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二磷酸肌醇五磷酸激酶的鉴定与纯化,该激酶可合成焦磷酸肌醇双(二磷酸)肌醇四磷酸。

Identification and purification of diphosphoinositol pentakisphosphate kinase, which synthesizes the inositol pyrophosphate bis(diphospho)inositol tetrakisphosphate.

作者信息

Huang C F, Voglmaier S M, Bembenek M E, Saiardi A, Snyder S H

机构信息

Department of Neuroscience, Pharmacology & Molecular Sciences, and Psychiatry, Johns Hopkins University School of Medicine, Baltimore, Maryland 21205, USA.

出版信息

Biochemistry. 1998 Oct 20;37(42):14998-5004. doi: 10.1021/bi981920l.

Abstract

Diphosphoinositol pentakisphosphate (PP-IP5) and bis(diphospho)inositol tetrakisphosphate (bis-PP-IP4) were recently identified as inositol phosphates which possess pyrophosphate bonds. The molecular mechanisms that regulate the cellular levels of these compounds are not yet characterized. To pursue this question, we have previously purified an inositol hexakisphosphate (IP6) kinase from rat brain supernatants [Voglmaier, S. M., et al. (1996) Proc. Natl. Acad. Sci. U.S.A. 93, 4305-4310]. We now report the identification and purification of another novel kinase, diphosphoinositol pentakisphosphate (PP-IP5) kinase, which uses PP-IP5 as a substrate to form bis(diphospho)inositol tetrakisphosphate (bis-PP-IP4) in soluble fractions of rat forebrain. The purified protein, a monomer of 56 kDa, displays high affinity (Km = 0.7 microM) and selectivity for PP-IP5 as a substrate. The purified enzyme also can transfer a phosphate from bis-PP-IP4 to ADP to form ATP. This ATP synthase activity is an indication of the high phosphoryl group transfer potential of bis-PP-IP4 and may represent a physiological role for PP-IP5 and bis-PP-IP4.

摘要

二磷酸肌醇五磷酸(PP-IP5)和双(二磷酸)肌醇四磷酸(双-PP-IP4)最近被鉴定为具有焦磷酸键的肌醇磷酸。调节这些化合物细胞水平的分子机制尚未明确。为了探究这个问题,我们之前从大鼠脑匀浆上清液中纯化了一种肌醇六磷酸(IP6)激酶[Voglmaier, S. M., 等人(1996年)美国国家科学院院刊93, 4305 - 4310]。我们现在报告另一种新型激酶——二磷酸肌醇五磷酸(PP-IP5)激酶的鉴定和纯化,该激酶以PP-IP5为底物,在大鼠前脑的可溶性组分中形成双(二磷酸)肌醇四磷酸(双-PP-IP4)。纯化后的蛋白是一个56 kDa的单体,对PP-IP5作为底物表现出高亲和力(Km = 0.7 microM)和选择性。纯化后的酶还能将双-PP-IP4中的一个磷酸基团转移到ADP上形成ATP。这种ATP合酶活性表明双-PP-IP4具有高磷酸基团转移潜力,可能代表了PP-IP5和双-PP-IP4的一种生理作用。

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