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PSI二聚化模型:莫洛尼鼠白血病病毒核衣壳蛋白(NCp10)使C278 - G303茎环结构不稳定

A model of PSI dimerization: destabilization of the C278-G303 stem-loop by the nucleocapsid protein (NCp10) of MoMuLV.

作者信息

Girard P M, de Rocquigny H, Roques B P, Paoletti J

机构信息

Unité de Biochimie, URA 147 CNRS, Institut Gustave Roussy, Villejuif, France.

出版信息

Biochemistry. 1996 Jul 2;35(26):8705-14. doi: 10.1021/bi952454s.

Abstract

We have shown that at low ionic strength (i.e., 100 mM NaCl) a short autocomplementary sequence spanning nucleotides C283 to G298 of MoMuLV RNA genome is involved in the process of PSI dimerization in vitro [Girard, P.-M., Bonnet-Mathonière, B., Muriaux, D., & Paoletti, J. (1995) Biochemistry 34, 9785-9794]. In order to identify other contributions of the PSI structure to RNA dimerization, we studied the kinetics of dimerization as a function of salt concentration of short RNA transcripts comprising or not the autocomplementary sequence C283-G298. We propose that, apart from the crucial role of this sequence in RNA dimerization, the 364-565 domain of PSI can interfere, in vitro, with the initiation of dimer formation. Intermolecular loop-loop recognitions involving the 364-565 domain could stabilize, in a salt concentration-dependent manner, a transient RNA dimer built around the loop-loop U288-A293 interaction. This dimer evolves toward a more stable structure which mainly corresponds to the annealing of two C283-G298 sequences. We also show that chemically synthesized NCp10 does not modify these steps but rather helps the system to pass over the energy barriers associated with the transition to stable RNA structures comprising the stem-loop C278-G303. Data obtained in the presence of NCp10 suggest a binding site size of 9 +/- 1 nucleotides per protein at 37 degrees C and a 10-20-fold increase in the rate constant (i.e., k1 = 24 000 +/- 7000 M-1 s-1) of dimer formation.

摘要

我们已经表明,在低离子强度(即100 mM NaCl)下,MoMuLV RNA基因组中跨越核苷酸C283至G298的短自互补序列参与了体外PSI二聚化过程[吉拉德,P.-M.,博内-马托涅尔,B.,穆里亚克斯,D.,& 帕奥莱蒂,J.(1995年)《生物化学》34卷,9785 - 9794页]。为了确定PSI结构对RNA二聚化的其他贡献,我们研究了包含或不包含自互补序列C283 - G298的短RNA转录本的二聚化动力学与盐浓度的函数关系。我们提出,除了该序列在RNA二聚化中的关键作用外,PSI的364 - 565结构域在体外可干扰二聚体形成的起始。涉及364 - 565结构域的分子间环 - 环识别可以以盐浓度依赖的方式稳定围绕环 - 环U288 - A293相互作用构建的瞬时RNA二聚体。该二聚体向更稳定的结构演化,该结构主要对应于两个C283 - G298序列的退火。我们还表明,化学合成的NCp10不会改变这些步骤,而是有助于系统越过与转变为包含茎环C278 - G303的稳定RNA结构相关的能量障碍。在存在NCp10的情况下获得的数据表明,在37℃时每个蛋白质的结合位点大小为9±1个核苷酸,并且二聚体形成的速率常数(即k1 = 24000±7000 M-1 s-1)增加了10 - 20倍。

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