A triple mutation in the a subunit of the Escherichia coli Propionigenium modestum F1F0 ATPase hybrid causes a switch from Na+ stimulation to Na+ inhibition

被引:31
作者
Kaim, G [1 ]
Dimroth, P [1 ]
机构
[1] ETH Zentrum, Inst Mikrobiol, CH-8092 Zurich, Switzerland
关键词
D O I
10.1021/bi973022f
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
Previously we have shown that the Na+-translocating Escherichia coli (F-1-delta)/Propionigenium modestum (F-0+delta) hybrid ATPase acquires a Na+-independent phenotype by the c subunit double mutation F84L, L87V that is reflected by Na+-independent growth of the mutant strain MPC8487 on succinate [Kaim, G., and Dimroth, P. (1995) J. Mol. Biol. 253, 726-738]. Here we describe a new class of mutants that were obtained by random mutagenesis and screening for Na+-independent growth on succinate. All six mutants of the new class contained four mutations in the a subunit (S89P, K220R, V264E, I278N). Results from site-specific mutagenesis revealed that the substitutions K220R, V264E, and I278N were sufficient to create the new phenotype. The resulting E. coli mutant strain MPA762 could only grow in the absence but not in the presence of Na+ ions on succinate minimal medium. This effect of Na+ ions on growth correlated with a Na+-specific inhibition of the mutant ATPase. The K-i for NaCl was 1.5 mM at pH 6.5, similar to the K-m for NaCl in activating the parent hybrid ATPase at this pH. On the other hand, activation by Li+ ions was retained in the new mutant ATPase. In the absence of Na+ or Li+, the mutant enzyme had the same pH optimum at pH 6.5 and twice the specific activity as the parent hybrid ATPase. In accordance with the kinetic data, the reconstituted mutant ATPase catalyzed H+ or Li+ transport but no Na+ transport. These results show for the first time that the coupling ion selectivity of F1F0, ATPases is determined by structural elements not only of the c subunit but also of the a subunit.
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页码:4626 / 4634
页数:9
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