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噬菌体P22尾部辅助因子gp4的结合诱导稳定化与组装。

Binding-induced stabilization and assembly of the phage P22 tail accessory factor gp4.

作者信息

Olia Adam S, Al-Bassam Jawdat, Winn-Stapley Danella A, Joss Lisa, Casjens Sherwood R, Cingolani Gino

机构信息

Department of Biochemistry and Molecular Biology, SUNY Upstate Medical University, 750, E. Adams Street, Syracuse, NY 13210, USA.

出版信息

J Mol Biol. 2006 Oct 20;363(2):558-76. doi: 10.1016/j.jmb.2006.08.014. Epub 2006 Aug 12.

Abstract

To infect and replicate, bacteriophage P22 injects its 43 kbp genome across the cell wall of Salmonella enterica serovar Typhimurium. The attachment of phage P22 to the host cell as well as the injection of the viral DNA into the host is mediated by the virion's tail complex. This 2.8 MDa molecular machine is formed by five proteins, which include the portal protein gp1, the adhesion tailspike protein gp9, and three tail accessory factors: gp4, gp10, gp26. We have isolated the tail accessory factor gp4 and characterized its structure and binding interactions with portal protein. Interestingly, gp4 exists in solution as a monomer, which displays an exceedingly low structural stability (Tm 34 degrees C). Unfolded gp4 is prone to aggregation within a narrow range of temperatures both in vitro and in Salmonella extracts. In the virion the thermal unfolding of gp4 is prevented by the interaction with the dodecameric portal protein, which stabilizes the structure of gp4 and suppresses unfolded gp4 from irreversibly aggregating in the Salmonella milieu. The structural stabilization of gp4 is accompanied by the concomitant oligomerization of the protein to form a ring of 12 subunits bound to the lower end of the portal ring. The interaction of gp4 with portal protein is complex and likely involves the distinct binding of two non-equivalent sets of six gp4 proteins. Binding of the first set of six gp4 equivalents to dodecameric portal protein yields a gp(1)12:gp(4)6 assembly intermediate, which is stably populated at 30 degrees C and can be resolved by native gel electrophoresis. The final product of the assembly reaction is a bi-dodecameric gp(1)12:gp(4)12 complex, which appears hollow by electron microscopy, suggesting that gp4 does not physically plug the DNA entry/exit channel, but acts as a structural adaptor for the other tail accessory factors: gp10 and gp26.

摘要

为了感染和复制,噬菌体P22将其43千碱基对的基因组穿过鼠伤寒沙门氏菌血清型鼠伤寒杆菌的细胞壁。噬菌体P22与宿主细胞的附着以及病毒DNA注入宿主细胞均由病毒粒子的尾部复合体介导。这个2.8兆道尔顿的分子机器由五种蛋白质组成,包括门户蛋白gp1、粘附尾刺蛋白gp9和三种尾部辅助因子:gp4、gp10、gp26。我们分离出了尾部辅助因子gp4,并对其结构以及与门户蛋白的结合相互作用进行了表征。有趣的是,gp4在溶液中以单体形式存在,其结构稳定性极低(熔点34摄氏度)。未折叠的gp4在体外和沙门氏菌提取物中,在很窄的温度范围内都容易聚集。在病毒粒子中,gp4与十二聚体门户蛋白的相互作用可防止其热解折叠,该相互作用稳定了gp4的结构,并抑制未折叠的gp4在沙门氏菌环境中不可逆地聚集。gp4的结构稳定伴随着该蛋白的寡聚化,形成一个由12个亚基组成的环,与门户环的下端结合。gp4与门户蛋白的相互作用很复杂,可能涉及两组不等价的六个gp4蛋白的不同结合。第一组六个等价的gp4与十二聚体门户蛋白的结合产生一个gp(1)12:gp(4)6组装中间体,该中间体在30摄氏度时稳定存在,可通过非变性凝胶电泳分离。组装反应的最终产物是一个双十二聚体gp(1)12:gp(4)12复合物,通过电子显微镜观察其呈中空状,这表明gp4并非物理性地堵塞DNA进出通道,而是作为其他尾部辅助因子gp10和gp26的结构适配器。

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