Role of the salt-bridge between switch-1 and switch-2 of Dictyostelium myosin

被引:78
作者
Furch, M
Fujita-Becker, S
Geeves, MA
Holmes, KC
Manstein, DJ
机构
[1] Max Planck Inst Med Forsch, D-69120 Heidelberg, Germany
[2] Max Planck Inst Mol Physiol, D-44026 Dortmund, Germany
关键词
kinetics; recombinant protein; molecular motor; ATP hydrolysis; actomyosin;
D O I
10.1006/jmbi.1999.2921
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
Motifs N2 and N3, also referred to as switch-1 and switch-2 form part of the active site of molecular motors such as myosins and kinesins. Ln the case of myosin, N3 is thought to act as a gamma-phosphate sensor and moves almost 6 Angstrom relative to N2 during the catalysed turnover of ATP, opening and closing the active site surrounding the gamma-phosphate. The closed form seems to be necessary for hydrolysis and is stabilised by the formation of a salt-bridge between an arginine residue in N2 and a glutamate residue in N3. We examined the role of this salt-bridge in Dictyostelium discoideum myosin. Myosin motor domains with mutations E459R or R238E, that block salt-bridge formation, show defects in nucleotide-binding, reduced rates of ATP hydrolysis and a tenfold reduction in actin affinity. Inversion of the salt-bridge in double-mutant M765-IS eliminates most of the defects observed for the single mutants. With the exception of a 2,500-fold higher K-M value for ATP, the double-mutant displayed enzymatic and functional properties very similar to those of the wild-type protein. Our results reveal that, independent of its orientation, the salt-bridge is required to support efficient ATP hydrolysis, normal communication between different functional regions of the myosin head, and motor function. (C) 1999 Academic Press.
引用
收藏
页码:797 / 809
页数:13
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