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在人前列环素受体的第八个α螺旋结构域(α-H8)中鉴定出一种新型内质网输出基序。

Identification of a novel endoplasmic reticulum export motif within the eighth α-helical domain (α-H8) of the human prostacyclin receptor.

作者信息

Donnellan Peter D, Kimbembe Cisca C, Reid Helen M, Kinsella B Therese

机构信息

School of Biomeolecular and Biomedical Sciences, University College Dublin, Belfield, Dublin 4, Ireland.

出版信息

Biochim Biophys Acta. 2011 Apr;1808(4):1202-18. doi: 10.1016/j.bbamem.2011.01.003. Epub 2011 Jan 9.

Abstract

The human prostacyclin receptor (hIP) undergoes agonist-dependent trafficking involving a direct interaction with Rab11a GTPase. The region of interaction was localised to a 14 residue Rab11a binding domain (RBD) within the proximal carboxyl-terminal (C)-tail domain of the hIP, consisting of Val(299)-Val(307) within the eighth helical domain (α-H8) adjacent to the palmitoylated residues at Cys(308)-Cys(311). However, the factors determining the anterograde transport of the newly synthesised hIP from the endoplasmic reticulum (ER) to the plasma membrane (PM) have not been identified. The aim of the current study was to identify the major ER export motif(s) within the hIP initially by investigating the role of Lys residues in its maturation and processing. Through site-directed and Ala-scanning mutational studies in combination with analyses of protein expression and maturation, functional analyses of ligand binding, agonist-induced intracellular signalling and confocal image analyses, it was determined that Lys(297), Arg(302) and Lys(304) located within α-H8 represent the critical determinants of a novel ER export motif of the hIP. Furthermore, while substitution of those critical residues significantly impaired maturation and processing of the hIP, replacement of the positively charged Lys with Arg residues, and vice versa, was functionally permissible. Hence, this study has identified a novel 8 residue ER export motif within the functionally important α-H8 of the hIP. This ER export motif, defined by "K/R(X)(4)K/R(X)K/R," has a strict requirement for positively charged, basic Lys/Arg residues at the 1st, 6th and 8th positions and appears to be evolutionarily conserved within IP sequences from mouse to man.

摘要

人前列环素受体(hIP)经历激动剂依赖性运输,涉及与Rab11a GTP酶的直接相互作用。相互作用区域定位于hIP近端羧基末端(C)尾域内的一个14个残基的Rab11a结合域(RBD),该区域由第八个螺旋域(α-H8)内的Val(299)-Val(307)组成,与Cys(308)-Cys(311)处的棕榈酰化残基相邻。然而,尚未确定决定新合成的hIP从内质网(ER)向质膜(PM)进行顺行运输的因素。本研究的目的是通过研究赖氨酸残基在其成熟和加工中的作用,初步确定hIP内主要的ER输出基序。通过定点和丙氨酸扫描突变研究,结合蛋白质表达和成熟分析、配体结合功能分析、激动剂诱导的细胞内信号传导和共聚焦图像分析,确定位于α-H8内的Lys(297)、Arg(302)和Lys(304)代表hIP新型ER输出基序的关键决定因素。此外,虽然这些关键残基的取代显著损害了hIP的成熟和加工,但用精氨酸残基取代带正电荷的赖氨酸,反之亦然,在功能上是可行 的。因此,本研究在hIP功能重要的α-H8内确定了一个新的8个残基的ER输出基序。这个由“K/R(X)(4)K/R(X)K/R”定义的ER输出基序,在第1、6和8位对带正电荷的碱性赖氨酸/精氨酸残基有严格要求,并且在从小鼠到人的IP序列中似乎在进化上是保守的。

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