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Role of Drosophila EDEMs in the degradation of the alpha-1-antitrypsin Z variant

机译:果蝇EDEM在α-1-抗胰蛋白酶Z变体降解中的作用

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摘要

The synthesis of proteins in the endoplasmic reticulum (ER) that exceeds the protein folding capacity of this organelle is a frequent cause of cellular dysfunction and disease. An example of such a disease is alpha-1-antitrypsin (A1AT) deficiency, caused by destabilizing mutations in this glycoprotein. It is considered that the mutant proteins are recognized in the ER by lectins and are subsequently degraded through the proteasome, leading to a deficiency in this enzyme in the afflicted patients. We previously established a Drosophila model of this disease by overexpressing the null Hong Kong (NHK) allele of this gene and found that the Drosophila lectin, ER degradation-enhancing α-mannosidase-like protein 2 (EDEM2), can accelerate the degradation of A1AT when overexpressed. NHK is a rare allele, and in this study, we investigated in depth the mechanisms through which Drosophila EDEMs affect the degradation of the Z variant, which is the predominant disease allele. Specifically, we report that the Z allele does not activate ER stress signaling as prominently as the NHK allele, but similarly requires both Drosophila EDEM1 and EDEM2 for the degradation of the protein. We demonstrate that EDEMs are required for their ubiquitination, and without EDEMs, glycosylated A1AT mutants accumulate in cells. These results support the role of the EDEM-mediated ubiquitination of the alpha-1-antitrypsin Z (ATZ) allele, and establish a Drosophila model for the study of this protein and disease.
机译:超过此细胞器的蛋白质折叠能力的内质网(ER)中的蛋白质合成是细胞功能障碍和疾病的常见原因。这种疾病的一个例子是由该糖蛋白中不稳定的突变引起的α-1-抗胰蛋白酶(A1AT)缺乏。认为突变蛋白在凝集素中在ER中被识别,并随后通过蛋白酶体降解,导致患病患者中该酶的缺乏。我们之前通过过表达该基因的无效香港(NHK)等位基因建立了这种疾病的果蝇模型,并发现果蝇凝集素(ER降解增强型α-甘露糖苷酶样蛋白2(EDEM2))可以加速A1AT的降解当过分表达。 NHK是一种罕见的等位基因,在这项研究中,我们深入研究了果蝇EDEM通过哪些机制影响Z变体的降解,Z变体是主要的疾病等位基因。具体来说,我们报道Z等位基因没有像NHK等位基因那样显着激活ER应激信号传导,但是类似地需要果蝇EDEM1和EDEM2来降解蛋白质。我们证明,EDEMs是其泛素化所必需的,没有EDEMs,糖基化的A1AT突变体会在细胞中积累。这些结果支持EDEM介导的α-1-抗胰蛋白酶Z(ATZ)等位基因的泛素化作用,并建立了果蝇模型来研究这种蛋白质和疾病。

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