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人类嗜T淋巴细胞病毒I型(HTLV-I)Rex蛋白碱性结构域内的多个精氨酸残基对于特异性RNA结合和功能是必需的。

Multiple arginine residues within the basic domain of HTLV-I Rex are required for specific RNA binding and function.

作者信息

Hammes S R, Greene W C

机构信息

Howard Hughes Medical Institute, Department of Medicine, Duke University Medical Center, Durham, North Carolina 27710.

出版信息

Virology. 1993 Mar;193(1):41-9. doi: 10.1006/viro.1993.1101.

Abstract

The Rex protein of the type I human T-cell leukemia virus (HTLV-I) is essential for viral replication, acting post-transcriptionally to enhance the expression of unspliced and singly spliced viral mRNAs that encode the Gag, Pol, and Env virion proteins. Rex function involves its direct interaction with a complex stem-loop structure termed the Rex RNA response element (RexRE), which is located within the 3' retroviral long terminal repeat. Binding of Rex to the RexRE involves a positively charged arginine-rich domain located near the N-terminus which also functions as a nuclear localization signal. Strikingly, substitution of all seven of the arginine residues present within this domain with positively charged lysine residues exerted no adverse effect on the nuclear targeting of Rex. However, these lysine substitutions completely abrogated both Rex binding to the RexRE and Rex function. Reversion of multiple substituted lysines to arginines at specific locations within this domain was required to restore both RexRE binding and biological function to the Rex protein. Thus, while the presence of positive charge alone in this domain appears sufficient for nuclear localization of Rex, multiple arginine residues at specific sites are essential for the full expression of RNA binding and functional activity of this retroviral trans-regulatory protein.

摘要

I型人类T细胞白血病病毒(HTLV-I)的Rex蛋白对病毒复制至关重要,它在转录后发挥作用,增强未剪接和单剪接的病毒mRNA的表达,这些mRNA编码Gag、Pol和Env病毒体蛋白。Rex的功能涉及其与一种称为Rex RNA反应元件(RexRE)的复杂茎环结构的直接相互作用,该结构位于逆转录病毒3'长末端重复序列内。Rex与RexRE的结合涉及位于N端附近的一个带正电荷的富含精氨酸的结构域,该结构域也作为核定位信号发挥作用。引人注目的是,将该结构域内所有七个精氨酸残基替换为带正电荷的赖氨酸残基对Rex的核靶向没有产生不利影响。然而,这些赖氨酸替换完全消除了Rex与RexRE的结合以及Rex的功能。需要将该结构域内特定位置的多个取代赖氨酸恢复为精氨酸,才能恢复Rex与RexRE的结合以及Rex蛋白的生物学功能。因此,虽然该结构域中仅正电荷的存在似乎足以实现Rex的核定位,但特定位点的多个精氨酸残基对于这种逆转录病毒反式调节蛋白的RNA结合和功能活性的充分表达至关重要。

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