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Nm23/核苷二磷酸激酶的一种新型丝氨酸/苏氨酸特异性蛋白磷酸转移酶活性。

A novel serine/threonine-specific protein phosphotransferase activity of Nm23/nucleoside-diphosphate kinase.

作者信息

Engel M, Véron M, Theisinger B, Lacombe M L, Seib T, Dooley S, Welter C

机构信息

Institut für Humangenetik, Universität des Saarlandes, Homburg, Germany.

出版信息

Eur J Biochem. 1995 Nov 15;234(1):200-7. doi: 10.1111/j.1432-1033.1995.200_c.x.

Abstract

Two human nm23 genes have been identified, designated nm23-H1 and nm23-H2, which encode the 88% identical nucleoside-diphosphate kinase (NDPK) A and NDPK B polypeptides, respectively. The nm23-H1 gene product has been shown to play a functional role in the suppression of tumor metastasis. The Nm23 proteins/NDPK are highly conserved throughout evolution and are implicated in controlling cellular differentiation and development in various species, while the underlying mechanisms remain undefined. Neither the NDPK activity nor the DNA-binding activity, identified recently for NDPK B, can satisfactory explain the regulatory functions of Nm23. The present study provides evidence that purified Nm23 proteins are capable of transferring a phosphate group to other proteins when non-denaturing amounts of urea are present. This novel Nm23/NDPK activity was found to be specific for serine and threonine residues, and the transphosphorylation of substrate proteins occurred stoichiometrically. Because of the absence of a substrate turn-over, the novel function was termed protein phosphotransferase activity instead of protein kinase activity. It is demonstrated that urea stimulates the interaction of NDPK with other proteins. Identical phosphoprotein patterns were obtained using purified NDPK preparations from human, Drosophila, yeast and Dictyostelium in the presence of urea. Partially purified NDPK from human erythrocytes produced a similar phosphorylation pattern independent of urea addition and also acted stoichiometrically. In this preparation, a protein phosphotransferase activity of Nm23 species may possibly be generated and/or stabilized by the interaction with copurified proteins. Using different mutants of Dictyostelium NDPK it was shown that the protein phosphotransferase activity depends on the same active site as the NDPK activity. A phosphotransfer mechanism analogous to that of protein-histidine kinases is proposed, involving a high-energy phosphohistidine intermediate. Furthermore, the novel Nm23 function is compared with an apparently similar protein phosphotransferase activity which was observed previously with partially purified NDPK from different plant species.

摘要

已鉴定出两个人类nm23基因,分别命名为nm23-H1和nm23-H2,它们分别编码88%相同的核苷二磷酸激酶(NDPK)A和NDPK B多肽。nm23-H1基因产物已被证明在抑制肿瘤转移中发挥功能作用。Nm23蛋白/NDPK在整个进化过程中高度保守,参与控制各种物种的细胞分化和发育,但其潜在机制仍不清楚。最近鉴定出的NDPK B的NDPK活性和DNA结合活性都不能令人满意地解释Nm23的调节功能。本研究提供的证据表明,当存在非变性量的尿素时,纯化的Nm23蛋白能够将磷酸基团转移到其他蛋白质上。发现这种新的Nm23/NDPK活性对丝氨酸和苏氨酸残基具有特异性,底物蛋白的转磷酸化按化学计量发生。由于不存在底物周转,这种新功能被称为蛋白质磷酸转移酶活性而非蛋白激酶活性。结果表明,尿素刺激NDPK与其他蛋白质的相互作用。在存在尿素的情况下,使用从人、果蝇、酵母和盘基网柄菌中纯化的NDPK制剂获得了相同的磷蛋白模式。从人红细胞中部分纯化的NDPK产生了类似的磷酸化模式,与尿素添加无关,且也按化学计量起作用。在该制剂中,Nm23物种的蛋白质磷酸转移酶活性可能通过与共纯化蛋白质的相互作用而产生和/或稳定。使用盘基网柄菌NDPK的不同突变体表明,蛋白质磷酸转移酶活性与NDPK活性依赖于相同的活性位点。提出了一种类似于蛋白质组氨酸激酶的磷酸转移机制,涉及高能磷酸组氨酸中间体。此外,将Nm23的新功能与先前在来自不同植物物种的部分纯化的NDPK中观察到的明显相似的蛋白质磷酸转移酶活性进行了比较。

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