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A Highlights from MBoC Selection: Manganese-induced trafficking and turnover of GPP130 is mediated by sortilin

机译:MBoC选择的亮点:锰诱导的GPP130的贩运和营业额由sortilin介导

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摘要

Elevated, nontoxic doses of manganese (Mn) protect against Shiga toxin-1–induced cell death via down-regulation of GPP130, a cycling Golgi membrane protein that serves as an endosome-to-Golgi trafficking receptor for the toxin. Mn binds to GPP130 in the Golgi and causes GPP130 to oligomerize/aggregate, and the complexes are diverted to lysosomes. In fact, based on experiments using the self-interacting FM domain, it appears generally true that aggregation of a Golgi protein leads to its lysosomal degradation. How such oligomers are selectively sorted out of the Golgi is unknown. Here we provide evidence that Mn-induced exit of GPP130 from the trans-Golgi network (TGN) toward lysosomes is mediated by the sorting receptor sortilin interacting with the lumenal stem domain of GPP130. In contrast, FM-induced lysosomal trafficking of the Golgi protein galactosyltransferase was sortilin independent and occurred even in the absence of its native lumenal domain. Thus sortilin-dependent as well as sortilin-independent sorting mechanisms target aggregated Golgi membrane proteins for lysosomal degradation.
机译:升高的无毒剂量的锰(Mn)可通过下调GPP130(一种循环的高尔基体膜蛋白,用作毒素的内体-高尔基体运输受体)来防止志贺毒素-1诱导的细胞死亡。 Mn与高尔基体中的GPP130结合并导致GPP130寡聚/聚集,并且复合物转移至溶酶体。实际上,基于使用自相互作用FM域的实验,高尔基体蛋白的聚集会导致其溶酶体降解,这似乎是正确的。未知如何从高尔基体中有选择地挑选出这些低聚物。在这里,我们提供证据表明,Mn诱导的GPP130从反高尔基体网络(TGN)向溶酶体的退出是由与GPP130的管腔干区相互作用的分选受体sortilin介导的。相反,FM诱导的高尔基体蛋白半乳糖基转移酶的溶酶体运输是sortilin独立的,甚至在没有其天然腔结构域的情况下也发生。因此,分选蛋白依赖性和分选蛋白依赖性分选机制靶向溶酶体降解的聚集高尔基体膜蛋白。

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