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泛素连接酶Ubr11对于裂殖酵母粟酒裂殖酵母中的寡肽利用至关重要。

The Ubiquitin ligase Ubr11 is essential for oligopeptide utilization in the fission yeast Schizosaccharomyces pombe.

作者信息

Kitamura Kenji, Nakase Mai, Tohda Hideki, Takegawa Kaoru

机构信息

Center for Gene Science, Hiroshima University, Higashi-Hiroshima, Japan.

出版信息

Eukaryot Cell. 2012 Mar;11(3):302-10. doi: 10.1128/EC.05253-11. Epub 2012 Jan 6.

Abstract

Uptake of extracellular oligopeptides in yeast is mediated mainly by specific transporters of the peptide transporter (PTR) and oligopeptide transporter (OPT) families. Here, we investigated the role of potential peptide transporters in the yeast Schizosaccharomyces pombe. Utilization of naturally occurring dipeptides required only Ptr2/SPBC13A2.04c and none of the other 3 OPT proteins (Isp4, Pgt1, and Opt3), whereas only Isp4 was indispensable for tetrapeptide utilization. Both Ptr2 and Isp4 localized to the cell surface, but under rich nutrient conditions Isp4 localized in the Golgi apparatus through the function of the ubiquitin ligase Pub1. Furthermore, the ubiquitin ligase Ubr11 played a significant role in oligopeptide utilization. The mRNA levels of both the ptr2 and isp4 genes were significantly reduced in ubr11Δ cells, and the dipeptide utilization defect in the ubr11Δ mutant was rescued by the forced expression of Ptr2. Consistent with its role in transcriptional regulation of peptide transporter genes, the Ubr11 protein was accumulated in the nucleus. Unlike the situation in Saccharomyces cerevisiae, the oligopeptide utilization defect in the S. pombe ubr11Δ mutant was not rescued by inactivation of the Tup11/12 transcriptional corepressors, suggesting that the requirement for the Ubr ubiquitin ligase in the upregulation of peptide transporter mRNA levels is conserved in both yeasts; however, the actual mechanism underlying the control appears to be different. We also found that the peptidomimetic proteasome inhibitor MG132 was still operative in a strain lacking all known PTR and OPT peptide transporters. Therefore, irrespective of its peptide-like structure, MG132 is carried into cells independently of the representative peptide transporters.

摘要

酵母中细胞外寡肽的摄取主要由肽转运蛋白(PTR)和寡肽转运蛋白(OPT)家族的特定转运体介导。在此,我们研究了潜在肽转运体在粟酒裂殖酵母中的作用。利用天然存在的二肽仅需要Ptr2/SPBC13A2.04c,而其他3种OPT蛋白(Isp4、Pgt1和Opt3)均不需要,而对于四肽利用而言,只有Isp4是不可或缺的。Ptr2和Isp4均定位于细胞表面,但在丰富营养条件下,Isp4通过泛素连接酶Pub1的功能定位于高尔基体。此外,泛素连接酶Ubr11在寡肽利用中发挥重要作用。ubr11Δ细胞中ptr2和isp4基因的mRNA水平均显著降低,通过强制表达Ptr2可挽救ubr11Δ突变体中的二肽利用缺陷。与其在肽转运体基因转录调控中的作用一致,Ubr11蛋白在细胞核中积累。与酿酒酵母的情况不同,粟酒裂殖酵母ubr11Δ突变体中的寡肽利用缺陷不能通过Tup11/12转录共抑制因子的失活来挽救,这表明在两种酵母中,Ubr泛素连接酶在肽转运体mRNA水平上调中的需求是保守的;然而,潜在的控制机制似乎有所不同。我们还发现,拟肽蛋白酶体抑制剂MG132在缺乏所有已知PTR和OPT肽转运体的菌株中仍然有效。因此,无论其肽样结构如何,MG132均可独立于代表性肽转运体进入细胞。

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