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酵母尿嘧啶通透酶向内体系统的直接分选受尿嘧啶结合和Rsp5p依赖性泛素化调控。

Direct sorting of the yeast uracil permease to the endosomal system is controlled by uracil binding and Rsp5p-dependent ubiquitylation.

作者信息

Blondel Marie-Odile, Morvan Joëlle, Dupré Sophie, Urban-Grimal Danièle, Haguenauer-Tsapis Rosine, Volland Christiane

机构信息

Institut Jacques Monod, UMR7592, CNRS/Université Paris 6/Université Paris 7, 75251 Paris Cedex 05, France.

出版信息

Mol Biol Cell. 2004 Feb;15(2):883-95. doi: 10.1091/mbc.e03-04-0202. Epub 2003 Dec 2.

Abstract

The yeast uracil permease, Fur4p, is downregulated by uracil, which is toxic to cells with high permease activity. Uracil promotes cell surface Rsp5p-dependent ubiquitylation of the permease, signaling its endocytosis and further vacuolar degradation. We show here that uracil also triggers the direct routing of its cognate permease from the Golgi apparatus to the endosomal system for degradation, without passage via the plasma membrane. This early sorting was not observed for a variant permease with a much lower affinity for uracil, suggesting that uracil binding is the signal for the diverted pathway. The FUI1-encoded uridine permease is similarly sorted for early vacuolar degradation in cells exposed to a toxic level of uridine uptake. Membrane proteins destined for vacuolar degradation require sorting at the endosome level to the intraluminal vesicles of the multivesicular bodies. In cells with low levels of Rsp5p, Fur4p can be still diverted from the Golgi apparatus but does not reach the vacuolar lumen, being instead missorted to the vacuolar membrane. Correct luminal delivery is restored by the biosynthetic addition of a single ubiquitin, suggesting that the ubiquitylation of Fur4p serves as a specific signal for sorting to the luminal vesicles of the multivesicular bodies. A fused ubiquitin is also able to sort some Fur4p from the Golgi to the degradative pathway in the absence of added uracil but the low efficiency of this sorting indicates that ubiquitin does not itself act as a dominant signal for Golgi-to-endosome trafficking. Our results are consistent with a model in which the binding of intracellular uracil to the permease signals its sorting from the Golgi apparatus and subsequent ubiquitylation ensures its delivery to the vacuolar lumen.

摘要

酵母尿嘧啶通透酶Fur4p受尿嘧啶负调控,尿嘧啶对具有高通透酶活性的细胞有毒性。尿嘧啶促进细胞表面Rsp5p依赖的通透酶泛素化,标志其被内吞并进一步在液泡中降解。我们在此表明,尿嘧啶还触发其同源通透酶直接从高尔基体转运至内体系统进行降解,而不经过质膜。对于与尿嘧啶亲和力低得多的变异通透酶,未观察到这种早期分选,这表明尿嘧啶结合是这条转移途径的信号。在暴露于有毒水平尿苷摄取的细胞中,FUI1编码的尿苷通透酶同样被分选进行早期液泡降解。注定要进行液泡降解的膜蛋白需要在内体水平被分选至多囊泡体的腔内小泡。在Rsp5p水平低的细胞中,Fur4p仍可从高尔基体转移,但无法到达液泡腔,而是错误分选至液泡膜。通过生物合成添加单个泛素可恢复正确的腔内递送,这表明Fur4p的泛素化作为分选至多囊泡体腔内小泡的特异性信号。在未添加尿嘧啶的情况下,融合泛素也能够将一些Fur4p从高尔基体分选至降解途径,但这种分选效率低表明泛素本身并非高尔基体到内体转运的主要信号。我们的结果与一个模型一致,即细胞内尿嘧啶与通透酶的结合标志其从高尔基体的分选,随后的泛素化确保其被递送至液泡腔。

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