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通过位点特异性光交联确定的Tat-TAR复合物中的RNA构象。

RNA conformation in the Tat-TAR complex determined by site-specific photo-cross-linking.

作者信息

Wang Z, Rana T M

机构信息

Department of Pharmacology, Robert Wood Johnson Medical School, University of Medicine and Dentistry of New Jersey, Piscataway, USA.

出版信息

Biochemistry. 1996 May 21;35(20):6491-9. doi: 10.1021/bi960037p.

Abstract

Transcriptional regulation in human immunodeficiency virus type 1 (HIV-1) requires specific interactions of Tat protein with the transactivation responsive region (TAR) RNA, a 59-base stem-loop structure located at the 5'-end of all mRNAs. We have used a site-specific cross-linking method based on 4-thiouracil (4-thioU) photochemistry to determine the conformation of TAR RNA and its interaction with Tat protein under physiological conditions. Three different TAR RNA constructs with a single 4-thioU residue at position 23, 38, or 40 were synthesized. Upon UV irradiation, 4-thioU at all three positions formed interstrand covalent cross-links in TAR RNA. Determination of cross-link sites by RNA sequencing revealed that 4-thioU at position 23 makes a direct contact with U40, while a 4-thoU at position 40 cross-links to C24 and C25, and at position 38, 4-thioU contacts G26 in TAR RNA. The addition of arginine did not alter the yield or the site of RNA-RNA cross-link. However, in the presence of Tat(38-72), UV irradiation of RNA modified with 4-thioU at position 23 or 38 resulted in RNA- protein cross-links, but no RNA-RNA cross-links were observed. 4-thioU at position 40 formed both RNA-RNA and RNA-protein cross-links in the presence of Tat(38-72). An intriguing finding of our studies was that a cross-linked TAR RNA with 4-thioU at position 40 retained specific Tat-binding activity. Our results establish four important conclusions about Tat-TAR structure. (1) U23 of free TAR RNA is in close contact with U40. (2) U40 is in close proximity to C24 and C25 both in free TAR RNA and in a complex with Tat. (3) Tat protein directly contacts U23, U38, and U40 in the major groove of TAR RNA. (4) Tat protein can recognize a TAR RNA structure containing an interrupted bulge which is formed by a covalent link between U40 and two bulge residues, C24 and C25. These structural studies provide new insights into tertiary folding of TAR RNA and its interaction with Tat protein.

摘要

人类免疫缺陷病毒1型(HIV-1)中的转录调控需要Tat蛋白与反式激活应答区域(TAR)RNA进行特异性相互作用,TAR RNA是一种位于所有mRNA 5'端的59个碱基的茎环结构。我们使用了一种基于4-硫尿嘧啶(4-thioU)光化学的位点特异性交联方法,以确定TAR RNA在生理条件下的构象及其与Tat蛋白的相互作用。合成了三种不同的TAR RNA构建体,它们在第23、38或40位有一个单一的4-硫尿嘧啶残基。紫外线照射后,所有三个位置的4-硫尿嘧啶在TAR RNA中形成链间共价交联。通过RNA测序确定交联位点,结果显示第23位的4-硫尿嘧啶与U40直接接触,而第40位的4-硫尿嘧啶与C24和C25交联,在第38位,4-硫尿嘧啶与TAR RNA中的G26接触。精氨酸的添加并未改变RNA-RNA交联的产量或位点。然而,在存在Tat(38 - 72)的情况下,对在第23或38位用4-硫尿嘧啶修饰的RNA进行紫外线照射会导致RNA-蛋白交联,但未观察到RNA-RNA交联。在存在Tat(38 - 72)的情况下,第40位的4-硫尿嘧啶形成了RNA-RNA和RNA-蛋白交联。我们研究中一个有趣的发现是,在第40位带有4-硫尿嘧啶的交联TAR RNA保留了特异性Tat结合活性。我们的结果得出了关于Tat-TAR结构的四个重要结论。(1)游离TAR RNA的U23与U40紧密接触。(2)在游离TAR RNA以及与Tat形成的复合物中,U40都与C24和C25紧密相邻。(3)Tat蛋白在TAR RNA的大沟中直接接触U23、U38和U40。(4)Tat蛋白能够识别一种包含中断凸起的TAR RNA结构,该凸起由U40与两个凸起残基C24和C25之间的共价连接形成。这些结构研究为TAR RNA的三级折叠及其与Tat蛋白的相互作用提供了新的见解。

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