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来自谢氏丙酸杆菌的多聚磷酸葡萄糖激酶。动力学及机制涉及连续型和非连续型反应的证明。

Polyphosphate glucokinase from Propionibacterium shermanii. Kinetics and demonstration that the mechanism involves both processive and nonprocessive type reactions.

作者信息

Pepin C A, Wood H G

出版信息

J Biol Chem. 1986 Apr 5;261(10):4476-80.

PMID:3007458
Abstract

Polyphosphate glucokinase (EC 2.7.1.63, polyphosphate glucose phosphotransferase) has been partially purified (960-fold) from Propionibacterium shermanii. Throughout the purification, the ratio of polyphosphate glucokinase activity to ATP glucokinase activity remained approximately constant at 4 to 1. It is considered that both activities are catalyzed by the same protein. The mechanism of utilization of polyphosphate by polyphosphate glucokinase was investigated using polyphosphates of limited sizes that were isolated following gel electrophoresis of commercial heterogeneous polyphosphates. The results show that with long chain polyphosphates, the reaction proceeds by a processive type mechanism, and with short polyphosphates, it is nonprocessive. The Km for polyphosphate of chain length 724 is 2 X 10(-3) microM and increases with a decrease in chain length to 3.7 X 10(-2) microM at chain length 138. Subsequently, there is a very rapid increase of Km and at chain length 30 the Km is 4.3 microM. The rapid change in Km coincides with the shift in mechanism from the processive type mechanism in which there apparently is successive phosphorylation prior to release from the enzyme to a nonprocessive process in which the polyphosphate is released from the enzyme after each transfer. During the nonprocessive process, there is preferential utilization of the longer species. The Vmax is relatively constant with shorter polyphosphates but decreases with chain lengths longer than 347. In the cell, as a consequence of the low Km, the long chain polyphosphates probably are used preferentially to phosphorylate glucose.

摘要

多聚磷酸葡萄糖激酶(EC 2.7.1.63,多聚磷酸葡萄糖磷酸转移酶)已从谢氏丙酸杆菌中部分纯化(960倍)。在整个纯化过程中,多聚磷酸葡萄糖激酶活性与ATP葡萄糖激酶活性的比值保持在约4比1的恒定水平。据认为这两种活性由同一蛋白质催化。使用通过对商业异质多聚磷酸进行凝胶电泳分离得到的有限大小的多聚磷酸,研究了多聚磷酸葡萄糖激酶利用多聚磷酸的机制。结果表明,对于长链多聚磷酸,反应通过连续型机制进行,而对于短链多聚磷酸,反应是非连续型的。链长为724的多聚磷酸的Km为2×10⁻³微摩尔,并且随着链长减少至138时增加到3.7×10⁻²微摩尔。随后,Km迅速增加,在链长为30时Km为4.3微摩尔。Km的快速变化与机制从连续型机制(在该机制中,在从酶释放之前显然存在连续磷酸化)转变为非连续型过程(在该过程中,每次转移后多聚磷酸从酶中释放)相吻合。在非连续型过程中,优先利用较长的多聚磷酸。对于较短的多聚磷酸,Vmax相对恒定,但对于链长超过347的多聚磷酸,Vmax会降低。在细胞中,由于Km较低,长链多聚磷酸可能优先用于磷酸化葡萄糖。

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