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蛋白激酶依赖性HPr/CcpA相互作用将糖酵解活性与革兰氏阳性菌中的碳分解代谢物阻遏联系起来。

Protein kinase-dependent HPr/CcpA interaction links glycolytic activity to carbon catabolite repression in gram-positive bacteria.

作者信息

Deutscher J, Küster E, Bergstedt U, Charrier V, Hillen W

机构信息

Institut de Biologie et Chimie des Protéines, CNRS, Lyon, France.

出版信息

Mol Microbiol. 1995 Mar;15(6):1049-53. doi: 10.1111/j.1365-2958.1995.tb02280.x.

Abstract

CcpA, the repressor/activator mediating carbon catabolite repression and glucose activation in many Gram-positive bacteria, has been purified from Bacillus megaterium after fusing it to a His tag. CcpA-his immobilized on a Ni-NTA resin specifically interacted with HPr phosphorylated at seryl residue 46. HPr, a phospho-carrier protein of the phosphoenolpyruvate: glycose phosphotransferase system (PTS), can be phosphorylated at two different sites: (i) at His-15 in a PEP-dependent reaction catalysed by enzyme I of the PTS; and (ii) at Ser-46 in an ATP-dependent reaction catalysed by a metabolite-activated protein kinase. Neither unphosphorylated HPr nor HPr phosphorylated at His-15 nor the doubly phosphorylated HPr bound to CcpA. The interaction with seryl-phosphorylated HPr required the presence of fructose 1,6-bisphosphate. These findings suggest that carbon catabolite repression in Gram-positive bacteria is a protein kinase-triggered mechanism. Glycolytic intermediates, stimulating the corresponding protein kinase and the P-ser-HPr/CcpA complex formation, provide a link between glycolytic activity and carbon catabolite repression. The sensitivity of this complex formation to phosphorylation of HPr at His-15 also suggests a link between carbon catabolite repression and PTS transport activity.

摘要

CcpA是一种阻遏物/激活物,介导许多革兰氏阳性菌中的碳分解代谢物阻遏和葡萄糖激活,在将其与His标签融合后,已从巨大芽孢杆菌中纯化出来。固定在Ni-NTA树脂上的CcpA-his与丝氨酸残基46处磷酸化的HPr特异性相互作用。HPr是磷酸烯醇丙酮酸:葡萄糖磷酸转移酶系统(PTS)的磷酸载体蛋白,可在两个不同位点磷酸化:(i)在PTS的酶I催化的PEP依赖性反应中在His-15处;以及(ii)在代谢物激活的蛋白激酶催化的ATP依赖性反应中在Ser-46处。未磷酸化的HPr、在His-15处磷酸化的HPr或双磷酸化的HPr均不与CcpA结合。与丝氨酸磷酸化的HPr相互作用需要1,6-二磷酸果糖的存在。这些发现表明革兰氏阳性菌中的碳分解代谢物阻遏是一种蛋白激酶触发的机制。糖酵解中间体刺激相应的蛋白激酶和P-丝氨酸-HPr/CcpA复合物形成,在糖酵解活性和碳分解代谢物阻遏之间提供了联系。这种复合物形成对HPr在His-15处磷酸化的敏感性也表明碳分解代谢物阻遏与PTS转运活性之间存在联系。

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