首页> 美国卫生研究院文献>Molecular and Cellular Biology >Pressure-Induced Differential Regulation of the Two Tryptophan Permeases Tat1 and Tat2 by Ubiquitin Ligase Rsp5 and Its Binding Proteins Bul1 and Bul2
【2h】

Pressure-Induced Differential Regulation of the Two Tryptophan Permeases Tat1 and Tat2 by Ubiquitin Ligase Rsp5 and Its Binding Proteins Bul1 and Bul2

机译:泛素连接酶Rsp5及其结合蛋白Bul1和Bul2对两个色氨酸通透酶Tat1和Tat2的压力诱导的差异调节。

代理获取
本网站仅为用户提供外文OA文献查询和代理获取服务,本网站没有原文。下单后我们将采用程序或人工为您竭诚获取高质量的原文,但由于OA文献来源多样且变更频繁,仍可能出现获取不到、文献不完整或与标题不符等情况,如果获取不到我们将提供退款服务。请知悉。

摘要

Tryptophan uptake appears to be the Achilles' heel in yeast physiology, since under a variety of seemingly diverse toxic conditions, it becomes the limiting factor for cell growth. When growing cells of Saccharomyces cerevisiae are subjected to high hydrostatic pressure, tryptophan uptake is down-regulated, leading to cell cycle arrest in the G1 phase. Here we present evidence that the two tryptophan permeases Tat1 and Tat2 are differentially regulated by Rsp5 ubiquitin ligase in response to high hydrostatic pressure. Analysis of high-pressure growth mutants revealed that the HPG1 gene was allelic to RSP5. The HPG1 mutation or the bul1Δ bul2Δ double mutation caused a marked increase in the steady-state level of Tat2 but not of Tat1, although both permeases were degraded at high pressure in an Rsp5-dependent manner. There were marked differences in subcellular localization. Tat1 localized predominantly in the plasma membrane, whereas Tat2 was abundant in the internal membranes. Moreover, Tat1 was associated with lipid rafts, whereas Tat2 localized in bulk lipids. Surprisingly, Tat2 became associated with lipid rafts upon the occurrence of a ubiquitination defect. These results suggest that ubiquitination is an important determinant of the localization and regulation of these tryptophan permeases. Determination of the activation volume (ΔV) for Tat1- and Tat2-mediated tryptophan uptake (89.3 and 50.8 ml/mol, respectively) revealed that both permeases are highly sensitive to membrane perturbation and that Tat1 rather than Tat2 is likely to undergo a dramatic conformational change during tryptophan import. We suggest that hydrostatic pressure is a unique tool for elucidating the dynamics of integral membrane protein functions as well as for probing lipid microenvironments where they localize.
机译:色氨酸的摄取似乎是酵母生理中的致命弱点,因为在各种看似不同的毒性条件下,色氨酸的摄取已成为限制细胞生长的因素。当酿酒酵母的生长细胞受到高静水压力时,色氨酸的摄取被下调,导致细胞周期停滞在G1期。在这里,我们提供证据表明,响应高静水压力,Rsp5泛素连接酶可分别调节两个色氨酸通透酶Tat1和Tat2。高压生长突变体的分析表明,HPG1基因与RSP5等位。 HPG1突变或bul1Δbul2Δ双重突变引起Tat2的稳态水平显着增加,但没有引起Tat1的稳态升高,尽管这两种渗透酶均在高压下以Rsp5依赖的方式降解。亚细胞定位存在明显差异。 Tat1主要位于质膜,而Tat2在内膜中丰富。此外,Tat1与脂质筏相关联,而Tat2则位于大量脂质中。出乎意料的是,Tat2在泛素化缺陷发生时与脂质筏相关。这些结果表明泛素化是这些色氨酸通透酶的定位和调节的重要决定因素。确定Tat1和Tat2介导的色氨酸摄取(分别为89.3和50.8 ml / mol)的激活体积(ΔV)表明,这两种通透酶对膜扰动高度敏感,而Tat1而不是Tat1敏感在色氨酸导入过程中,Tat2可能会发生巨大的构象变化。我们建议静水压力是一个独特的工具,用于阐明完整的膜蛋白功能的动力学以及探测它们所处的脂质微环境。

著录项

相似文献

  • 外文文献
  • 专利
代理获取

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号