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Roles of the juxtamembrane and extracellular domains of angiotensin-converting enzyme in ectodomain shedding.

机译:血管紧张素转换酶的近膜和胞外域在胞外域脱落中的作用。

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摘要

Angiotensin-converting enzyme (ACE) is one of a growing number of integral membrane proteins that is shed from the cell surface through proteolytic cleavage by a secretase. To investigate the requirements for ectodomain shedding, we replaced the glycosylphosphatidylinositol addition sequence in membrane dipeptidase (MDP) - a membrane protein that is not shed - with the juxtamembrane stalk, transmembrane (TM) and cytosolic domains of ACE. The resulting construct, MDP-STM(ACE), was targeted to the cell surface in a glycosylated and enzymically active form, and was shed into the medium. The site of cleavage in MDP-STM(ACE) was identified by MS as the Arg(374)-Ser(375) bond, corresponding to the Arg(1203)-Ser(1204) secretase cleavage site in somatic ACE. The release of MDP-STM(ACE) and ACE from the cells was inhibited in an identical manner by batimastat and two other hydroxamic acid-based zinc metallosecretase inhibitors. In contrast, a construct lacking the juxtamembrane stalk, MDP-TM(ACE), although expressed at the cell surface in an enzymically active form, was not shed, implying that the juxtamembrane stalk is the critical determinant of shedding. However, an additional construct, ACEDeltaC, in which the N-terminal domain of somatic ACE was fused to the stalk, TM and cytosolic domains, was also not shed, despite the presence of a cleavable stalk, implying that in contrast with the C-terminal domain, the N-terminal domain lacks a signal required for shedding. These data are discussed in the context of two classes of secretases that differ in their requirements for recognition of substrate proteins.
机译:血管紧张素转换酶(ACE)是通过分泌酶的蛋白水解切割从细胞表面脱落的越来越多的整合膜蛋白之一。为了研究胞外结构域脱落的要求,我们用ACE的近膜茎,跨膜(TM)和胞质结构域取代了膜二肽酶(MDP)中的糖基磷脂酰肌醇添加序列-一种未脱落的膜蛋白。将得到的构建体MDP-STM(ACE)以糖基化和酶促活性形式靶向细胞表面,并倒入培养基中。通过MS将MDP-STM(ACE)中的切割位点鉴定为Arg(374)-Ser(375)键,对应于体细胞ACE中的Arg(1203)-Ser(1204)分泌酶切割位点。巴蒂司他和另外两种基于异羟肟酸的锌金属分泌酶抑制剂以相同的方式抑制了MDP-STM(ACE)和ACE从细胞中的释放。相比之下,缺少近膜茎的构建体MDP-TM(ACE)虽然以酶活性形式在细胞表面表达,但并未脱落,这暗示着近膜茎是脱落的关键决定因素。但是,尽管存在可切割的茎,但也没有脱落其他构建体ACEDeltaC,其中体细胞ACE的N末端结构域与茎,TM和胞质结构域融合,这暗示着与C-在末端域,N末端域缺少脱落所需的信号。在两类分泌酶的背景下讨论了这些数据,这两类分泌酶在识别底物蛋白方面的要求不同。

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