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源自Rev的短肽与RRE IIB RNA相互作用的立体特异性

Stereospecificity of short Rev-derived peptide interactions with RRE IIB RNA.

作者信息

Litovchick Alexander, Rando Robert R

机构信息

Department of Biological Chemistry and Molecular Pharmacology, Harvard Medical School, Boston, Massachusetts 02115, USA.

出版信息

RNA. 2003 Aug;9(8):937-48. doi: 10.1261/rna.2172103.

Abstract

The essential HIV-1 regulatory protein Rev binds to the Rev responsive element (RRE) of the HIV-1 mRNA. A short alpha-helical peptide derived from Rev (Rev 34-50) and a truncated form of the RRE sequence (RRE IIB) provide a useful in vitro system to study the interactions between Rev and RRE. The current studies focus on evaluating the specificity of the binding interactions between Rev 34-50 and RRE IIB. The binding of L- and D-Rev peptides to natural and enantiomeric RRE IIB RNA was studied by fluorescence spectroscopy. D-Rev and L-Rev peptides bind to RRE IIB with similar affinities. CD measurements are consistent with a nonhelical, probably beta-hairpin, conformation for D-Rev in the complex. The binding affinities of D/L Rev peptides to L-RRE IIB RNA are also similar to those with natural D-RRE IIB. Furthermore, the conformations of L- and D-peptides when bound to L-RRE are reciprocal to the conformations of these peptides in complex with D-RRE. RNA footprinting studies show that L- and D-Rev peptides bind to the same site on RRE IIB. Our results demonstrate lack of stereospecificity in RRE RNA-Rev peptide interactions. However, it is quite possible that the interactions between full-length Rev protein and RRE are highly specific.

摘要

重要的HIV-1调节蛋白Rev与HIV-1 mRNA的Rev反应元件(RRE)结合。一种源自Rev的短α-螺旋肽(Rev 34-50)和RRE序列的截短形式(RRE IIB)提供了一个有用的体外系统来研究Rev与RRE之间的相互作用。当前的研究集中于评估Rev 34-50与RRE IIB之间结合相互作用的特异性。通过荧光光谱法研究了L-和D-Rev肽与天然和对映体RRE IIB RNA的结合。D-Rev和L-Rev肽以相似的亲和力与RRE IIB结合。圆二色性测量结果与复合物中D-Rev的非螺旋构象(可能是β-发夹构象)一致。D/L Rev肽与L-RRE IIB RNA的结合亲和力也与它们和天然D-RRE IIB的结合亲和力相似。此外,L-和D-肽与L-RRE结合时的构象与它们和D-RRE形成复合物时的构象相反。RNA足迹研究表明,L-和D-Rev肽与RRE IIB上的同一位点结合。我们的结果表明RRE RNA与Rev肽之间的相互作用缺乏立体特异性。然而全长Rev蛋白与RRE之间的相互作用很可能具有高度特异性。

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本文引用的文献

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The HIV-1 Rev protein.HIV-1 病毒反式激活因子蛋白
Annu Rev Microbiol. 1998;52:491-532. doi: 10.1146/annurev.micro.52.1.491.

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