National Laboratory of Biomacromolecules, Institute of Biophysics, Chinese Academy of Sciences, Beijing, China.
University of Chinese Academy of Sciences, Beijing, China.
FASEB J. 2021 Jan;35(1):e21207. doi: 10.1096/fj.202001443RR.
β-barrel outer membrane proteins (β-OMPs) play critical roles in nutrition acquisition, protein import/export, and other fundamental biological processes. The assembly of β-OMPs in Gram-negative bacteria is mediated by the β-barrel assembly machinery (BAM) complex, yet its precise mechanism remains elusive. Here, we report two structures of the BAM complex in detergents and in nanodisks, and two crystal structures of the BAM complex with bound substrates. Structural analysis indicates that the membrane compositions surrounding the BAM complex could modulate its overall conformations, indicating low energy barriers between different conformational states and a highly dynamic nature of the BAM complex. Importantly, structures of the BAM complex with bound substrates and the related functional analysis show that the first β-strand of the BamA β-barrel (β1 ) in the BAM complex is associated with the last but not the first β-strand of a β-OMP substrate via antiparallel β-strand interactions. These observations are consistent with the β-signal hypothesis during β-OMP biogenesis, and suggest that the β1 strand in the BAM complex may interact with the last β-strand of an incoming β-OMP substrate upon their release from the chaperone-bound state.
β-桶状外膜蛋白(β-OMPs)在营养物质获取、蛋白质进出口和其他基本生物过程中发挥着关键作用。革兰氏阴性菌中β-OMPs 的组装是由β-桶状组装机器(BAM)复合物介导的,但它的确切机制仍不清楚。在这里,我们报告了两种去污剂和纳米盘中的 BAM 复合物结构,以及两种与结合底物的 BAM 复合物的晶体结构。结构分析表明,BAM 复合物周围的膜成分可以调节其整体构象,表明不同构象状态之间的能量壁垒较低,BAM 复合物具有高度动态的性质。重要的是,结合底物的 BAM 复合物的结构和相关功能分析表明,BAM 复合物中 BamA β-桶的第一个β-链(β1)通过反平行β-链相互作用与β-OMP 底物的最后一个而非第一个β-链相关联。这些观察结果与β-OMP 生物发生过程中的β-信号假说一致,并表明在伴侣结合状态下从进入的β-OMP 底物释放后,BAM 复合物中的β1 链可能与进入的β-OMP 底物的最后一个β-链相互作用。