The plasma-membrane H+-ATPase from beet root is inhibited by a calcium-dependent phosphorylation

被引:108
作者
Lino, B [1 ]
Baizabal-Aguirre, VM [1 ]
de la Vara, LEG [1 ]
机构
[1] IPN, Ctr Invest & Estudios Avanzados, Unidad Irapuato, Dept Biotecnol & Bioquim, Irapuato 36500, Gto, Mexico
关键词
beta; H+-ATPase; phosphorylation of proteins; plasma membrane; protein kinase;
D O I
10.1007/s004250050266
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Several plasma-membrane proteins from beet root (Beta vulgaris L.) have been functionally incorporated into reconstituted proteoliposomes. These showed H+-ATPase activity, measured both as ATP hydrolysis and H+ transport. The proton-transport specific activity was 10 times higher than in plasma membranes, and was greatly stimulated by potassium and valinomycin. These proteoliposomes also showed calcium-regulated protein kinase activity. This kinase activity is probably due to a calmodulin-like domain protein kinase (CDPK), since two protein bands were recognized by antibodies against soybean and Arabidopsis CDPK. This kinase phosphorylated histone and syntide-2 in a Ca2+-dependent manner. Among the plasma-membrane proteins phosphorylated by this kinase, was the H+-ATPase. When the H+-ATPase was either prephosphorylated or assayed in the presence of Ca2+, both the ATP-hydrolysis and the proton-transport activities were slower. This inhibition was reversed by an alkaline-phosphatase treatment. A trypsin treatment (that has been reported to remove the C-terminal autoinhibitory domain from the H+-ATPase) also reversed the inhibition caused by phosphorylation. These results indicate that a Ca2+-dependent phosphorylation, probably caused by a CDPK, inhibits the H+-ATPase activities. The substrate of this regulatory phosphorylation could be the H+-ATPase itself, or a different protein influencing the ATPase activities.
引用
收藏
页码:352 / 359
页数:8
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