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Tyrosinase Degradation Is Prevented when EDEM1 Lacks the Intrinsically Disordered Region

机译:当EDEm1没啥本质混晶区域酪氨酸酶降解防止

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摘要

EDEM1 is a mannosidase-like protein that recruits misfolded glycoproteins from the calnexin/calreticulin folding cycle to downstream endoplasmic reticulum associated degradation (ERAD) pathway. Here, we investigate the role of EDEM1 in the processing of tyrosinase, a tumour antigen overexpressed in melanoma cells. First, we analyzed and modeled EDEM1 major domains. The homology model raised on the crystal structures of human and Saccharomyces cerevisiae ER class I α1,2-mannosidases reveals that the major mannosidase domain located between aminoacids 121–598 fits with high accuracy. We have further identified an N-terminal region located between aminoacids 40–119, predicted to be intrinsically disordered (ID) and susceptible to adopt multiple conformations, hence facilitating protein-protein interactions. To investigate these two domains we have constructed an EDEM1 deletion mutant lacking the ID region and a triple mutant disrupting the glycan-binding domain and analyzed their association with tyrosinase. Tyrosinase is a glycoprotein partly degraded endogenously by ERAD and the ubiquitin proteasomal system. We found that the degradation of wild type and misfolded tyrosinase was enhanced when EDEM1 was overexpressed. Glycosylated and non-glycosylated mutants co-immunoprecipitated with EDEM1 even in the absence of its intact mannosidase-like domain, but not when the ID region was deleted. In contrast, calnexin and SEL 1L associated with the deletion mutant. Our data suggest that the ID region identified in the N-terminal end of EDEM1 is involved in the binding of glycosylated and non-glycosylated misfolded proteins. Accelerating tyrosinase degradation by EDEM1 overexpression may lead to an efficient antigen presentation and enhanced elimination of melanoma cells.
机译:EDEM1是一种甘露糖苷酶样蛋白,可将错误折叠的糖蛋白从钙连蛋白/钙网蛋白折叠周期募集到下游内质网相关降解(ERAD)途径。在这里,我们研究EDEM1在酪氨酸酶(一种在黑素瘤细胞中过表达的肿瘤抗原)的加工过程中的作用。首先,我们对EDEM1主要域进行了分析和建模。在人类和酿酒酵母ER类Iα1,2-甘露糖苷酶的晶体结构上建立的同源性模型揭示,位于121-598位氨基酸之间的主要甘露糖苷酶结构域具有很高的拟合度。我们进一步确定了位于氨基酸40-119之间的N末端区域,预计其本质上是无序的(ID)并易于采用多种构象,从而促进了蛋白质与蛋白质的相互作用。为了研究这两个结构域,我们构建了一个缺少ID区的EDEM1缺失突变体和一个破坏聚糖结合域的三重突变体,并分析了它们与酪氨酸酶的关系。酪氨酸酶是一种糖蛋白,部分被ERAD和泛素蛋白酶体系统内源降解。我们发现当EDEM1过表达时,野生型和错误折叠的酪氨酸酶的降解作用增强。糖基化和非糖基化的突变体即使没有完整的甘露糖苷酶样结构域也可以与EDEM1共免疫沉淀,但是当ID区缺失时则不能。相反,钙粘蛋白和SEL 1L与缺失突变体相关。我们的数据表明,在EDEM1 N末端鉴定出的ID区参与糖基化和非糖基化错误折叠蛋白的结合。 EDEM1过表达加速酪氨酸酶降解可能导致有效的抗原呈递和增强的黑色素瘤细胞消除。

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