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酵母内质网定位的泛素连接酶Doa10的膜拓扑结构及其与人类同源物TEB4(MARCH-VI)的比较。

Membrane topology of the yeast endoplasmic reticulum-localized ubiquitin ligase Doa10 and comparison with its human ortholog TEB4 (MARCH-VI).

作者信息

Kreft Stefan G, Wang Lin, Hochstrasser Mark

机构信息

Department of Molecular Biophysics and Biochemistry, Yale University, New Haven, Connecticut 06520-8114, USA.

出版信息

J Biol Chem. 2006 Feb 24;281(8):4646-53. doi: 10.1074/jbc.M512215200. Epub 2005 Dec 22.

DOI:10.1074/jbc.M512215200
PMID:16373356
Abstract

Quality control machinery in the endoplasmic reticulum (ER) helps ensure that only properly folded and assembled proteins accumulate in the ER or continue along the secretory pathway. Aberrant proteins are retrotranslocated to the cytosol and degraded by the proteasome, a process called ER-associated degradation. Doa10, a transmembrane protein of the ER/nuclear envelope, is one of the primary ubiquitin ligases (E3s) participating in ER-associated degradation in Saccharomyces cerevisiae. Here we report the membrane organization of the 1319-residue Doa10 polypeptide. The topology was determined by fusing a dual-topology reporter after 16 different Doa10 fragments. Our results indicate that Doa10 contains 14 transmembrane helices (TMs). Based on protease digestion of yeast microsomes, both the N-terminal RING-CH domain and the C terminus face the cytosol. Notably, the experimentally derived topology was not predicted correctly by any of the generally available TM prediction algorithms. Bioinformatic analysis and in silico mutagenesis guided the topological studies through problematic regions. The conserved TD domain in Doa10 includes three TMs. These TMs might function in cofactor binding or substrate recognition, or they might be part of a retrotranslocation channel. The Derlins were previously proposed to provide such channels, but we show that the two yeast Derlins are not required for degradation of Doa10 membrane substrates, as was found before for the Sec61 translocon. Finally, we provide evidence that the likely human Doa10 ortholog, TEB4 (MARCH-VI), adopts a topology similar to that of Doa10.

摘要

内质网(ER)中的质量控制机制有助于确保只有正确折叠和组装的蛋白质在内质网中积累或继续沿着分泌途径运输。异常蛋白质会被逆向转运到细胞质中,并被蛋白酶体降解,这一过程称为内质网相关降解(ERAD)。Doa10是内质网/核膜的一种跨膜蛋白,是参与酿酒酵母内质网相关降解的主要泛素连接酶(E3)之一。在此,我们报告了1319个氨基酸残基的Doa10多肽的膜结构组织。通过在16个不同的Doa10片段后融合双拓扑报告基因来确定其拓扑结构。我们的结果表明,Doa10包含14个跨膜螺旋(TM)。基于酵母微粒体的蛋白酶消化实验,N端的RING-CH结构域和C端都面向细胞质。值得注意的是,任何通用的跨膜预测算法都没有正确预测出实验得出的拓扑结构。生物信息学分析和计算机诱变引导了对有问题区域的拓扑研究。Doa10中保守的TD结构域包含三个跨膜螺旋。这些跨膜螺旋可能在辅因子结合或底物识别中发挥作用,或者它们可能是逆向转运通道的一部分。之前有人提出Derlin蛋白可提供这样的通道,但我们发现,与Sec61转运体之前的情况一样,酵母中的两种Derlin蛋白对于Doa1对应的膜底物的降解不是必需的。最后,我们提供证据表明,人类中可能的Doa10直系同源物TEB4(MARCH-VI)具有与Doa10相似的拓扑结构。

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