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RSG-1.2 肽与 HIV-1 的 RRE-IIB RNA 元件结合的特异性高于 Rev 肽,主要源于焓变。

Specificity of RSG-1.2 peptide binding to RRE-IIB RNA element of HIV-1 over Rev peptide is mainly enthalpic in origin.

机构信息

Proteomics and Structural Biology Unit, Institute of Genomics and Integrative Biology, CSIR, Delhi, India.

出版信息

PLoS One. 2011;6(8):e23300. doi: 10.1371/journal.pone.0023300. Epub 2011 Aug 10.

Abstract

Rev is an essential HIV-1 regulatory protein which binds to the Rev responsive element (RRE) present within the env gene of HIV-1 RNA genome. This binding facilitates the transport of the RNA to the cytoplasm, which in turn triggers the switch between viral latency and active viral replication. Essential components of this complex have been localized to a minimal arginine rich Rev peptide and stem IIB region of RRE. A synthetic peptide known as RSG-1.2 binds with high binding affinity and specificity to the RRE-IIB than the Rev peptide, however the thermodynamic basis of this specificity has not yet been addressed. The present study aims to probe the thermodynamic origin of this specificity of RSG-1.2 over Rev Peptide for RRE-IIB. The temperature dependent melting studies show that RSG-1.2 binding stabilizes the RRE structure significantly (ΔT(m) = 4.3°C), in contrast to Rev binding. Interestingly the thermodynamic signatures of the binding have also been found to be different for both the peptides. At pH 7.5, RSG-1.2 binds RRE-IIB with a K(a) = 16.2±0.6×10(7) M(-1) where enthalpic change ΔH = -13.9±0.1 kcal/mol is the main driving force with limited unfavorable contribution from entropic change TΔS = -2.8±0.1 kcal/mol. A large part of ΔH may be due to specific stacking between U72 and Arg15. In contrast binding of Rev (K(a) = 3.1±0.4×10(7) M(-1)) is driven mainly by entropy (ΔH = 0 kcal/mol and TΔS = 10.2±0.2 kcal/mol) which arises from major conformational changes in the RNA upon binding.

摘要

Rev 是 HIV-1 的一种必需调节蛋白,可与 HIV-1 RNA 基因组中 env 基因内的 Rev 反应元件(RRE)结合。这种结合有助于将 RNA 转运到细胞质中,进而触发病毒潜伏和活跃复制之间的转换。该复合物的基本组成部分已被定位到一个最小的精氨酸丰富的 Rev 肽和 RRE 的茎 IIB 区。一种称为 RSG-1.2 的合成肽与 RRE-IIB 的结合具有比 Rev 肽更高的结合亲和力和特异性,但是尚未解决这种特异性的热力学基础。本研究旨在探究 RSG-1.2 与 Rev 肽相比对 RRE-IIB 的特异性的热力学起源。温度依赖性融解研究表明,RSG-1.2 结合显著稳定了 RRE 结构(ΔT(m) = 4.3°C),与 Rev 结合相反。有趣的是,两种肽的结合热力学特征也有所不同。在 pH 7.5 下,RSG-1.2 与 RRE-IIB 的结合 K(a) = 16.2±0.6×10(7) M(-1),其中焓变ΔH = -13.9±0.1 kcal/mol 是主要驱动力,来自熵变 TΔS 的不利贡献有限(-2.8±0.1 kcal/mol)。ΔH 的很大一部分可能归因于 U72 和 Arg15 之间的特异性堆积。相比之下,Rev 的结合(K(a) = 3.1±0.4×10(7) M(-1))主要由熵(ΔH = 0 kcal/mol 和 TΔS = 10.2±0.2 kcal/mol)驱动,这是由于 RNA 结合时发生了重大构象变化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a8f2/3154333/878f2a791ca4/pone.0023300.g001.jpg

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