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依赖于 Rsp5 的内吞作用和砷酸盐转运蛋白 Acr3 的降解需要其 N 端酸性尾巴作为内吞分选信号和与 arrestin 相关的泛素连接酶衔接子。

Rsp5-dependent endocytosis and degradation of the arsenite transporter Acr3 requires its N-terminal acidic tail as an endocytic sorting signal and arrestin-related ubiquitin-ligase adaptors.

机构信息

Institute of Experimental Biology, University of Wroclaw, 50-328 Wroclaw, Poland.

Institute of Experimental Biology, University of Wroclaw, 50-328 Wroclaw, Poland.

出版信息

Biochim Biophys Acta Biomembr. 2019 May 1;1861(5):916-925. doi: 10.1016/j.bbamem.2019.02.004. Epub 2019 Feb 15.

Abstract

The yeast plasma membrane transporter Acr3 mediates efflux of toxic arsenite and antimonite. Here, we investigated the mechanisms of Acr3 turnover. We found that after arrival and residence at the plasma membrane, Acr3 is subjected to internalization followed by proteolysis in the vacuole. Endocytic degradation of Acr3 is promoted by the ubiquitin ligase Rsp5 and requires polyubiquitination of Acr3 at multiple lysine residues via lysine 63-linked ubiquitin chains. The turnover of Acr3 also depends on two arrestin-related proteins, Art3/Aly2 and Art4/Rod1, that enable recruitment of Rsp5 to its targets. Finally, we found that a short acidic patch located in the N-terminal tail of Acr3 is needed for its ubiquitination and internalization. We propose that this motif serves as an endocytic signal that facilitates binding of the arrestin-Rsp5 complexes to the Acr3 cargo.

摘要

酵母质膜转运蛋白 Acr3 介导有毒亚砷酸盐和锑酸盐的外排。在这里,我们研究了 Acr3 周转的机制。我们发现,Acr3 到达并驻留在质膜后,会被内陷并在液泡中进行蛋白水解。Acr3 的内吞降解由泛素连接酶 Rsp5 促进,并需要通过赖氨酸 63 连接的泛素链在多个赖氨酸残基上将 Acr3 多泛素化。Acr3 的周转还取决于两个与 arrestin 相关的蛋白 Art3/Aly2 和 Art4/Rod1,它们使 Rsp5 能够招募到其靶标。最后,我们发现 Acr3 的 N 端尾部的一个短酸性补丁对于其泛素化和内陷是必需的。我们提出,这个模体作为一个内吞信号,促进 arrestin-Rsp5 复合物与 Acr3 货物的结合。

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