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首页> 外文期刊>Journal of Molecular Biology >PROTEOLYTIC AND CONFORMATIONAL CONTROL OF VIRUS CAPSID MATURATION - THE BACTERIOPHAGE HK97 SYSTEM
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PROTEOLYTIC AND CONFORMATIONAL CONTROL OF VIRUS CAPSID MATURATION - THE BACTERIOPHAGE HK97 SYSTEM

机译:病毒衣壳成熟的蛋白水解和构象控制-噬菌体HK97系统

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Bacteriophage capsid assembly pathways provide excellent model systems to study large-scale conformational changes and other mechanisms that regulate the formation of macromolecular complexes. These capsids are formed from proheads: relatively fragile precursor particles which mature by undergoing extensive remodeling. Phage HK97 employs novel features in its strategy for building capsids, including assembly without a scaffolding protein, and the formation of a network of covalent cross-links between neighboring subunits in the mature virion. In addition, proteolytic cleavage of the capsid protein from 42 kDa to 31 kDa is essential for maturation. To investigate the structural bases for proteolysis and cross-linking, we have used cryo-electron micrographs to reconstruct the three-dimensional structures of purified particles from four discrete stages in the assembly pathway: Prohead I, Prohead II, Head I and Head II. Prohead I has icosahedral T = 7 packing of blister-shaped pentamers and hexamers. The pentamers are 5-fold symmetric, but the hexamers exhibit an unusual departure from 6-fold symmetry, as if two trimers had undergone a shear dislocation of about 25 Angstrom. Proteolytic conversion to Prohead II leaves the outer surface largely unchanged, but a major loss of density from the inner surface is observed, which we infer to represent the excision of the amino-terminal domains of the capsid protein. Upon expansion to the Head I state, the capsid becomes markedly larger, thinner walled, and more polyhedral: moreover, the capsomer shapes change radically; especially notable is the disappearance of the large hexon dislocation. No differences between Head I and the covalently cross-linked Head II could be observed at the current resolution of about 25 Angstrom, from which we infer that it is the conformational rearrangements effected by expansion that create the micro-environments needed for the autocatalytic formation of the isodipeptide bonds found in the mature virions (''pseudo-active sites''). (C) 1995 Academic Press Limited [References: 61]
机译:噬菌体衣壳装配途径为研究大规模构象变化和调节大分子复合物形成的其他机制提供了出色的模型系统。这些衣壳是由前额形成的:相对脆弱的前体颗粒会通过大量重塑而成熟。噬菌体HK97在其构建衣壳的策略中采用了新颖的功能,包括无需支架蛋白的组装,以及成熟病毒体中相邻亚基之间共价交联网络的形成。此外,衣壳蛋白从42 kDa到31 kDa的蛋白水解切割对于成熟至关重要。为了研究蛋白水解和交联的结构基础,我们使用了低温电子显微照片从组装路径的四个离散阶段:Prohead I,Prohead II,Head I和Head II重建了纯化颗粒的三维结构。 Prohead I具有二十面体T = 7的泡罩形五聚体和六聚体填料。五聚体是5倍对称的,但是六聚体表现出不寻常的偏离6倍对称性,好像两个三聚体经历了约25埃的剪切位错。蛋白水解转化为Prohead II可使外表面基本保持不变,但观察到内表面密度的重大损失,我们推断这代表了衣壳蛋白氨基末端结构域的切除。扩展到“头I”状态后,衣壳明显变大,壁变薄,多面体化。特别值得注意的是大六邻位错的消失。在大约25埃的当前分辨率下,没有观察到Head I和共价交联的Head II之间的差异,从中我们可以推断,正是由膨胀作用引起的构象重排产生了自动催化形成环戊二烯所需的微环境。在成熟病毒体中发现的异二肽键(“伪活性位点”)。 (C)1995 Academic Press Limited [参考号:61]

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