首页> 外文期刊>Journal of Molecular Biology >Structure of B-MLV capsid amino-terminal domain reveals key features of viral tropism, gag assembly and core formation.
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Structure of B-MLV capsid amino-terminal domain reveals key features of viral tropism, gag assembly and core formation.

机译:B-MLV衣壳氨基末端结构域的结构揭示了病毒向性,gag装配和核心形成的关键特征。

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The Gag polyprotein is the major structural protein found in all classes of retroviruses. Interactions between Gag molecules control key events at several stages in the cycle of infection. In particular, the capsid (CA) domain of Gag mediates many of the protein-protein interactions that drive retrovirus assembly, maturation and disassembly. Moreover, in murine leukaemia virus (MLV), sequence variation in CA confers N and B tropism that determines susceptibility to the intracellular restriction factors Fv1n and Fv1b. We have determined the structure of the N-terminal domain (NtD) of CA from B-tropic MLV. A comparison of this structure with that of the NtD of CA from N-tropic MLV reveals that although the crystals belong to different space groups, CA monomers are packed with the same P6 hexagonal arrangement. Moreover, interhexamer crystal contacts between residues located at the periphery of the discs are conserved, indicating that switching of tropism does not result in large differences in the backbone conformation, nor does it alter the quaternary arrangement of the disc. We have also examined crystals of the N-tropic MLV CA containing both N- and C-terminal domains. In this case, the NtD hexamer is still present; however, the interhexamer spacing is increased and the conserved interhexamer contacts are absent. Investigation into the effects of mutation of residues that mediate interhexamer contacts reveals that amino acid substitutions at these positions cause severe defects in viral assembly, budding and Gag processing. Based on our crystal structures and mutational analysis, we propose that in MLV, interactions between the NtDs of CA are required for packing of Gag molecules in the early part of immature particle assembly. Moreover, we present a model where proteolytic cleavage at maturation results in migration of CA C-terminal domains into interstitial spaces between NtD hexamers. As a result, NtD-mediated interhexamer contacts present in the immature particle are displaced and the less densely packed lattice with increased hexamer-hexamer spacing characteristic of the viral core is produced.
机译:Gag多蛋白是在所有类别的逆转录病毒中发现的主要结构蛋白。 Gag分子之间的相互作用控制感染周期中多个阶段的关键事件。特别是,Gag的衣壳(CA)结构域介导了许多蛋白与蛋白质的相互作用,从而驱动逆转录病毒的组装,成熟和分解。此外,在鼠白血病病毒(MLV)中,CA中的序列变异赋予N和B向性,从而决定了对细胞内限制因子Fv1n和Fv1b的敏感性。我们已经从B型MLV确定了CA的N末端结构域(NtD)的结构。将该结构与来自N-向MLV的CA的NtD进行的比较表明,尽管晶体属于不同的空间组,但CA单体以相同的P6六角形排列堆积。此外,位于圆盘外围的残基之间的六聚体晶体接触得以保留,这表明向性的转换不会导致主链构象存在较大差异,也不会改变圆盘的四级排列。我们还检查了同时包含N和C末端域的N向MLV CA晶体。在这种情况下,NtD六聚体仍然存在。但是,六聚体之间的间隔增加,并且不存在保守的六聚体接触。对介导六聚体间接触的残基突变的影响的研究表明,这些位置的氨基酸取代会导致病毒装配,芽接和Gag加工过程中出现严重缺陷。根据我们的晶体结构和突变分析,我们建议在MLV中,CA的NtD之间的相互作用是在未成熟粒子组装的早期填充Gag分子所必需的。此外,我们提出了一个模型,其中成熟时的蛋白水解切割导致CA C末端域迁移到NtD六聚体之间的间隙中。结果,存在于未成熟颗粒中的NtD-介导的六聚体间接触被置换,并产生了具有增加的病毒核六聚体-六聚体间隔特征的密度较小的堆积晶格。

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