Vitagliano Luigi, Ruggiero Alessia, Pedone Carlo, Berisio Rita
Istituto di Biostrutture e Bioimmagini, C.N.R., I-80134 Napoli, Italy.
J Mol Biol. 2007 Apr 6;367(4):935-41. doi: 10.1016/j.jmb.2007.01.034. Epub 2007 Jan 20.
Biogenesis of pili in the uropathogenic Echerichia coli, essential to the bacterial pathogenicity, is a complex molecular process, which involves several protein components of the Pap gene cluster. A crucial role in the process is played by the chaperone PapD and by the PapE pilus subunit. Interestingly, PapE exhibits an Ig-like fold with a missing strand. The missing G strand is donated by the chaperone during pilin folding and by adjacent pilus subunits in the final fibre. In order to obtain a detailed picture at atomic level of the molecular events related to this process, we undertook molecular dynamics studies of the non-canonical immuno-globulin-like PapE in its unliganded state. These analyses were extended to the complexes of PapE with the complementary G(1) strand of PapD and with the N-terminal extension of PapK. All three systems investigated were stable in the time interval considered (20 ns). However, significant differences in their local and overall flexibilities were detected. Notably, the equilibrated structure of unliganded PapE, which is difficult to characterise experimentally, displays unexpected features. Indeed, a significant rearrangement of the local structure of the groove, which hosts the complementary strands, is observed. This reorganisation, characterised by the formation of several new hydrogen bonds, leads to a closure of the groove that likely makes pilin polymerisation more difficult. These data suggest that chaperone release and pilin-pilin association must be concerted processes and that chaperone plays an important role in preventing pilin transitions towards states that are not prone to polymerise.
致病性大肠杆菌菌毛的生物合成是一个复杂的分子过程,对细菌致病性至关重要,它涉及Pap基因簇的几个蛋白质成分。伴侣蛋白PapD和菌毛亚基PapE在这一过程中发挥着关键作用。有趣的是,PapE呈现出一种缺少一条链的免疫球蛋白样折叠结构。缺失的G链在菌毛蛋白折叠过程中由伴侣蛋白提供,在最终的纤维中则由相邻的菌毛亚基提供。为了在原子水平上详细了解与该过程相关的分子事件,我们对未结合配体状态下的非典型免疫球蛋白样PapE进行了分子动力学研究。这些分析扩展到了PapE与PapD的互补G(1)链以及PapK的N端延伸片段形成的复合物。在所考虑的时间间隔(20纳秒)内,研究的所有三个系统都是稳定的。然而,我们检测到了它们在局部和整体柔韧性方面的显著差异。值得注意的是,未结合配体的PapE的平衡结构很难通过实验进行表征,却展现出了意想不到的特征。实际上,观察到容纳互补链的凹槽局部结构发生了显著重排。这种重排以形成几个新的氢键为特征,导致凹槽闭合,这可能会使菌毛蛋白聚合更加困难。这些数据表明,伴侣蛋白的释放和菌毛蛋白 - 菌毛蛋白的结合必须是协同过程,并且伴侣蛋白在防止菌毛蛋白转变为不易聚合的状态方面起着重要作用。