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An Unexpected Twist In Viral Capsid Maturation

机译:病毒衣壳成熟中出现意外的扭曲

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Lambda-like double-stranded (ds) DNA bacteriophage undergo massive conformational changes in their capsid shell during the packaging of their viral genomes. Capsid shells are complex organizations of hundreds of protein subunits that assemble into intricate quaternary complexes that ultimately are able to withstand over 50 atm of pressure during genome packaging. The extensive integration between subunits in capsids requires the formation of an intermediate complex, termed a procapsid, from which individual subunits can undergo the necessary refolding and structural rearrangements needed to transition to the more stable capsid. Although various mature capsids have been characterized at atomic resolution, no such procapsid structure is available for a dsDNA virus or bacteriophage. Here we present a procapsid X-ray structure at 3.65 A resolution, termed prohead II, of the lambda-like bacteriophage HK97, the mature capsid structure of which was previously solved to 3.44 A (ref. 2). A comparison of the two largely different capsid forms has unveiled an unprecedented expansion mechanism that describes the transition. Crystallographic and hydrogen/deuterium exchange data presented here demonstrate that the subunit tertiary structures are significantly different between the two states, with twisting and bending motions occurring in both helical and P-sheet regions. We also identified subunit interactions at each three-fold axis of the capsid that are maintained throughout maturation. The interactions sustain capsid integrity during subunit refolding and provide a fixed hinge from which subunits undergo rotational and translational motions during maturation. Previously published calorimetric data of a closely related bacteriophage, P22, showed that capsid maturation was an exothermic process that resulted in a release of 90 kJ mol~(-1) of energy. We propose that the major tertiary changes presented in this study reveal a structural basis for an exothermic maturation process probably present in many dsDNA bacteriophage and possibly viruses such as herpesvirus, which share the HK97 subunit fold.
机译:Lambda样双链(ds)DNA噬菌体在病毒基因组包装过程中衣壳中发生了巨大的构象变化。衣壳是由数百个蛋白质亚基组成的复杂组织,这些蛋白质亚基组装成复杂的四元复合物,最终能够承受基因组包装过程中超过50 atm的压力。衣壳中的亚基之间的广泛整合需要形成称为前衣壳的中间复合物,从中可以使各个亚基经历必要的折叠和结构重排,以过渡到更稳定的衣壳。尽管已经以原子分辨率表征了各种成熟的衣壳,但是对于dsDNA病毒或噬菌体尚无这样的前衣壳结构。在这里,我们介绍了λ样噬菌体HK97的3.65 A分辨率的壳前X射线结构,称为prohead II,其成熟的衣壳结构先前已解析为3.44 A(参考文献2)。对两种截然不同的衣壳形式进行比较后,发现了前所未有的扩展机制,它描述了这种转变。此处提供的晶体学数据和氢/氘交换数据表明,这两种状态之间的亚基三级结构显着不同,在螺旋和P片区均发生扭曲和弯曲运动。我们还确定了衣壳的每个三倍轴上的亚基相互作用,这些相互作用在整个成熟过程中都得到了维持。相互作用在亚基重折叠期间维持衣壳完整性,并提供固定的铰链,在成熟过程中亚基从该铰链经历旋转和平移运动。先前发表的与之密切相关的噬菌体P22的量热数据表明,衣壳成熟是一个放热过程,导致释放了90 kJ mol〜(-1)的能量。我们建议,这项研究中提出的主要第三级变化揭示了放热成熟过程的结构基础,该过程可能存在于许多dsDNA噬菌体中,并可能存在病毒,例如疱疹病毒,它们共享HK97亚基折叠。

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