Department of Molecular Biology, The Scripps Research Institute, La Jolla, CA 92037, USA.
J Mol Biol. 2010 Mar 26;397(2):560-74. doi: 10.1016/j.jmb.2010.01.016. Epub 2010 Jan 20.
HK97 is an exceptionally amenable system for characterizing major conformational changes associated with capsid maturation in double-stranded DNA bacteriophage. HK97 undergoes a capsid expansion of approximately 20%, accompanied by major subunit rearrangements during genome packaging. A previous 3.44-A-resolution crystal structure of the mature capsid Head II and cryo-electron microscopy studies of other intermediate expansion forms of HK97 suggested that, primarily, rigid-body movements facilitated the maturation process. We recently reported a 3.65-A-resolution structure of the preexpanded particle form Prohead II (P-II) and found that the capsid subunits undergo significant refolding and twisting of the tertiary structure to accommodate expansion. The P-II study focused on major twisting motions in the P-domain and on refolding of the spine helix during the transition. Here we extend the crystallographic comparison between P-II and Head II, characterizing the refolding events occurring in each of the four major domains of the capsid subunit and their effect on quaternary structure stabilization. In addition, hydrogen/deuterium exchange, coupled to mass spectrometry, was used to characterize the structural dynamics of three distinct capsid intermediates: P-II, Expansion Intermediate, and the nearly mature Head I. Differences in the solvent accessibilities of the seven quasi-equivalent capsid subunits, attributed to differences in secondary and quaternary structures, were observed in P-II. Nearly all differences in solvent accessibility among subunits disappear after the first transition to Expansion Intermediate. We show that most of the refolding is coupled to this transformation, an event associated with the transition from asymmetric to symmetric hexamers.
HK97 是一个非常适合研究双链 DNA 噬菌体衣壳成熟相关主要构象变化的系统。HK97 在基因组包装过程中经历约 20%的衣壳扩张,并伴随着主要亚基重排。先前的 HK97 成熟衣壳 Head II 的 3.44Å 分辨率晶体结构和其他中间扩张形式的冷冻电子显微镜研究表明,主要是刚体运动促进了成熟过程。我们最近报道了预扩张粒子形式 Prohead II (P-II) 的 3.65Å 分辨率结构,发现衣壳亚基经历了显著的重折叠和三级结构扭曲,以适应扩张。P-II 研究主要集中在 P 结构域中的主要扭曲运动和过渡过程中脊柱螺旋的重折叠。在这里,我们扩展了 P-II 和 Head II 之间的晶体学比较,描述了衣壳亚基的四个主要结构域中的重折叠事件及其对四级结构稳定的影响。此外,结合质谱的氢/氘交换用于表征三种不同的衣壳中间产物:P-II、扩张中间产物和几乎成熟的 Head I 的结构动力学。在 P-II 中观察到七个准等价衣壳亚基的溶剂可及性差异归因于二级和四级结构的差异。在向扩张中间产物的第一次转变后,亚基之间几乎所有溶剂可及性的差异都消失了。我们表明,大部分重折叠与这种转变相关联,这是一个与从不对称六聚体到对称六聚体的转变相关的事件。