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酿酒酵母线粒体的膜结合型和可溶性多磷酸酶:鉴定与比较特征分析

Membrane-bound and soluble polyphosphatases of mitochondria of Saccharomyces cerevisiae: identification and comparative characterization.

作者信息

Lichko L, Kulakovskaya T, Kulaev I

机构信息

Institute of Biochemistry and Physiology of Microorganisms, Russian Academy of Sciences, 142292 Pushchino, Moscow Region, Russia.

出版信息

Biochim Biophys Acta. 1998 Jul 17;1372(2):153-62. doi: 10.1016/s0005-2736(98)00013-3.

Abstract

Isolated mitochondria of Saccharomyces cerevisiae possess polyphosphatases insensitive to a number of inhibitors of ATPase and pyrophosphatase of the same organelles and differing from the last two by neutral pH optima and molecular masses. After subfractionation of mitochondria, the polyphosphatase activity is distributed among the membrane and soluble preparations. The membrane-bound and soluble polyphosphatase activities are represented by different enzymes distinguished by molecular masses, substrate specificity, Km values, and relation to mono- and divalent cations. The membrane-bound polyphosphatases have molecular masses of 120 and 76 kDa, and the soluble one of about 36 kDa. All three enzymes appear to have a monomeric structure. The soluble polyphosphatase activity is stimulated by divalent cations in contrast to the membrane-bound one which is inhibited by the same cations, including Mg2+. Monovalent cations do not actually change the activity of the soluble enzyme, but stimulate it in the membrane preparation. Specific activities for the hydrolysis of polyphosphates with average chain lengths of 9-188 phosphate residues increase under increasing degree of substrate polymerization in the membrane preparation and are actually unchanged in the soluble one. The affinity of the soluble enzyme to polyphosphates is 5-10 times higher than that of the membrane-bound polyphosphatases.

摘要

酿酒酵母的分离线粒体含有对同一细胞器的多种ATP酶和焦磷酸酶抑制剂不敏感的多磷酸酶,其最适pH值为中性,分子量与后两者不同。线粒体亚分级分离后,多磷酸酶活性分布于膜和可溶性制剂中。膜结合型和可溶性多磷酸酶活性由不同的酶代表,这些酶在分子量、底物特异性、Km值以及与单价和二价阳离子的关系上有所不同。膜结合型多磷酸酶的分子量为120和76 kDa,可溶性多磷酸酶的分子量约为36 kDa。这三种酶似乎都具有单体结构。与膜结合型多磷酸酶不同,可溶性多磷酸酶活性受二价阳离子刺激,而膜结合型多磷酸酶则受包括Mg2+在内的相同阳离子抑制。单价阳离子实际上不会改变可溶性酶的活性,但会刺激膜制剂中的活性。在膜制剂中,随着底物聚合度的增加,平均链长为9 - 188个磷酸残基的多磷酸盐水解的比活性增加,而在可溶性制剂中实际上没有变化。可溶性酶对多磷酸盐的亲和力比膜结合型多磷酸酶高5 - 10倍。

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