首页> 外文期刊>FEBS Letters >A RING‐H2 finger motif is essential for the function of Der3/Hrd1 in endoplasmic reticulum associated protein degradation in the yeast Saccharomyces cerevisiae
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A RING‐H2 finger motif is essential for the function of Der3/Hrd1 in endoplasmic reticulum associated protein degradation in the yeast Saccharomyces cerevisiae

机译:RING-H2手指基序对于啤酒酵母中内质网相关蛋白降解中Der3 / Hrd1的功能至关重要

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>Der3/Hrd1p is a protein required for proper degradation of misfolded soluble and integral membrane proteins in the endoplasmic reticulum (ER) in the yeast Saccharomyces cerevisiae. It is located to the ER membrane and consists of a N-terminal hydrophobic region with several transmembrane domains and a large hydrophilic tail oriented to the ER lumen containing a RING finger motif of the H2 class. We had previously reported that a truncated version of Der3p, Der3ΔRp, lacking 111 residues of the lumenal domain including the RING finger motif is not functional, suggesting the involvement of this domain in the function of the protein in ER degradation. We substantiated this hypothesis by constructing a mutated form of Der3/Hrd1p replacing the last cysteine of the motif with a serine. This mutated Der3C399S protein maintains the correct localization and topology of the wild-type protein, however, is not able to support the degradation of soluble and integral membrane proteins. This point mutation altering the RING-H2 motif behaves as a dominant allele especially when overexpressed from a 2μ plasmid by this increasing the half-life of CPY* more than 6-fold when compared with a wild-type strain. Furthermore co-expression of der3C399S with the wild-type allele is also able to partially suppress the temperature sensitive growth phenotype of a sec61-2 strain. Finally we have shown that overexpression of Hrd3p suppresses the dominant effect of the der3C399S mutation. These results could be explained by a competition between wild-type and mutant Der3 protein for the interaction with some other component of the ER degradation pathway, probably Hrd3p.
机译:> Der3 / Hrd1p是适当降解酵母 Saccharomyces cerevisiae 内质网(ER)中错误折叠的可溶性膜和整合膜蛋白所需的蛋白质。它位于ER膜上,由一个带有几个跨膜结构域的N端疏水区和一个大的亲水尾巴组成,该亲水性尾巴指向包含H2​​类RING指基序的ER腔。我们先前曾报道过,缺少111个残腔(包括RING指基序)的腔结构域的Der3p截短形式Der3ΔRp不起作用,表明该结构域参与了ER降解中蛋白质的功能。我们通过构建突变形式的Der3 / Hrd1p证实了这一假说,该突变形式用丝氨酸代替了基序的最后一个半胱氨酸。这种突变的Der3 C399S 蛋白可以保持野生型蛋白的正确定位和拓扑,但是不能支持可溶性膜蛋白和整合膜蛋白的降解。改变RING-H2基序的这一点突变表现为优势等位基因,尤其是当从2μ质粒过度表达时,与野生型菌株相比,CPY *的半衰期延长了6倍以上。此外, der3 C399S 与野生型等位基因的共表达还可以部分抑制 sec61-2 的温度敏感型生长表型。应变。最后,我们证明了Hrd3p的过表达抑制了 der3 C399S 突变的显性作用。这些结果可以用野生型和突变型Der3蛋白之间的竞争来与ER降解途径的其他某些成分(可能是Hrd3p)相互作用进行解释。

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