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描述亨尼帕病毒核蛋白与磷蛋白的相互作用。

Characterization of the interactions between the nucleoprotein and the phosphoprotein of Henipavirus.

机构信息

Laboratoire d' Architecture et Fonction des Macromolécules Biologiques, UMR 6098 CNRS, Aix-Marseille University, Campus de Luminy, 13288 Marseille Cedex 9, France.

出版信息

J Biol Chem. 2011 Apr 15;286(15):13583-602. doi: 10.1074/jbc.M111.219857. Epub 2011 Feb 11.

Abstract

The Henipavirus genome is encapsidated by the nucleoprotein (N) within a helical nucleocapsid that recruits the polymerase complex via the phosphoprotein (P). In a previous study, we reported that in henipaviruses, the N-terminal domain of the phosphoprotein and the C-terminal domain of the nucleoprotein (N(TAIL)) are both intrinsically disordered. Here we show that Henipavirus N(TAIL) domains are also disordered in the context of full-length nucleoproteins. We also report the cloning, purification, and characterization of the C-terminal X domains (P(XD)) of Henipavirus phosphoproteins. Using isothermal titration calorimetry, we show that N(TAIL) and P(XD) form a 1:1 stoichiometric complex that is stable under NaCl concentrations as high as 1 M and has a K(D) in the μM range. Using far-UV circular dichroism and nuclear magnetic resonance, we show that P(XD) triggers an increase in the α-helical content of N(TAIL). Using fluorescence spectroscopy, we show that P(XD) has no impact on the chemical environment of a Trp residue introduced at position 527 of the Henipavirus N(TAIL) domain, thus arguing for the lack of stable contacts between the C termini of N(TAIL) and P(XD). Finally, we present a tentative structural model of the N(TAIL)-P(XD) interaction in which a short, order-prone region of N(TAIL) (α-MoRE; amino acids 473-493) adopts an α-helical conformation and is embedded between helices α2 and α3 of P(XD), leading to a relatively small interface dominated by hydrophobic contacts. The present results provide the first detailed experimental characterization of the N-P interaction in henipaviruses and designate the N(TAIL)-P(XD) interaction as a valuable target for rational antiviral approaches.

摘要

亨德拉尼帕病毒基因组被核蛋白(N)包裹在一个螺旋核壳内,通过磷蛋白(P)招募聚合酶复合物。在之前的研究中,我们报道了在亨德拉尼帕病毒中,磷蛋白的 N 端结构域和核蛋白的 C 端结构域(N(TAIL))都是固有无序的。在这里,我们表明亨德拉尼帕病毒 N(TAIL)结构域在全长核蛋白的情况下也是无序的。我们还报告了亨德拉尼帕病毒磷蛋白 C 端 X 结构域(P(XD))的克隆、纯化和特性。使用等温滴定量热法,我们表明 N(TAIL)和 P(XD)形成了 1:1 化学计量比的复合物,在高达 1 M 的 NaCl 浓度下稳定,K(D) 值在微摩尔范围内。使用远紫外圆二色性和核磁共振,我们表明 P(XD)触发了 N(TAIL)的α-螺旋含量增加。使用荧光光谱,我们表明 P(XD)对引入亨德拉尼帕病毒 N(TAIL)结构域 527 位色氨酸残基的化学环境没有影响,因此可以证明 N(TAIL)和 P(XD)的 C 端之间没有稳定的接触。最后,我们提出了一个关于 N(TAIL)-P(XD)相互作用的暂定结构模型,其中 N(TAIL)的一个短的、倾向于有序的区域(α-MoRE;氨基酸 473-493)采用α-螺旋构象,并嵌入在 P(XD)的α2和α3 螺旋之间,导致相对较小的界面主要由疏水接触组成。目前的结果提供了亨德拉尼帕病毒中 N-P 相互作用的第一个详细的实验特征,并将 N(TAIL)-P(XD)相互作用指定为合理抗病毒方法的有价值的靶标。

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