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阳离子依赖性甘露糖6-磷酸受体与GGA蛋白的相互作用。

Interaction of the cation-dependent mannose 6-phosphate receptor with GGA proteins.

作者信息

Doray Balraj, Bruns Kerry, Ghosh Pradipta, Kornfeld Stuart

机构信息

Department of Internal Medicine, Washington University School of Medicine, St. Louis, Missouri 63110, USA.

出版信息

J Biol Chem. 2002 May 24;277(21):18477-82. doi: 10.1074/jbc.M201879200. Epub 2002 Mar 8.

Abstract

The GGAs (Golgi-localizing, gamma-adaptin ear homology domain, ARF-binding) are a multidomain family of proteins implicated in protein trafficking between the Golgi and endosomes. Recent evidence has established that the cation-independent (CI) and cation-dependent (CD) mannose 6-phosphate receptors (MPRs) bind specifically to the VHS domains of the GGAs through acidic cluster-dileucine motifs at the carboxyl ends of their cytoplasmic tails. However, the CD-MPR binds the VHS domains more weakly than the CI-MPR. Alignment of the C-terminal residues of the two receptors revealed a number of non-conservative differences in the acidic cluster-dileucine motifs and the flanking residues. Mutation of these residues in the CD-MPR cytoplasmic tail to the corresponding residues in the CI-MPR conferred either full binding (H63D mutant), intermediate binding (R60S), or unchanged binding (E56F/S57H) to the GGAs as determined by in vitro glutathione S-transferase pull-down assays. Furthermore, the C-terminal methionine of the CD-MPR, but not the C-terminal valine of the CI-MPR, inhibited GGA binding. Addition of four alanines to the C-terminal valine of the CI-MPR also severely reduced GGA binding, demonstrating the importance of the spacing of the acidic cluster-dileucine motif relative to the C terminus for optimal GGA interaction. Mouse L cells stably expressing CD-MPRs with mutations that enhance GGA binding sorted cathepsin D more efficiently than wild-type CD-MPR. These studies provide an explanation for the observed differences in the relative affinities of the two MPRs for the GGA proteins. Furthermore, they indicate that the GGAs participate in lysosomal enzyme sorting mediated by the CD-MPR.

摘要

GGA蛋白(高尔基体定位、γ-衔接蛋白耳同源结构域、ARF结合蛋白)是一类多结构域蛋白家族,参与高尔基体与内体之间的蛋白质转运。最近的证据表明,不依赖阳离子(CI)和依赖阳离子(CD)的甘露糖6-磷酸受体(MPR)通过其细胞质尾巴羧基末端的酸性簇-双亮氨酸基序与GGA蛋白的VHS结构域特异性结合。然而,CD-MPR与VHS结构域的结合比CI-MPR弱。两种受体C末端残基的比对显示,酸性簇-双亮氨酸基序及其侧翼残基存在一些非保守差异。通过体外谷胱甘肽S-转移酶下拉实验测定,将CD-MPR细胞质尾巴中的这些残基突变为CI-MPR中的相应残基后,与GGA蛋白的结合能力分别为完全结合(H63D突变体)、中等结合(R60S)或结合不变(E56F/S57H)。此外,CD-MPR的C末端甲硫氨酸而非CI-MPR的C末端缬氨酸会抑制GGA蛋白的结合。在CI-MPR的C末端缬氨酸上添加四个丙氨酸也会严重降低GGA蛋白的结合,这表明酸性簇-双亮氨酸基序相对于C末端的间距对于与GGA蛋白的最佳相互作用很重要。稳定表达具有增强GGA蛋白结合能力突变的CD-MPR的小鼠L细胞,比野生型CD-MPR更有效地分选组织蛋白酶D。这些研究为观察到的两种MPR对GGA蛋白相对亲和力的差异提供了解释。此外,它们表明GGA蛋白参与了由CD-MPR介导的溶酶体酶分选。

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