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MlaD 的结构特征阐明了其独特的配体运输机制和起源。

The Structural Features of MlaD Illuminate its Unique Ligand-Transporting Mechanism and Ancestry.

机构信息

Department of Biosciences and Bioengineering, Indian Institute of Technology Guwahati, Guwahati, Assam, 781039, India.

出版信息

Protein J. 2024 Apr;43(2):298-315. doi: 10.1007/s10930-023-10179-5. Epub 2024 Feb 12.

DOI:10.1007/s10930-023-10179-5
PMID:38347327
Abstract

The membrane-associated solute-binding protein (SBP) MlaD of the maintenance of lipid asymmetry (Mla) system has been reported to help the transport of phospholipids (PLs) between the outer and inner membranes of Gram-negative bacteria. Despite the availability of structural information, the molecular mechanism underlying the transport of PLs and the ancestry of the protein MlaD remain unclear. In this study, we report the crystal structures of the periplasmic region of MlaD from Escherichia coli (EcMlaD) at a resolution range of 2.3-3.2 Å. The EcMlaD protomer consists of two distinct regions, viz. N-terminal β-barrel fold consisting of seven strands (referred to as MlaD domain) and C-terminal α-helical domain (HD). The protein EcMlaD oligomerizes to give rise to a homo-hexameric ring with a central channel that is hydrophobic and continuous with a variable diameter. Interestingly, the structural analysis revealed that the HD, instead of the MlaD domain, plays a critical role in determining the oligomeric state of the protein. Based on the analysis of available structural information, we propose a working mechanism of PL transport, viz. "asymmetric protomer movement (APM)". Wherein half of the EcMlaD hexamer would rise in the periplasmic side along with an outward movement of pore loops, resulting in the change of the central channel geometry. Furthermore, this study highlights that, unlike typical SBPs, EcMlaD possesses a fold similar to EF/AMT-type beta(6)-barrel and a unique ancestry. Altogether, the findings firmly establish EcMlaD to be a non-canonical SBP with a unique ligand-transport mechanism.

摘要

维持脂质不对称性(Mla)系统的膜相关溶质结合蛋白(SBP)MlaD 已被报道有助于革兰氏阴性细菌内外膜之间的磷脂(PL)转运。尽管已经有了结构信息,但 PL 转运的分子机制和蛋白 MlaD 的祖先仍然不清楚。在这项研究中,我们报道了大肠杆菌(EcMlaD)周质区 MlaD 的晶体结构,分辨率范围为 2.3-3.2Å。EcMlaD 单体由两个不同的区域组成,即由七个链组成的 N 端β-桶折叠(称为 MlaD 结构域)和 C 端α-螺旋结构域(HD)。该蛋白 EcMlaD 寡聚化形成一个具有中央通道的同源六聚体环,该通道是疏水性的,并且直径可变。有趣的是,结构分析表明,HD 而不是 MlaD 结构域,在决定蛋白质的寡聚状态方面起着关键作用。基于对现有结构信息的分析,我们提出了 PL 转运的工作机制,即“不对称单体运动(APM)”。其中,EcMlaD 六聚体的一半会在周质侧上升,同时孔环向外移动,导致中央通道几何形状发生变化。此外,这项研究强调,与典型的 SBP 不同,EcMlaD 具有类似于 EF/AMT 型β(6)-桶的结构和独特的祖先。总之,这些发现确凿地证明了 EcMlaD 是一种具有独特配体转运机制的非典型 SBP。

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2
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