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BamA 桶状结构域内的可塑性通过 BAM 介导了混合桶状机制。

Plasticity within the barrel domain of BamA mediates a hybrid-barrel mechanism by BAM.

机构信息

Interdisciplinary Life Science - PULSe, Purdue University, West Lafayette, IN, 47907, USA.

Markey Center for Structural Biology, Department of Biological Sciences, Purdue University, West Lafayette, IN, 47907, USA.

出版信息

Nat Commun. 2021 Dec 8;12(1):7131. doi: 10.1038/s41467-021-27449-4.

Abstract

In Gram-negative bacteria, the biogenesis of β-barrel outer membrane proteins is mediated by the β-barrel assembly machinery (BAM). The mechanism employed by BAM is complex and so far- incompletely understood. Here, we report the structures of BAM in nanodiscs, prepared using polar lipids and native membranes, where we observe an outward-open state. Mutations in the barrel domain of BamA reveal that plasticity in BAM is essential, particularly along the lateral seam of the barrel domain, which is further supported by molecular dynamics simulations that show conformational dynamics in BAM are modulated by the accessory proteins. We also report the structure of BAM in complex with EspP, which reveals an early folding intermediate where EspP threads from the underside of BAM and incorporates into the barrel domain of BamA, supporting a hybrid-barrel budding mechanism in which the substrate is folded into the membrane sequentially rather than as a single unit.

摘要

在革兰氏阴性菌中,β-桶状外膜蛋白的生物发生是由β-桶状装配机制(BAM)介导的。BAM 采用的机制很复杂,到目前为止还不完全清楚。在这里,我们报告了在纳米盘(使用极性脂质和天然膜制备)中 BAM 的结构,我们观察到了一个向外开放的状态。在 BamA 的桶状结构域中的突变表明 BAM 的可塑性是必不可少的,特别是在桶状结构域的侧缝处,分子动力学模拟进一步支持了这一点,该模拟表明 BAM 的构象动力学受到辅助蛋白的调节。我们还报告了 BAM 与 EspP 复合物的结构,该结构揭示了一个早期的折叠中间产物,其中 EspP 从 BAM 的底部穿过并整合到 BamA 的桶状结构域中,支持一种混合桶状出芽机制,其中底物依次而不是作为一个整体折叠到膜中。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/84c9/8655018/5092e22edf90/41467_2021_27449_Fig1_HTML.jpg

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