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哺乳动物中的硫酸盐激活与转运:系统组成与机制

Sulfate activation and transport in mammals: system components and mechanisms.

作者信息

Schwartz N B, Lyle S, Ozeran J D, Li H, Deyrup A, Ng K, Westley J

机构信息

Department of Pediatrics, University of Chicago Hospitals, IL 60637, USA.

出版信息

Chem Biol Interact. 1998 Feb 20;109(1-3):143-51. doi: 10.1016/s0009-2797(97)00129-4.

Abstract

Extensive studies on the mammalian sulfate-activating enzymes and PAPS translocase have enhanced our understanding of the overall pathway of sulfate activation and utilization. Isolation of the PAPS-synthesizing activities from rat chondrosarcoma and preparation of stable non-hydrolyzable analogs of APS and PAPS have facilitated the kinetic characterization of mammalian ATP sulfurylase and APS kinase. These studies provided the basis for further experimental work showing that APS, the labile intermediate product, is channeled directly between the sulfurylase and kinase active sites. The defect in the brachymorphic mutant mouse lies in this channeling mechanism, thus interfering with efficient PAPS production. The rat chondrosarcoma ATP sulfurylase and APS kinase activities, in fact, reside in a single bifunctional cytoplasmic protein, which has now been cloned and expressed. The mechanism by which PAPS reaches its sites of utilization in the Golgi lumen has also been elucidated: The PAPS translocase is a 230-kDa integral Golgi membrane protein which functions as an antiport.

摘要

对哺乳动物硫酸盐激活酶和3'-磷酸腺苷-5'-磷酰硫酸(PAPS)转位酶的广泛研究,增进了我们对硫酸盐激活和利用总体途径的理解。从大鼠软骨肉瘤中分离出PAPS合成活性,并制备了腺苷-5'-磷酸硫酸(APS)和PAPS的稳定非水解类似物,这有助于对哺乳动物ATP硫酸化酶和APS激酶进行动力学表征。这些研究为进一步的实验工作提供了基础,表明不稳定的中间产物APS在硫酸化酶和激酶活性位点之间直接进行通道运输。短尾突变小鼠的缺陷就在于这种通道运输机制,从而干扰了PAPS的高效产生。事实上,大鼠软骨肉瘤ATP硫酸化酶和APS激酶活性存在于一种单一的双功能细胞质蛋白中,该蛋白现已被克隆并表达。PAPS到达其在高尔基体内腔利用位点的机制也已阐明:PAPS转位酶是一种230 kDa的高尔基整合膜蛋白,起反向转运体的作用。

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