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Endoplasmic reticulum-associated degradation and disposal of misfolded GPI-anchored proteins in Trypanosoma brucei

机译:内质网相关的降解和处置错误的GPI锚定蛋白在锥虫瘤Brucei中

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摘要

Misfolded secretory proteins are retained by endoplasmic reticulum quality control (ERQC) and degraded in the proteasome by ER-associated degradation (ERAD). However, in yeast and mammals, misfolded glycosylphosphatidylinositol (GPI)-anchored proteins are preferentially degraded in the vacuole/lysosome. We investigate this process in the divergent eukaryotic pathogen Trypanosoma brucei using a misfolded GPI-anchored subunit (HA: E6) of the trypanosome transferrin receptor. HA: E6 is N-glycosylated and GPI-anchored and accumulates in the ER as aggregates. Treatment with MG132, a proteasome inhibitor, generates a smaller protected polypeptide (HA: E6*), consistent with turnover in the proteasome. HA: E6* partitions between membrane and cytosol fractions, and both pools are proteinase K-sensitive, indicating cytosolic disposition of membrane-associated HA: E6*. HA: E6* is de-Nglycosylated and has a full GPI-glycan structure from which dimyristoylglycerol has been removed, indicating that complete GPI removal is not a prerequisite for proteasomal degradation. However, HA: E6* is apparently not ubiquitin-modified. The trypanosome GPI anchor is a forward trafficking signal; thus the dynamic tension between ERQC and ER exit favors degradation by ERAD. These results differ markedly from the standard eukaryotic model systems and may indicate an evolutionary advantage related to pathogenesis.
机译:被包围的分泌蛋白通过内质网质量控制(ERQC)保留并通过ER相关的降解(ERAD)在蛋白酶中降解。然而,在酵母和哺乳动物中,错误地折叠的糖基磷脂酰肌醇(GPI)-Achidered蛋白优先在液泡/溶酶体中降解。我们使用锥虫组体转移素受体的错误折叠的GPI锚定亚基(HA:E6)来研究分歧真核病原体锥虫瘤Brucei的这种过程。 HA:E6是N-糖基化和GPI锚固的并且在ER中累积为聚集体。用Mg132处理蛋白酶体抑制剂,产生较小的受保护多肽(HA:E6 *),与蛋白酶体中的周转一致。 HA:E6 *膜和细胞溶质级分的划分,两个游泳池都是蛋白酶K敏感,表明膜相关HA的细胞溶质布置:E6 *。 HA:E6 *是De-Nglycosylated并具有从中除去Dimyristoylglycerol的全GPI-聚糖结构,表明完全的GPI除去不是蛋白酶体降解的先决条件。然而,HA:E6 *显然不是泛素改性的。锥虫GPI锚点是前部贩运信号;因此,ERQC和ER出口之间的动态张力通过ERAD劣化。这些结果与标准真核生物模型系统显着不同,并且可以表明与发病机制相关的进化优势。

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