PROPERTIES OF RESPIRATORY CHAIN-LINKED NA+-INDEPENDENT NADH-QUINONE REDUCTASE IN A MARINE VIBRIO-ALGINOLYTICUS

被引:9
作者
HAYASHI, M
MIYOSHI, T
SATO, M
UNEMOTO, T
机构
[1] Laboratory of Membrane Biochemistry, Faculty of Pharmaceutical Sciences, Chiba University, ChibaJapan
关键词
RESPIRATORY CHAIN; NADH-QUINONE REDUCTASE; SODIUM PUMP; 2-ELECTRON REDUCTION; ONE-ELECTRON REDUCTION; (V-ALGINOLYTICUS);
D O I
10.1016/0005-2728(92)90211-J
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
The respiratory chain of a marine Vibrio alginolyticus contains two types of NADH-quinone reductase (NQR): one is an Na+-dependent NQR functioning as an Na+ pump (NQR-1) and the other is an Na+-independent NQR (NQR-2). NQR-2 was purified about 55-fold from the membrane of mutant Nap-1 which is devoid of NQR-1, and its properties were compared with those of NQR-1. In contrast to NQR-1, the purified NQR-2 does not require any salts for activity and is not inhibited by up to 0.4 M salts. The optimum pH of NQR-2 is between 6.8 and 7.8, which is about 0.7 pH units lower than that of NQR-1. NQR-2 is insensitive to strong inhibitors of NQR-1 such as p-chloromercuribenzoate, Ag+ and 2-heptyl-4-hydroxyquinoline N-oxide. Using inverted membrane vesicles, it was confirmed that NQR-2 has no capacity to generate a membrane potential. NQR-2 reduces menadione and ubiquinone-1 by a two-electron reduction pathway. Since the NADH-reacting FAD-containing beta-subunit of NQR-1 reduces quinones by a one-electron reduction pathway, the mode of quinone reduction is closely related to energy coupling; the formation of semiquinone radicals as an intermediate is likely to be essential to functioning as an ion pump.
引用
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页码:145 / 151
页数:7
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