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酵母Npi3/Bro1参与通透酶运输的泛素依赖性调控。

Yeast Npi3/Bro1 is involved in ubiquitin-dependent control of permease trafficking.

作者信息

Springael Jean Yves, Nikko Elina, André Bruno, Marini Anne Marie

机构信息

Laboratoire de Physiologie Cellulaire, Institut de Biologie et de Médecine Moléculaires, Université Libre de Bruxelles, Gosselies, Belgium.

出版信息

FEBS Lett. 2002 Apr 24;517(1-3):103-9. doi: 10.1016/s0014-5793(02)02586-3.

Abstract

The membrane traffic and stability of the general amino acid permease Gap1 of Saccharomyces cerevisiae are under nitrogen control. Addition of a preferential nitrogen source such as ammonium to cells growing on a poor nitrogen source induces internalization of the permease and its subsequent degradation in the vacuole. This down-regulation requires ubiquitination of Gap1 through a process involving ubiquitin ligase Npi1/Rsp5, ubiquitin hydrolase Npi2/Doa4, and Bul1/2, two Npi1/Rsp5 interacting proteins. Here we report that yet another protein, Npi3, is involved in the regulation of Gap1 trafficking. We show that Npi3 is required for NH4+-induced down-regulation of Gap1, and particularly for efficient ubiquitination of the permease. Npi3 plays a pleiotropic role in permease down-regulation, since it is also involved in ubiquitination and stress-induced down-regulation of the uracil permease Fur4 and in glucose-induced degradation of hexose transporters Hxt6/7. We further provide evidence that Npi3 is required for direct vacuolar sorting of neosynthesized Gap1 permease as it occurs in npr1 mutant cells. NPI3 is identical to BRO1, a gene encoding a protein of unknown biochemical function and recently proposed to be involved in protein turnover. Npi3/Bro1 homologues include fungal proteins required for proteolytic cleavage of zinc finger proteins and the mouse Aip1 protein involved in apoptosis. We propose that proteins of the Npi3/Bro1 family, including homologues from higher species, may play a conserved role in ubiquitin-dependent control of membrane protein trafficking.

摘要

酿酒酵母中一般氨基酸通透酶Gap1的膜转运和稳定性受氮调控。向在贫氮源上生长的细胞添加诸如铵等优先氮源会诱导通透酶内化,并随后在液泡中降解。这种下调需要通过涉及泛素连接酶Npi1/Rsp5、泛素水解酶Npi2/Doa4以及两个与Npi1/Rsp5相互作用的蛋白Bul1/2的过程对Gap1进行泛素化。在此我们报告,另一种蛋白Npi3参与Gap1转运的调控。我们表明,Npi3是NH4+诱导的Gap1下调所必需的,尤其对于通透酶的有效泛素化是必需的。Npi3在通透酶下调中发挥多效性作用,因为它还参与尿嘧啶通透酶Fur4的泛素化和应激诱导的下调以及葡萄糖诱导的己糖转运蛋白Hxt6/7的降解。我们进一步提供证据表明,Npi3是新合成的Gap1通透酶直接液泡分选所必需的,就像在npr1突变细胞中发生的那样。NPI3与BRO1相同,BRO1是一个编码生化功能未知的蛋白的基因,最近有人提出它参与蛋白质周转。Npi3/Bro1同源物包括锌指蛋白蛋白水解切割所需的真菌蛋白以及参与细胞凋亡的小鼠Aip1蛋白。我们提出,Npi3/Bro1家族的蛋白,包括来自高等物种的同源物,可能在泛素依赖性膜蛋白转运控制中发挥保守作用。

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