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大肠杆菌Na⁺/脯氨酸转运体结构与动力学的自旋标记分析

Spin labeling analysis of structure and dynamics of the Na(+)/proline transporter of Escherichia coli.

作者信息

Wegener C, Tebbe S, Steinhoff H J, Jung H

机构信息

Universität Osnabrück, Fachbereich Biologie/Chemie, Arbeitsgruppe Mikrobiologie, Barbarastrasse 11, D-49069 Osnabrück, Germany.

出版信息

Biochemistry. 2000 Apr 25;39(16):4831-7. doi: 10.1021/bi992442x.

Abstract

With respect to the functional importance attributed to the N-terminal part of the Na(+)/proline transporter of Escherichia coli (PutP), we report here on the structural arrangement and functional dynamics of transmembrane domains (TMs) II and III and the adjoining loop regions. Information on membrane topography was obtained by analyzing the residual mobility of site-specifically-attached nitroxide spin label and by determination of collision frequencies of the nitroxide with oxygen and a polar metal ion complex using electron paramagnetic resonance (EPR) spectroscopy. The studies suggest that amino acids Phe45, Ser50, Ser54, Trp59, and Met62 are part of TM II while Gly39 and Arg40 are located at a membrane-water interface probably forming the cytoplasmic cap of the TM. Also Ala67 and Glu75 are at a membrane-water interface, suggesting a location close to the periplasmic ends of TMs II and III, respectively. Ser71 between these residues is clearly in a water-exposed loop (periplasmic loop 3). Spin labels attached to positions 80, 86, and 91 show EPR properties typical for a TM location (TM III). Leu97 may be part of a structured loop region while Ala107 is clearly located in a water-exposed loop (cytoplasmic loop 4). Finally, spin labels attached to the positions of Asp33 and Leu37 are clearly on the surface of the transporter and are directed into an apolar environment. These findings strongly support the recently proposed 13-helix model of PutP [Jung, H., Rübenhagen, R., Tebbe, S., Leifker, K., Tholema, N., Quick, M., and Schmid, R. (1998) J. Biol. Chem. 273, 26400-26407] and suggest that TMs II and III of the transporter are formed by amino acids Ser41 to Gly66 and Ser76 to Gly95, respectively. In addition to the topology analysis, it is shown that binding of Na(+) and/or proline to the transporter alters the mobility of the nitroxide group at the positions of Leu37 and Phe45. From these findings, it is concluded that binding of the ligands induces conformational alterations of PutP that involve at least parts of TM II and the preceding cytoplasmic loop.

摘要

关于大肠杆菌(Escherichia coli)的Na⁺/脯氨酸转运蛋白(PutP)N端部分所具有的功能重要性,我们在此报告跨膜结构域(TMs)II和III以及相邻环区的结构排列和功能动态。通过分析位点特异性连接的氮氧自旋标记的残余迁移率,以及使用电子顺磁共振(EPR)光谱法测定氮氧与氧气和极性金属离子络合物的碰撞频率,获得了膜拓扑结构的信息。研究表明,氨基酸Phe45、Ser50、Ser54、Trp59和Met62是TM II的一部分,而Gly39和Arg40位于膜 - 水界面,可能形成TM的细胞质帽。同样,Ala67和Glu75也处于膜 - 水界面,分别表明它们靠近TM II和III的周质端。这些残基之间的Ser71明显处于水暴露环(周质环3)中。连接到位置80、86和91的自旋标记显示出典型的TM位置(TM III)的EPR特性。Leu97可能是结构化环区的一部分,而Ala107明显位于水暴露环(细胞质环4)中。最后,连接到Asp33和Leu37位置的自旋标记明显位于转运蛋白表面,并指向非极性环境。这些发现有力地支持了最近提出的PutP的13螺旋模型[Jung, H., Rübenhagen, R., Tebbe, S., Leifker, K., Tholema, N., Quick, M., and Schmid, R. (1998) J. Biol. Chem. 273, 26400 - 26407],并表明转运蛋白的TM II和III分别由氨基酸Ser41至Gly66和Ser76至Gly95形成。除了拓扑分析外,还表明Na⁺和/或脯氨酸与转运蛋白的结合会改变Leu37和Phe45位置处氮氧基团的迁移率。从这些发现可以得出结论,配体的结合会诱导PutP的构象改变,这至少涉及TM II的一部分和前面的细胞质环。

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