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通过电子显微镜单颗粒分析解析大肠杆菌KdpFABC P型ATP酶的溶液结构。

Solution structure of the KdpFABC P-type ATPase from Escherichia coli by electron microscopic single particle analysis.

作者信息

Heitkamp Thomas, Böttcher Bettina, Greie Jörg-Christian

机构信息

Universität Osnabrück, Fachbereich Biologie/Chemie, Arbeitsgruppe Mikrobiologie, Barbarastrabetae 11, 49069 Osnabrück, Germany.

出版信息

J Struct Biol. 2009 Jun;166(3):295-302. doi: 10.1016/j.jsb.2009.02.016. Epub 2009 Mar 11.

DOI:10.1016/j.jsb.2009.02.016
PMID:19285138
Abstract

The K+-translocating KdpFABC complex from Escherichia coli functions as a high affinity potassium uptake system and belongs to the superfamily of P-type ATPases, although it exhibits some unique features. It comprises four subunits, and the sites of ATP hydrolysis and substrate transport are located on two different polypeptides. No structural data are so far available for elucidating the correspondingly unique mechanism of coupling ion transport and catalysis in this P-type ATPase. By use of electron microscopy and single particle analysis of negatively stained, solubilized KdpFABC complexes, we solved the structure of the complex at a resolution of 19A, which allowed us to model the arrangement of subunits within the holoenzyme and, thus, to identify the interfaces between subunits. The model showed that the K+-translocating KdpA subunit is in close contact with the transmembrane region of the ATP-hydrolyzing subunit KdpB. The cytosolic C-terminal domain of the KdpC subunit, which is assumed to play a role in cooperative ATP binding together with KdpB, is located in close vicinity to the nucleotide binding domain of KdpB. Overall, the arrangement of subunits agrees with biochemical data and the predictions on subunit interactions.

摘要

来自大肠杆菌的K⁺转运蛋白KdpFABC复合物作为一种高亲和力钾摄取系统发挥作用,属于P型ATP酶超家族,尽管它具有一些独特特征。它由四个亚基组成,ATP水解位点和底物转运位点位于两条不同的多肽上。迄今为止,尚无结构数据可用于阐明这种P型ATP酶中离子转运与催化相偶联的相应独特机制。通过对负染、可溶的KdpFABC复合物进行电子显微镜和单颗粒分析,我们以19埃的分辨率解析了该复合物的结构,这使我们能够模拟全酶内亚基的排列方式,从而确定亚基之间的界面。该模型表明,K⁺转运亚基KdpA与ATP水解亚基KdpB的跨膜区域紧密接触。KdpC亚基的胞质C末端结构域被认为与KdpB一起在协同ATP结合中发挥作用,它位于KdpB的核苷酸结合结构域附近。总体而言,亚基的排列与生化数据以及关于亚基相互作用的预测一致。

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Solution structure of the KdpFABC P-type ATPase from Escherichia coli by electron microscopic single particle analysis.通过电子显微镜单颗粒分析解析大肠杆菌KdpFABC P型ATP酶的溶液结构。
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The KdpC subunit of the Escherichia coli K+-transporting KdpB P-type ATPase acts as a catalytic chaperone.大肠杆菌 K+-转运 KdpB P 型 ATP 酶的 KdpC 亚基充当催化伴侣。
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The KdpFABC complex from Escherichia coli: a chimeric K+ transporter merging ion pumps with ion channels.大肠杆菌中的 KdpFABC 复合物:一种嵌合的 K+转运体,将离子泵与离子通道融合在一起。
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Single amino acid substitution in the putative transmembrane helix V in KdpB of the KdpFABC complex of Escherichia coli uncouples ATPase activity and ion transport.大肠杆菌KdpFABC复合物中KdpB假定跨膜螺旋V中的单氨基酸取代使ATP酶活性与离子转运解偶联。
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ATP binding properties of the soluble part of the KdpC subunit from the Escherichia coli K(+)-transporting KdpFABC P-type ATPase.来自大肠杆菌K⁺转运KdpFABC P型ATP酶的KdpC亚基可溶性部分的ATP结合特性
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K+-translocating KdpFABC P-type ATPase from Escherichia coli acts as a functional and structural dimer.来自大肠杆菌的K⁺转运KdpFABC P型ATP酶以功能和结构二聚体的形式发挥作用。
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The conserved dipole in transmembrane helix 5 of KdpB in the Escherichia coli KdpFABC P-type ATPase is crucial for coupling and the electrogenic K+-translocation step.大肠杆菌KdpFABC P型ATP酶中KdpB跨膜螺旋5中的保守偶极子对于偶联和电致K⁺转运步骤至关重要。
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Common patterns and unique features of P-type ATPases: a comparative view on the KdpFABC complex from Escherichia coli (Review).P型ATP酶的常见模式与独特特征:对大肠杆菌KdpFABC复合物的比较性观察(综述)
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Inter-domain motions of the N-domain of the KdpFABC complex, a P-type ATPase, are not driven by ATP-induced conformational changes.KdpFABC复合物(一种P型ATP酶)N结构域的结构域间运动并非由ATP诱导的构象变化所驱动。
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Functional modules of KdpB, the catalytic subunit of the Kdp-ATPase from Escherichia coli.来自大肠杆菌的钾离子转运ATP酶(Kdp-ATPase)的催化亚基KdpB的功能模块。
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引用本文的文献

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The KdpFABC complex - K transport against all odds.KdpFABC复合物——克服重重困难进行钾离子转运。
Mol Membr Biol. 2019 Dec;35(1):21-38. doi: 10.1080/09687688.2019.1638977.
2
Crystal structure of the potassium-importing KdpFABC membrane complex.钾离子导入型KdpFABC膜复合物的晶体结构
Nature. 2017 Jun 29;546(7660):681-685. doi: 10.1038/nature22970. Epub 2017 Jun 21.
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Endogenous and Exogenous KdpF Peptide Increases Susceptibility of BCG to Nitrosative Stress and Reduces Intramacrophage Replication.内源性和外源性KdpF肽增加卡介苗对亚硝化应激的敏感性并减少巨噬细胞内复制。
Front Cell Infect Microbiol. 2017 Apr 6;7:115. doi: 10.3389/fcimb.2017.00115. eCollection 2017.