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镁转运蛋白MgtA被揭示为一种二聚体P型ATP酶。

Magnesium Transporter MgtA revealed as a Dimeric P-type ATPase.

作者信息

Zeinert Rilee, Zhou Fei, Franco Pedro, Zöller Jonathan, Lessen Henry J, Aravind L, Langer Julian D, Sodt Alexander J, Storz Gisela, Matthies Doreen

机构信息

Division of Molecular and Cellular Biology, Eunice Kennedy Shriver National Institute of Child Health and Human Development, National Institutes of Health, Bethesda MD 20892, USA.

Unit on Structural Biology, Eunice Kennedy Shriver National Institute of Child Health and Human Development, National Institutes of Health, Bethesda MD 20892, USA.

出版信息

bioRxiv. 2024 Feb 29:2024.02.28.582502. doi: 10.1101/2024.02.28.582502.

Abstract

Magnesium (Mg) uptake systems are present in all domains of life given the vital role of this ion. Bacteria acquire Mg via conserved Mg channels and transporters. The transporters are required for growth when Mg is limiting or during bacterial pathogenesis, but, despite their significance, there are no known structures for these transporters. Here we report the first structure of the Mg transporter MgtA solved by single particle cryo-electron microscopy (cryo-EM). Using mild membrane extraction, we obtained high resolution structures of both a homodimeric form (2.9 Å), the first for a P-type ATPase, and a monomeric form (3.6 Å). Each monomer unit of MgtA displays a structural architecture that is similar to other P-type ATPases with a transmembrane domain and two soluble domains. The dimer interface consists of contacts between residues in adjacent soluble nucleotide binding and phosphotransfer regions of the haloacid dehalogenase (HAD) domain. We suggest oligomerization is a conserved structural feature of the diverse family of P-type ATPase transporters. The ATP binding site and conformational dynamics upon nucleotide binding to MgtA were characterized using a combination of cryo-EM, molecular dynamics simulations, hydrogen-deuterium exchange mass spectrometry, and mutagenesis. Our structure also revealed a Mg ion in the transmembrane segments, which, when combined with sequence conservation and mutagenesis studies, allowed us to propose a model for Mg transport across the lipid bilayer. Finally, our work revealed the N-terminal domain structure and cytoplasmic Mg binding sites, which have implications for related P-type ATPases defective in human disease.

摘要

鉴于镁离子的重要作用,镁(Mg)摄取系统存在于生命的所有领域。细菌通过保守的镁通道和转运蛋白获取镁。当镁有限或在细菌致病过程中,这些转运蛋白对细菌生长是必需的,但是,尽管它们很重要,目前尚无这些转运蛋白的已知结构。在此,我们报告了通过单颗粒冷冻电子显微镜(cryo-EM)解析得到的镁转运蛋白MgtA的首个结构。通过温和的膜提取方法,我们获得了同二聚体形式(2.9 Å)和单体形式(3.6 Å)的高分辨率结构,其中同二聚体形式是首个P型ATP酶的结构。MgtA的每个单体单元都呈现出一种与其他P型ATP酶相似的结构架构,具有一个跨膜结构域和两个可溶性结构域。二聚体界面由相邻可溶性核苷酸结合区域和卤代酸脱卤酶(HAD)结构域的磷酸转移区域中的残基之间的相互作用组成。我们认为寡聚化是P型ATP酶转运蛋白这一多样家族的保守结构特征。结合冷冻电子显微镜、分子动力学模拟、氢氘交换质谱和诱变技术,对MgtA的ATP结合位点以及核苷酸结合后的构象动力学进行了表征。我们的结构还揭示了跨膜片段中的一个镁离子,结合序列保守性和诱变研究,使我们能够提出一个镁跨脂质双层运输的模型。最后,我们的工作揭示了N端结构域的结构和细胞质中的镁结合位点,这对在人类疾病中存在缺陷的相关P型ATP酶具有重要意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d199/10925321/667dd8a25620/nihpp-2024.02.28.582502v1-f0001.jpg

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