Institute of Molecular Biology and Biophysics, Department of Biology, ETH Zurich, 8093, Zurich, Switzerland.
Institute for Chemistry and Bioanalytics, University of Applied Sciences and Arts Northwestern Switzerland, 4132, Muttenz, Switzerland.
Nat Commun. 2023 Nov 24;14(1):7718. doi: 10.1038/s41467-023-43449-y.
Adhesive type 1 pili from uropathogenic Escherichia coli strains are filamentous, supramolecular protein complexes consisting of a short tip fibrillum and a long, helical rod formed by up to several thousand copies of the major pilus subunit FimA. Here, we reconstituted the entire type 1 pilus rod assembly reaction in vitro, using all constituent protein subunits in the presence of the assembly platform FimD, and identified the so-far uncharacterized subunit FimI as an irreversible assembly terminator. We provide a complete, quantitative model of pilus rod assembly kinetics based on the measured rate constants of FimD-catalyzed subunit incorporation. The model reliably predicts the length distribution of assembled pilus rods as a function of the ratio between FimI and the main pilus subunit FimA and is fully consistent with the length distribution of membrane-anchored pili assembled in vivo. The results show that the natural length distribution of adhesive pili formed via the chaperone-usher pathway results from a stochastic chain termination reaction. In addition, we demonstrate that FimI contributes to anchoring the pilus to the outer membrane and report the crystal structures of (i) FimI in complex with the assembly chaperone FimC, (ii) the FimI-FimC complex bound to the N-terminal domain of FimD, and (iii) a ternary complex between FimI, FimA and FimC that provides structural insights on pilus assembly termination and pilus anchoring by FimI.
尿道致病性大肠杆菌的黏附性 I 型菌毛是由短的尖端纤丝和由多达数千个主要菌毛亚基 FimA 组成的长螺旋形杆组成的丝状超分子蛋白复合物。在这里,我们在组装平台 FimD 的存在下,使用所有组成蛋白亚基,在体外重新构建了整个 I 型菌毛杆组装反应,并确定了迄今为止尚未表征的亚基 FimI 是不可逆的组装终止子。我们基于 FimD 催化的亚基掺入的测量速率常数,提供了菌毛杆组装动力学的完整、定量模型。该模型可靠地预测了组装菌毛杆的长度分布作为 FimI 和主要菌毛亚基 FimA 之间的比值的函数,并且与体内组装的膜锚定菌毛的长度分布完全一致。结果表明,通过伴侣-usher 途径形成的黏附菌毛的自然长度分布是由随机链终止反应引起的。此外,我们证明了 FimI 有助于将菌毛锚定到外膜上,并报告了(i)FimI 与组装伴侣 FimC 的复合物,(ii)FimI-FimC 复合物与 FimD 的 N 端结构域结合,以及(iii)FimI、FimA 和 FimC 之间的三元复合物,该复合物提供了有关 FimI 介导的菌毛组装终止和菌毛锚定的结构见解。