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A Retroviral Chimeric Capsid Protein Reveals the Role of the N-Terminal beta-Hairpin in Mature Core Assembly

机译:逆转录病毒嵌合衣壳蛋白揭示了在成熟核心装配中N末端β-发夹的作用

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摘要

The human immunodeficiency virus (HIV) is an enveloped virus constituted by two monomeric RNA molecules that encode for 15 proteins. Among these are the structural proteins that are translated as the gag polyprotein. In order to become infectious, HIV must undergo a maturation process mediated by the proteolytic cleavage of gag to give rise to the isolated structural protein matrix, capsid (CA), nucleocapsid as well as p6 and spacer peptides 1 and 2. Upon maturation, the 13 N-terminal residues from CA fold into a beta-hairpin, which is stabilized mainly by a salt bridge between Prol and Asp51. Previous reports have shown that non-formation of the salt bridge, which potentially disrupts proper beta-hairpin arrangement, generates noninfectious virus or aberrant cores. To date, however, there is no consensus on the role of the beta-hairpin. In order to shed light in this subject, we have generated mutations in the hairpin region to examine what features would be crucial for the beta-hairpin's role in retroviral mature core formation. These features include the importance of the proline at the N-terminus, the amino acid sequence, and the physical structure of the beta-hairpin itself. The presented experiments provide biochemical evidence that beta-hairpin formation plays an important role in regard to CA protein conformation required to support proper mature core arrangement. Hydrogen/deuterium exchange and in vitro assembly reactions illustrated the importance of the beta-hairpin structure, its dynamics, and its influence on the orientation of helix 1 for the assembly of the mature CA lattice.
机译:人类免疫缺陷病毒(HIV)是一种包膜病毒,由两个编码15种蛋白质的单体RNA分子组成。其中有一些结构蛋白被翻译为gag多蛋白。为了具有感染力,HIV必须经历由gag的蛋白水解裂解介导的成熟过程,以产生分离的结构蛋白基质,衣壳(CA),核衣壳以及p6和间隔肽1和2。来自CA的13个N端残基折叠成一个β-发夹,主要通过Prol和Asp51之间的盐桥来稳定。以前的报道表明,盐桥的未形成会潜在地破坏适当的β-发夹结构,会产生非感染性病毒或异常核心。然而,迄今为止,关于β-发夹的作用尚未达成共识。为了阐明该主题,我们在发夹区域产生了突变,以检查哪些功能对β-发夹在逆转录病毒成熟核心形成中的作用至关重要。这些特征包括脯氨酸在N末端的重要性,氨基酸序列以及β-发夹本身的物理结构。提出的实验提供了生化证据,证明β-发夹结构在支持适当成熟核心排列所需的CA蛋白构象方面起着重要作用。氢/氘交换和体外组装反应说明了β-发夹结构的重要性,其动力学及其对成熟CA晶格组装的螺旋1方向的影响。

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