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首页> 外文期刊>The biochemical journal >Substrate specificity and regulation of the maize (Zea mays) leaf ADP: protein phosphotransferase catalysing phosphorylation/inactivation of pyruvate, orthophosphate dikinase
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Substrate specificity and regulation of the maize (Zea mays) leaf ADP: protein phosphotransferase catalysing phosphorylation/inactivation of pyruvate, orthophosphate dikinase

机译:玉米(Zea mays)叶片ADP的底物特异性和调控:蛋白磷酸转移酶催化丙酮酸,正磷酸二激酶的磷酸化/失活

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pThe protein substrate specificity of the maize (Zea mays) leaf ADP: protein phosphotransferase (regulatory protein, RP) was studied in terms of its relative ability to inactivate/phosphorylate pyruvate, orthophosphate dikinase from Zea mays and the non-sulphur purple photosynthetic bacterium Rhodospirillum rubrum. The dimeric bacterial dikinase was inactivated by the maize leaf RP via phosphorylation, with a stoichiometry of approximately 1 mol of phosphate incorporated/mol of 92.7-kDa protomer. Inactivation required both ADP and ATP, with ADP being the specific donor for regulatory phosphorylation. The requirements for inactivation/phosphorylation in this heterologous system were identical with those previously established for the tetrameric maize leaf dikinase. The ADP-dependent maize leaf RP did not phosphorylate alternative protein substrates such as casein or phosvitin, and its activity was not affected by cyclic nucleotides, Ca2+ or calmodulin. The regulation of the maize leaf ADP: protein phosphotransferase was studied in terms of changes in adenylate energy charge and pyruvate concentration. The change in adenylate energy charge necessary to substantially inhibit phosphorylation of maize leaf dikinase was not suggestive of it being a physiological modulator of phosphotransferase activity. Pyruvate was a potent competitive inhibitor of regulatory phosphorylation (Ki = 80 microM), consistent with its interaction with the catalytic phosphorylated intermediate of dikinase, the true protein substrate for ADP-dependent phosphorylation/inactivation./p
机译:玉米叶片ADP的蛋白质底物特异性:研究了蛋白质磷酸转移酶(调节蛋白,RP)相对/失活/磷酸化丙酮酸丙酮酸,玉米中正磷酸二激酶和非硫紫色的能力。光合细菌红螺螺旋藻。玉米叶RP通过磷酸化使二聚体细菌二激酶灭活,化学计量为约1摩尔掺入的磷酸酯/摩尔的92.7-kDa启动子。失活需要ADP和ATP,而ADP是调节磷酸化的特定供体。在该异源系统中灭活/磷酸化的要求与先前针对四聚体玉米叶片双激酶的要求相同。 ADP依赖的玉米叶片RP不会磷酸化酪蛋白或磷酸肌醇等其他蛋白质底物,并且其活性不受环状核苷酸,Ca2 +或钙调蛋白的影响。根据腺苷酸能电荷和丙酮酸浓度的变化研究了玉米叶片ADP:蛋白磷酸转移酶的调控。基本上抑制玉米叶二激酶磷酸化所必需的腺苷酸能电荷的变化并不表明它是磷酸转移酶活性的生理调节剂。丙酮酸是一种有效的竞争性调节磷酸化抑制剂(Ki = 80 microM),与它与二激酶的催化磷酸化中间体相互作用有关,后者是ADP依赖性磷酸化/失活的真正蛋白质底物。

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