/rev外显子3中二分体ESS的ESS3a元件相互作用,并且hnRNP E1表达的调节会改变HIV-1结构蛋白的合成。hnRNP E1的过表达导致Rev减少,部分是通过rev mRNA水平的降低实现 的。然而,Rev水平的降低不能完全解释hnRNP E1的作用,这表明hmRNP E1也可能起到抑制病毒RNA翻译的作用。缺失诱变确定hnRNP E1的C末端是Rev表达减少所必需的,并且用hnRNP E2的该部分替换hnRNP E1的这部分,尽管具有高度保守性,但不能挽救功能丧失。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/42ec/1863430/c357ea513675/1742-4690-4-28-6.jpg

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