Shaikh Tanvir R, Thomas Dennis R, Chen James Z, Samatey Fadel A, Matsunami Hideyuki, Imada Katsumi, Namba Keiichi, Derosier David J
Dynamic NanoMachine Project, International Cooperative Research Project, Japan Science and Technology Agency, 1-3 Yamadaoka, Suita, Osaka 565-0871, Japan.
Proc Natl Acad Sci U S A. 2005 Jan 25;102(4):1023-8. doi: 10.1073/pnas.0409020102. Epub 2005 Jan 18.
The axial proteins of the bacterial flagellum function as a drive shaft, universal joint, and propeller driven by the flagellar rotary motor; they also form the putative protein export channel. The N- and C-terminal sequences of the eight axial proteins were predicted to form interlocking alpha-domains generating an axial tube. We report on an approximately 1-nm resolution map of the hook from Salmonella typhimurium, which reveals such a tube made from interdigitated, 1-nm rod-like densities similar to those seen in maps of the filament. Atomic models for the two outer domains of the hook subunit were docked into the corresponding outermost features of the map. The N and C termini of the hook subunit fragment are positioned next to each other and face toward the axis of the hook. The placement of these termini would permit the residues missing in the fragment to form the rod-like features that form the core domain of the hook. We also fit the hook atomic model to an approximately 2-nm resolution map of the hook from Caulobacter crescentus. The hook protein sequence from C. crescentus is largely homologous to that of S. typhimurium except for a large insertion (20 kDa). According to difference maps and our fitting, this insertion is found on the outer surface of the hook, consistent with our modeling of the hook.
细菌鞭毛的轴向蛋白起着驱动轴、万向节和由鞭毛旋转马达驱动的螺旋桨的作用;它们还构成了假定的蛋白质输出通道。预测八个轴向蛋白的N端和C端序列会形成相互连锁的α结构域,从而产生一个轴向管。我们报告了鼠伤寒沙门氏菌钩状体的一张分辨率约为1纳米的图谱,该图谱揭示了这样一个由相互交错的1纳米棒状密度构成的管,类似于在丝状体图谱中看到的那些。钩状体亚基的两个外部结构域的原子模型被对接至图谱相应的最外层特征处。钩状体亚基片段的N端和C端彼此相邻定位,并朝向钩状体的轴。这些末端的位置将使片段中缺失的残基形成构成钩状体核心结构域的棒状特征。我们还将钩状体原子模型与新月柄杆菌钩状体的一张分辨率约为2纳米的图谱进行拟合。除了一个大的插入片段(20 kDa)外,新月柄杆菌的钩蛋白序列与鼠伤寒沙门氏菌的序列在很大程度上是同源的。根据差异图谱和我们的拟合结果,该插入片段位于钩状体的外表面,这与我们对钩状体的建模一致。