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ERp44介导内质网中生成甲酰甘氨酸的酶的非硫醇依赖性滞留。

ERp44 mediates a thiol-independent retention of formylglycine-generating enzyme in the endoplasmic reticulum.

作者信息

Mariappan Malaiyalam, Radhakrishnan Karthikeyan, Dierks Thomas, Schmidt Bernhard, von Figura Kurt

机构信息

Zentrum für Biochemie und Molekulare Zellbiologie, Abteilung Biochemie II, Universität Göttingen, Heinrich-Düker-Weg 12, Göttingen, Germany.

出版信息

J Biol Chem. 2008 Mar 7;283(10):6375-83. doi: 10.1074/jbc.M709171200. Epub 2008 Jan 4.

Abstract

Inside the endoplasmic reticulum (ER) formylglycine-generating enzyme (FGE) catalyzes in newly synthesized sulfatases the post-translational oxidation of a specific cysteine. Thereby formylglycine is generated, which is essential for sulfatase activity. Here we show that ERp44 interacts with FGE forming heterodimeric and, to a lesser extent, also heterotetrameric and octameric complexes, which are stabilized through disulfide bonding between cysteine 29 of ERp44 and cysteines 50 and 52 in the N-terminal region of FGE. ERp44 mediates FGE retrieval to the ER via its C-terminal RDEL signal. Increasing ERp44 levels by overexpression enhances and decreasing ERp44 levels by silencing reduces ER retention of FGE. Suppressing disulfide bonding by mutating the critical cysteines neither abrogates ERp44.FGE complex formation nor interferes with ERp44-mediated retention of FGE, indicating that noncovalent interactions between ERp44 and FGE are sufficient to mediate ER retention. The N-terminal region of FGE harboring Cys(50) and Cys(52) is dispensible for catalytic activity in vitro but required for FGE-mediated activation of sulfatases in vivo. This in vivo activity is affected neither by overexpression nor by silencing of ERp44, indicating that a further ER component interacting with the N-terminal extension of FGE is critical for sulfatase activation.

摘要

在内质网(ER)中,生成甲酰甘氨酸的酶(FGE)催化新合成的硫酸酯酶中特定半胱氨酸的翻译后氧化。由此产生甲酰甘氨酸,这对硫酸酯酶活性至关重要。在此我们表明,ERp44与FGE相互作用,形成异二聚体,在较小程度上还形成异四聚体和八聚体复合物,这些复合物通过ERp44的半胱氨酸29与FGE N端区域的半胱氨酸50和52之间的二硫键得以稳定。ERp44通过其C端的RDEL信号介导FGE返回内质网。通过过表达增加ERp44水平会增强,而通过沉默降低ERp44水平则会减少FGE在内质网的保留。通过突变关键半胱氨酸来抑制二硫键形成,既不会消除ERp44.FGE复合物的形成,也不会干扰ERp44介导的FGE保留,这表明ERp44与FGE之间的非共价相互作用足以介导内质网保留。FGE含有半胱氨酸(50)和半胱氨酸(52)的N端区域在体外对催化活性是可有可无的,但在体内对FGE介导的硫酸酯酶激活是必需的。这种体内活性不受ERp44过表达或沉默的影响,这表明与FGE N端延伸相互作用的另一种内质网成分对于硫酸酯酶激活至关重要。

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