Dissociation of hexameric Escherichia coli inorganic pyrophosphatase into trimers on His-136->Gln or His-140->Gln substitution and its effect on enzyme catalytic properties

被引:34
作者
Baykov, AA
Dudarenkov, VY
Kapyla, J
Salminen, T
Hyytia, T
Kasho, VN
Husgafvel, S
Cooperman, BS
Goldman, A
Lahti, R
机构
[1] MOSCOW MV LOMONOSOV STATE UNIV,AN BELOZERSKY INST PHYSICOCHEM BIOL,MOSCOW 119899,RUSSIA
[2] UNIV PENN,DEPT CHEM,PHILADELPHIA,PA 19104
[3] UNIV TURKU,DEPT BIOCHEM,SF-20500 TURKU,FINLAND
[4] CTR BIOTECHNOL,SF-20521 TURKU,FINLAND
[5] UNIV CALIF LOS ANGELES,DEPT CHEM & BIOCHEM,LOS ANGELES,CA 90024
关键词
D O I
10.1074/jbc.270.51.30804
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
Each of the five histidines in Escherichia coli inorganic pyrophosphatase (PPase) was replaced in turn by glutamine. Significant changes in protein structure and activity were observed in the H136Q and H140Q variants only. In contrast to wild-type PPase, which is hexameric, these variants can be dissociated into trimers by dilution, as shown by analytical ultracentrifugation and cross-linking. Mg2+ and substrate stabilize the hexameric forms of both variants. The hexameric H136Q- and H140Q-PPases have the same binding affinities for magnesium ion as wild-type, but their hydrolytic activities under optimal conditions are, respectively, 225 and 110% of wild-type PPase, and their synthetic activities, 340 and 140%. The increased activity of hexameric H136Q-PPase results from an increase in the rate constants governing most of the catalytic steps in both directions. Dissociation of the hexameric H136Q and H140Q variants into trimers does not affect the catalytic constants for PPi hydrolysis between pH 6 and 9 but drastically decreases their affinities for Mg2PPi and Mg2+. These results prove that His-136 and His-140 are key residues in the dimer interface and show that hexamer formation improves the substrate binding characteristics of the active site.
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页码:30804 / 30812
页数:9
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