Conformations of NhaA, the Na/H Exchanger from Escherichia coli, in the pH-Activated and Ion-Translocating States

被引:31
作者
Appel, Matthias [1 ]
Hizlan, Dilem [1 ]
Vinothkumar, Kutti R. [1 ]
Ziegler, Christine [1 ]
Kuehlbrandt, Werner [1 ]
机构
[1] Max Planck Inst Biophys, Dept Biol Struct, D-60438 Frankfurt, Germany
关键词
electron microscopy; proton transport; membrane protein structure; sodium-proton antiporter; membrane transport; LOOP-VIII-IX; NA+/H+ ANTIPORTER; CRYOELECTRON MICROSCOPY; PROJECTION STRUCTURE; RESOLUTION STRUCTURE; PROTEIN; MEMBRANE; MECHANISM; CRYOMICROSCOPY; DOMAINS;
D O I
10.1016/j.jmb.2008.12.042
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
NhaA, the main sodium-proton exchanger in the inner membrane of Escherichia coli, regulates the cytosolic concentrations of H and Na. It is inactive at acidic pH, becomes active between pH 6 and pH 7, and reaches maximum activity at pH 8. By cryo-electron microscopy of two-dimensional crystals grown at pH 4 and incubated at higher pH, we identified two sequential conformational changes in the protein in response to pH or substrate ions. The first change is induced by a rise in pH from 6 to 7 and marks the transition from the inactive state to the pH-activated state. pH activation, which precedes the ion-induced conformational change, is accompanied by an overall expansion of the NhaA monomer and a local ordering of the N-terminus. The second conformational change is induced by the substrate ions Na and Li at pH above 7 and involves a 7-angstrom displacement of helix IVp. This movement would cause a charge imbalance at the ion-binding site that may trigger the release of the substrate ion and open a periplasmic exit channel. (C) 2008 Elsevier Ltd. All rights reserved.
引用
收藏
页码:351 / 365
页数:15
相关论文
共 45 条
[1]   Mechanism of Na+/H+ antiporting [J].
Arkin, Isaiah T. ;
Xu, Huafeng ;
Jensen, Morten O. ;
Arbely, Eyal ;
Bennett, Estelle R. ;
Bowers, Kevin J. ;
Chow, Edmond ;
Dror, Ron O. ;
Eastwood, Michael P. ;
Flitman-Tene, Ravenna ;
Gregersen, Brent A. ;
Klepeis, John L. ;
Kolossvary, Istvan ;
Shan, Yibing ;
Shaw, David E. .
SCIENCE, 2007, 317 (5839) :799-803
[2]   ANALYSIS OF TRANSIENT STRUCTURES BY CRYOMICROSCOPY COMBINED WITH RAPID MIXING OF SPRAY DROPLETS [J].
BERRIMAN, J ;
UNWIN, N .
ULTRAMICROSCOPY, 1994, 56 (04) :241-252
[3]   Conformational changes in the cytochrome b6f complex induced by inhibitor binding [J].
Breyton, C .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2000, 275 (18) :13195-13201
[4]   MRC image processing programs [J].
Crowther, RA ;
Henderson, R ;
Smith, JM .
JOURNAL OF STRUCTURAL BIOLOGY, 1996, 116 (01) :9-16
[5]   Further additions to MolScript version 1.4, including reading and contouring of electron-density maps [J].
Esnouf, RM .
ACTA CRYSTALLOGRAPHICA SECTION D-BIOLOGICAL CRYSTALLOGRAPHY, 1999, 55 :938-940
[6]   Unraveling functional and structural interactions between transmembrane domains IV and XI of NhaA Na+/H+ antiporter of Escherichia coli [J].
Galili, L ;
Herz, K ;
Dym, O ;
Padan, E .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2004, 279 (22) :23104-23113
[7]   Trans membrane domain IV is involved in ion transport activity and pH regulation of the NhaA-Na+/H+ antiporter of Escherichia coli [J].
Galili, L ;
Rothman, A ;
Kozachkov, L ;
Rimon, A ;
Padan, E .
BIOCHEMISTRY, 2002, 41 (02) :609-617
[8]   Functional waters in intraprotein proton transfer monitored by FTIR difference spectroscopy [J].
Garczarek, F ;
Gerwert, K .
NATURE, 2006, 439 (7072) :109-112
[9]   A pH-dependent conformational change of NhaA Na+/H+ antiporter of Escherichia coli involves loop VIII-IX, plays a role in the pH response of the protein, and is maintained by the pure protein in dodecyl maltoside [J].
Gerchman, Y ;
Rimon, A ;
Padan, E .
JOURNAL OF BIOLOGICAL CHEMISTRY, 1999, 274 (35) :24617-24624
[10]   Oligomerization of NhaA, the Na+/H+ antiporter of Escherichia coli in the membrane and its functional and structural consequences [J].
Gerchman, Y ;
Rimon, A ;
Venturi, M ;
Padan, E .
BIOCHEMISTRY, 2001, 40 (11) :3403-3412