The bacterial flagellar motor couples ion flow to rotary motion at high speed and with apparently fixed stoichiometry. The functional properties of the motor are quite well understood, but its molecular mechanism remains unknown. Recent studies of motor physiology, coupled with mutational and biochemical studies of the components, put significant constraints on the mechanism. Rotation is probably driven by conformational changes in membrane-protein complexes that form the stator. These conformational changes occur as protons move on and off a critical Asp residue in the stator protein MotB, and the resulting forces are applied to the rotor protein FIiG. (C) 2003 Federation of European Biochemical Societies. Published by Elsevier Science B.V. All rights reserved.
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JAPAN ENERGY CO LTD, PHARMACEUT & BIOTECHNOL LAB, TODA, SAITAMA 335, JAPANJAPAN ENERGY CO LTD, PHARMACEUT & BIOTECHNOL LAB, TODA, SAITAMA 335, JAPAN
OOSAWA, K
;
UENO, T
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JAPAN ENERGY CO LTD, PHARMACEUT & BIOTECHNOL LAB, TODA, SAITAMA 335, JAPANJAPAN ENERGY CO LTD, PHARMACEUT & BIOTECHNOL LAB, TODA, SAITAMA 335, JAPAN
UENO, T
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AIZAWA, S
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JAPAN ENERGY CO LTD, PHARMACEUT & BIOTECHNOL LAB, TODA, SAITAMA 335, JAPANJAPAN ENERGY CO LTD, PHARMACEUT & BIOTECHNOL LAB, TODA, SAITAMA 335, JAPAN
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JAPAN ENERGY CO LTD, PHARMACEUT & BIOTECHNOL LAB, TODA, SAITAMA 335, JAPANJAPAN ENERGY CO LTD, PHARMACEUT & BIOTECHNOL LAB, TODA, SAITAMA 335, JAPAN
OOSAWA, K
;
UENO, T
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JAPAN ENERGY CO LTD, PHARMACEUT & BIOTECHNOL LAB, TODA, SAITAMA 335, JAPANJAPAN ENERGY CO LTD, PHARMACEUT & BIOTECHNOL LAB, TODA, SAITAMA 335, JAPAN
UENO, T
;
AIZAWA, S
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JAPAN ENERGY CO LTD, PHARMACEUT & BIOTECHNOL LAB, TODA, SAITAMA 335, JAPANJAPAN ENERGY CO LTD, PHARMACEUT & BIOTECHNOL LAB, TODA, SAITAMA 335, JAPAN