Mutations of Arg(198) in sarcoplasmic reticulum Ca2+-ATPase cause inhibition of hydrolysis of the phosphoenzyme intermediate formed from inorganic phosphate
T. Daiho et al., Mutations of Arg(198) in sarcoplasmic reticulum Ca2+-ATPase cause inhibition of hydrolysis of the phosphoenzyme intermediate formed from inorganic phosphate, FEBS LETTER, 444(1), 1999, pp. 54-58
Arg(198) of sarcoplasmic reticulum Ca2+-ATPase was substituted with lysine,
glutamine, glutamic acid, alanine, and isoleucine by site-directed mutagen
esis. Kinetic analysis was performed with microsomal membranes isolated fro
m COS-I cells which were transfected,vith the mutated cDNAs. The rate of de
phosphorylation of the ADP-insensitive phosphoenzyme was determined by firs
t phosphorylating the Ca2+-ATPase with P-32(i) and then diluting the sample
with non-radioactive P-i. This rate mas reduced substantially in the mutan
t R198Q, more strongly in the mutants R198A and R198I, and most strongly in
the mutant R198E, but to a much lesser extent in R198K. The reduction in t
he rate of dephosphorylation was consistent with the observed decrease in t
he turnover rate of the Ca2+-ATPase accompanied by the steady-state accumul
ation of the ADP-insensitive phosphoenzyme formed from ATP. These results i
ndicate that the positive charge and high hydrophilicity. of Arg(198) are c
ritical for rapid hydrolysis of the ADP-insensitive phosphoenzyme. (C) 1999
Federation of European Biochemical Societies.