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无机磷酸盐和钙离子对肌肉磷酸化酶b激酶活性的调节

Regulation of muscle phosphorylase b kinase activity by inorganic phosphate and calcium ions.

作者信息

Sacktor B, Wu N C, Lescure O, Reed W D

出版信息

Biochem J. 1974 Mar;137(3):535-42. doi: 10.1042/bj1370535.

Abstract

The regulation of the activity of blowfly flight-muscle phosphorylase b kinase by P(i) and Ca(2+) was studied, and the actions of these effectors on the kinases from insect flight and rabbit leg muscles were compared. Preincubation of blowfly kinase with P(i) increased activity severalfold. The effect was concentration-dependent, with an apparent K(m) of about 20mm, and time-dependent, requiring at least 10min for maximal activation. Neither ATP nor cyclic AMP was needed, suggesting that a protein kinase may not be involved. Maximal activation of the insect kinase required Mg(2+) in addition to P(i). The apparent K(m) for Mg(2+) was 3mm. Rabbit leg-muscle phosphorylase b kinase was slightly inhibited, rather than stimulated, by P(i), and was strongly inhibited by K(+), Na(+) and Li(+). At physiological concentrations, Ca(2+) activated the phosphorylase b kinases from both blowfly flight and rabbit leg muscles. However, the responses to Ca(2+) of the enzymes from the two tissues were different. The mammalian kinase had virtually no activity in the absence of Ca(2+), and showed a large increase in activity over a narrow range of Ca(2+) concentrations. Flight-muscle kinase had appreciable activity in the absence of Ca(2+), and had a smaller increase over a wide range of Ca(2+) concentration. The concentrations of Ca(2+) required for half-activation were 0.1 and 1mum for the blowfly and rabbit enzymes respectively. The pH-activity profiles of the non-activated, phosphate- and Ca(2+)-activated kinase revealed considerable enhancement of activity with little, if any, increase in the ratio of activities at pH6.8 to those at 8.2. These results are discussed in relation to the mechanism coupling contraction to glycogenolysis and to the biochemical distinction between asynchronous and synchronous types of muscle.

摘要

研究了无机磷酸盐(P(i))和钙离子(Ca(2+))对绿头苍蝇飞行肌磷酸化酶b激酶活性的调节作用,并比较了这些效应物对昆虫飞行肌和兔腿肌激酶的作用。将绿头苍蝇激酶与P(i)预孵育可使活性增加数倍。该效应呈浓度依赖性,表观米氏常数(K(m))约为20mM,且呈时间依赖性,最大激活需要至少10分钟。既不需要三磷酸腺苷(ATP)也不需要环磷酸腺苷(cAMP),这表明可能不涉及蛋白激酶。除P(i)外,昆虫激酶的最大激活还需要镁离子(Mg(2+))。Mg(2+)的表观K(m)为3mM。兔腿肌磷酸化酶b激酶受到P(i)的轻微抑制而非刺激,并且受到钾离子(K(+))、钠离子(Na(+))和锂离子(Li(+))的强烈抑制。在生理浓度下,Ca(2+)激活绿头苍蝇飞行肌和兔腿肌的磷酸化酶b激酶。然而,两种组织的酶对Ca(2+)的反应不同。哺乳动物激酶在没有Ca(2+)时几乎没有活性,并且在狭窄的Ca(2+)浓度范围内活性大幅增加。飞行肌激酶在没有Ca(2+)时具有可观的活性,并且在较宽的Ca(2+)浓度范围内活性增加较小。绿头苍蝇和兔酶半激活所需的Ca(2+)浓度分别为0.1和1μM。未激活、磷酸盐激活和Ca(2+)激活的激酶的pH-活性曲线显示,活性有相当大的增强,而在pH6.8时的活性与在8.2时的活性之比几乎没有增加(如果有的话)。结合收缩与糖原分解的机制以及异步和同步类型肌肉的生化差异对这些结果进行了讨论。

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