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磷酸化酶激酶的自磷酸化。二价金属阳离子和核苷酸依赖性。

Autophosphorylation of phosphorylase kinase. Divalent metal cation and nucleotide dependency.

作者信息

Hallenbeck P C, Walsh D A

出版信息

J Biol Chem. 1983 Nov 25;258(22):13493-501.

PMID:6643437
Abstract

This study reports on the divalent metal ion specificity for phosphorylase kinase autophosphorylation and, in particular, provides a comparison between the efficacy of Mg2+ and Mn2+ in this role. As well as requiring Ca2+ plus divalent metal ion-ATP2- as substrate, both phosphorylase kinase autoactivation and phosphorylase conversion are additionally modulated by divalent cations. However, these reactions are affected differently by different ions. Phosphorylase kinase-catalyzed phosphorylase conversion is maximally enhanced by a 4- to 10-fold lower concentration of Mg2+ than is autocatalysis and, whereas both reactions are stimulated by Mg2+, autophosphorylation is activated by Mn2+, Co2+, and Ni2+ while phosphorylase a formation is inhibited. This difference may be due to an effect of free Mn2+ on phosphorylase rather than the inability of phosphorylase kinase to use MnATP as a substrate when catalyzing phosphorylase conversion since Mn2+, when added at a level which minimally decreases [MgATP], greatly inhibits phosphorylase phosphorylation. The interactions of Mn2+ with phosphorylase kinase are different from those of Mg2+. Not only are the effects of these ions on phosphorylase activation opposite, but they also provoke different patterns of subunit phosphorylation during phosphorylase kinase autocatalysis. With Mn2+, the time lag of phosphorylation of both the alpha and beta subunits of phosphorylase kinase in autocatalysis is diminished in comparison to what is observed with Mg2+, and the beta subunit is only phosphorylated to a maximum of 1 mol/mol of subunit. With both Mg2+ and Mn2+ the alpha subunit is phosphorylated to a level in excess of 3 mol/mol, a level similar to that obtained for beta subunit phosphorylation in the presence of Mg2+. The support of autophosphorylation by both Co2+ and Ni2+ has characteristics similar to those observed with Mn2+. Although Mn2+ stimulation of autophosphorylation occurs at levels much higher than normal physiological levels, the possible potential of phosphorylase kinase autophosphorylation as a control mechanism is illustrated by the 80- to 100-fold activation that occurs in the presence of Mn2+, a level far in excess of the enzyme activity change normally seen with covalent modification. Autophosphorylation of phosphorylase kinase demonstrates a Km for Mg X ATP2- of 27.7 microM and a Ka for Mg2+ of 3.1 mM. The reaction mechanism of autophosphorylation is intramolecular. This latter observation may indicate that phosphorylase kinase autocatalysis could be of potential physiological relevance and could occur with equal facility in cells containing either constitutively high or low levels of this enzyme.

摘要

本研究报告了磷酸化酶激酶自磷酸化对二价金属离子的特异性,特别是比较了Mg2+和Mn2+在此过程中的功效。除了需要Ca2+加二价金属离子-ATP2-作为底物外,磷酸化酶激酶的自激活和磷酸化酶转化还受到二价阳离子的额外调节。然而,这些反应受不同离子的影响不同。磷酸化酶激酶催化的磷酸化酶转化在Mg2+浓度比自催化低4至10倍时达到最大增强,虽然两种反应都受Mg2+刺激,但自磷酸化由Mn2+、Co2+和Ni2+激活,而磷酸化酶a的形成受到抑制。这种差异可能是由于游离Mn2+对磷酸化酶的作用,而不是磷酸化酶激酶在催化磷酸化酶转化时不能使用MnATP作为底物,因为当以最小降低[MgATP]的水平添加Mn2+时,会极大地抑制磷酸化酶的磷酸化。Mn2+与磷酸化酶激酶的相互作用不同于Mg2+。这些离子对磷酸化酶激活的作用不仅相反,而且在磷酸化酶激酶自催化过程中还引发不同的亚基磷酸化模式。与Mg2+相比,Mn2+存在时,磷酸化酶激酶自催化过程中α和β亚基磷酸化的时间滞后缩短,β亚基最多仅磷酸化1摩尔/摩尔亚基。在Mg2+和Mn2+存在下,α亚基磷酸化水平均超过3摩尔/摩尔,这一水平与Mg2+存在时β亚基磷酸化水平相似。Co2+和Ni2+对自磷酸化的支持具有与Mn2+相似的特征。虽然Mn2+对自磷酸化的刺激发生在远高于正常生理水平的浓度下,但在Mn2+存在下发生的80至100倍激活说明了磷酸化酶激酶自磷酸化作为一种控制机制的潜在可能性,这一激活水平远远超过了通常通过共价修饰看到的酶活性变化。磷酸化酶激酶的自磷酸化显示对Mg X ATP2-的Km为27.7 microM,对Mg2+的Ka为3.1 mM。自磷酸化的反应机制是分子内的。后一观察结果可能表明,磷酸化酶激酶自催化可能具有潜在的生理相关性,并且在含有该酶组成型高水平或低水平的细胞中可能同样容易发生。

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