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酵母锰离子转运蛋白Smf1p受泛素依赖性液泡蛋白分选途径调控。

Yeast Mn2+ transporter, Smf1p, is regulated by ubiquitin-dependent vacuolar protein sorting.

作者信息

Eguez Lorena, Chung Young-Sook, Kuchibhatla Ajay, Paidhungat Madan, Garrett Stephen

机构信息

Department of Microbiology and Molecular Genetics and Graduate School of Biomedical Sciences, University of Medicine and Dentistry-New Jersey Medical School, Newark, New Jersey 07103-2714, USA.

出版信息

Genetics. 2004 May;167(1):107-17. doi: 10.1534/genetics.167.1.107.

Abstract

Conditional cdc1(Ts) mutants of S. cerevisiae arrest with a phenotype similar to that exhibited by Mn(2+)-depleted cells. Sequence similarity between Cdc1p and a class of Mn(2+)-dependent phosphoesterases, as well as the observation that conditional cdc1(Ts) growth can be ameliorated by Mn(2+) supplement, suggests that Cdc1p activity is sensitive to intracellular Mn(2+) levels. This article identifies several previously uncharacterized cdc1(Ts) suppressors as class E vps (vacuolar protein sorting) mutants and shows that these, as well as other vps mutants, accumulate high levels of intracellular Mn(2+). Yeast VPS genes play a role in delivery of membrane transporters to the vacuole for degradation, and we show that the vps mutants accumulate elevated levels of the high-affinity Mn(2+) transporter Smf1p. cdc1(Ts) conditional growth is also alleviated by mutations, including doa4 and ubc4, that compromise protein ubiquitination, and these ubiquitination defects are associated with Smf1p accumulation. Epistasis studies show that these suppressors require functional Smf1p to alleviate the cdc1(Ts) growth defect, whereas Smf1p is dispensable for cdc1(Ts) suppression by a mutation (cos16/per1) that does not influence intracellular Mn(2+) levels. Because Smf1p is ubiquitinated in vivo, we propose that Smf1p is targeted to the vacuole for degradation by ubiquitination-dependent protein sorting.

摘要

酿酒酵母的条件性 cdc1(Ts) 突变体停滞时的表型与 Mn(2+) 耗尽的细胞所表现出的表型相似。Cdc1p 与一类 Mn(2+) 依赖性磷酸酯酶之间的序列相似性,以及补充 Mn(2+) 可改善条件性 cdc1(Ts) 生长的观察结果,表明 Cdc1p 的活性对细胞内 Mn(2+) 水平敏感。本文鉴定出几个先前未被表征的 cdc1(Ts) 抑制子为 E 类 vps(液泡蛋白分选)突变体,并表明这些以及其他 vps 突变体积累了高水平的细胞内 Mn(2+)。酵母 VPS 基因在将膜转运蛋白递送至液泡进行降解中发挥作用,并且我们表明 vps 突变体积累了高水平的高亲和力 Mn(2+) 转运蛋白 Smf1p。包括 doa4 和 ubc4 在内的损害蛋白质泛素化的突变也缓解了 cdc1(Ts) 的条件性生长,并且这些泛素化缺陷与 Smf1p 的积累相关。上位性研究表明,这些抑制子需要功能性 Smf1p 来缓解 cdc1(Ts) 的生长缺陷,而 Smf(1p) 对于不影响细胞内 Mn(2+) 水平的突变(cos16/per1)对 cdc1(Ts) 的抑制作用是可有可无的。由于 Smf1p 在体内被泛素化,我们提出 Smf1p 通过泛素化依赖性蛋白分选被靶向至液泡进行降解。

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