Cryo-EM structure of the Mycobacterium smegmatis MmpL5-AcpM complex.

IF 4.7 1区 生物学 Q1 MICROBIOLOGY mBio Pub Date : 2024-12-11 Epub Date: 2024-10-31 DOI:10.1128/mbio.03035-24
Rakesh Maharjan, Zhemin Zhang, Philip A Klenotic, William D Gregor, Georgiana E Purdy, Edward W Yu
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Abstract

Mycobacterium tuberculosis, the causative agent of the airborne infection tuberculosis (TB), contains 13 mycobacterial membrane protein large (MmpL) transporters that can be divided into two distinct subclasses. These MmpL proteins play important functional roles within the mycobacterium and subsequently are considered attractive drug targets to combat TB infection. Previously, we reported both X-ray and cryo-electron microscopy (cryo-EM) structures of the MmpL3 transporter, providing high-resolution structural information for this subclass of the MmpL proteins. Thus far, there is no structural information available for the other subclass, which includes MmpL5, an inner membrane transporter that plays a critical role in iron hemostasis. Here, we report the first cryo-EM structure of the Mycobacterium smegmatis MmpL5 transporter bound with the meromycolate extension acyl carrier protein M (AcpM) to a resolution of 2.81 Å. Our structural data reveals that MmpL5 and AcpM interact in the cytoplasm to form a complex, and this allows us to propose that MmpL5 may also associate with the mycobactin L (MbtL) protein in a similar fashion to form a heterocomplex important for iron acquisition, which enables the survival and replication of the mycobacterium.

Importance: The emergence and spread of multidrug-resistant tuberculosis (TB) present enormous challenges to the global public health. The causative agent, Mycobacterium tuberculosis, has now infected more than one-third of the world's population. Here, we report the first structure of the mycobacterial membrane protein large 5 (MmpL5), an essential transporter for iron acquisition, bound with the meromycolate extension acyl carrier protein M (AcpM), indicating a plausible pathway for mycobactin translocation. Our studies will ultimately inform an era in structure-guided drug design to combat TB infection.

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分枝杆菌 MmpL5-AcpM 复合物的冷冻电镜结构。
结核分枝杆菌是通过空气传播的结核病(TB)的病原体,它含有 13 个可分为两个不同亚类的大分枝杆菌膜蛋白(MmpL)转运体。这些 MmpL 蛋白在分枝杆菌内发挥着重要的功能作用,因此被认为是抗结核感染的有吸引力的药物靶标。此前,我们报道了 MmpL3 转运体的 X 射线和低温电子显微镜(cryo-EM)结构,为该亚类 MmpL 蛋白提供了高分辨率的结构信息。迄今为止,还没有关于另一个亚类的结构信息,其中包括在铁止血中发挥关键作用的内膜转运体 MmpL5。在此,我们首次报道了分枝杆菌 MmpL5 转运体与美拉美酸延伸酰基载体蛋白 M(AcpM)结合的低温电子显微镜结构,分辨率为 2.81 Å。我们的结构数据显示,MmpL5 和 AcpM 在细胞质中相互作用形成复合物,这使我们能够提出,MmpL5 也可能以类似的方式与分枝杆菌素 L(MbtL)蛋白结合,形成对铁获取非常重要的异质复合物,从而使分枝杆菌得以生存和复制:耐多药结核病(TB)的出现和传播给全球公共卫生带来了巨大挑战。致病菌结核分枝杆菌现已感染了全球三分之一以上的人口。在这里,我们首次报告了分枝杆菌膜蛋白大 5(MmpL5)的结构,它是铁获取的一个重要转运体,与美拉美酸延伸酰基载体蛋白 M(AcpM)结合,表明了分枝杆菌素转运的一个合理途径。我们的研究最终将为结构引导药物设计时代的到来提供信息,以对抗结核病感染。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
mBio
mBio MICROBIOLOGY-
CiteScore
10.50
自引率
3.10%
发文量
762
审稿时长
1 months
期刊介绍: mBio® is ASM''s first broad-scope, online-only, open access journal. mBio offers streamlined review and publication of the best research in microbiology and allied fields.
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