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大肠杆菌 M48 金属蛋白酶 BepA 的保守调控机制的结构-功能特征。

Structure-Function Characterization of the Conserved Regulatory Mechanism of the Escherichia coli M48 Metalloprotease BepA.

机构信息

Institute of Microbiology and Infection, University of Birmingham, Edgbaston, United Kingdom

Institute of Microbiology and Infection, University of Birmingham, Edgbaston, United Kingdom.

出版信息

J Bacteriol. 2020 Dec 18;203(2). doi: 10.1128/JB.00434-20.

Abstract

The asymmetric Gram-negative outer membrane (OM) is the first line of defense for bacteria against environmental insults and attack by antimicrobials. The key component of the OM is lipopolysaccharide, which is transported to the surface by the essential lipopolysaccharide transport (Lpt) system. Correct folding of the Lpt system component LptD is regulated by a periplasmic metalloprotease, BepA. Here, we present the crystal structure of BepA from , solved to a resolution of 2.18 Å, in which the M48 protease active site is occluded by an active-site plug. Informed by our structure, we demonstrate that free movement of the active-site plug is essential for BepA function, suggesting that the protein is autoregulated by the active-site plug, which is conserved throughout the M48 metalloprotease family. Targeted mutagenesis of conserved residues reveals that the negative pocket and the tetratricopeptide repeat (TPR) cavity are required for function and degradation of the BAM complex component BamA under conditions of stress. Last, we show that loss of BepA causes disruption of OM lipid asymmetry, leading to surface exposed phospholipid. M48 metalloproteases are widely distributed in all domains of life. possesses four members of this family located in multiple cellular compartments. The functions of these proteases are not well understood. Recent investigations revealed that one family member, BepA, has an important role in the maturation of a central component of the lipopolysaccharide (LPS) biogenesis machinery. Here, we present the structure of BepA and the results of a structure-guided mutagenesis strategy, which reveal the key residues required for activity that inform how all M48 metalloproteases function.

摘要

不对称革兰氏阴性外膜 (OM) 是细菌抵御环境侵袭和抗菌药物攻击的第一道防线。OM 的关键组成部分是脂多糖,它通过必需的脂多糖转运 (Lpt) 系统被转运到表面。Lpt 系统成分 LptD 的正确折叠由周质金属蛋白酶 BepA 调节。在这里,我们展示了 中 BepA 的晶体结构,分辨率为 2.18Å,其中 M48 蛋白酶活性位点被活性位点塞封闭。受我们结构的启发,我们证明了活性位点塞的自由运动对于 BepA 功能是必不可少的,这表明该蛋白通过活性位点塞自我调节,该塞在整个 M48 金属蛋白酶家族中保守。保守残基的靶向突变表明,在应激条件下,负口袋和四肽重复 (TPR) 腔对于 BamA 作为 BAM 复合物成分的功能和降解是必需的。最后,我们表明 BepA 的缺失会导致 OM 脂质不对称性的破坏,导致表面暴露磷脂。M48 金属蛋白酶广泛分布于所有生命领域。 拥有四个位于多个细胞隔室中的该家族成员。这些蛋白酶的功能尚未得到很好的理解。最近的研究表明,该家族的一个成员 BepA 在脂多糖 (LPS) 生物发生机制的核心成分的成熟中起着重要作用。在这里,我们展示了 BepA 的结构以及基于结构的诱变策略的结果,该策略揭示了活性所需的关键残基,这些信息解释了所有 M48 金属蛋白酶的功能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/26df/7950410/4a78af911e15/JB.00434-20-f0001.jpg

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