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首页> 外文期刊>Molecular biology of the cell >The MAPK Hog1p modulates Fps1p-dependent arsenite uptake and tolerance in yeast
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The MAPK Hog1p modulates Fps1p-dependent arsenite uptake and tolerance in yeast

机译:MAPK Hog1p调节酵母中Fps1p依赖性亚砷酸盐的摄取和耐受

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摘要

Arsenic is widely distributed in nature and all organisms possess regulatory mechanisms to evade toxicity and acquire tolerance. Yet, little is known about arsenic sensing and signaling mechanisms or about their impact on tolerance and detoxification systems. Here, we describe a novel role of the S. cerevisiae mitogen-activated protein kinase Hog1p in protecting cells during exposure to arsenite and the related metalloid antimonite. Cells impaired in Hog1p function are metalloid hypersensitive, whereas cells with elevated Hog1p activity display improved tolerance. Hog1p is phosphorylated in response to arsenite and this phosphorylation requires Ssk1p and Pbs2p. Arsenite-activated Hog1p remains primarily cytoplasmic and does not mediate a major transcriptional response. Instead, hog1 Delta sensitivity is accompanied by elevated cellular arsenic levels and we demonstrate that increased arsenite influx is dependent on the aquaglyceroporin Fps1p. Fps1p is phosphorylated on threonine 231 in vivo and this phosphorylation critically affects Fps1p activity. Moreover, Hog1p is shown to affect Fps1p phosphorylation. Our data are the first to demonstrate Hog1p activation by metalloids and provides a mechanism by which this kinase contributes to tolerance acquisition. Understanding how arsenite/antimonite uptake and toxicity is modulated may prove of value for their use in medical therapy.
机译:砷在自然界中分布广泛,所有生物体都具有逃避毒性和获得耐受性的调控机制。然而,人们对砷的传感和信号传导机制或其对耐受性和排毒系统的影响知之甚少。在这里,我们描述了啤酒酵母促细胞分裂原激活蛋白激酶Hog1p在暴露于亚砷酸盐和相关准金属锑矿的过程中保护细胞的新型作用。 Hog1p功能受损的细胞是准金属过敏反应,而具有较高Hog1p活性的细胞显示出更高的耐受性。 Hog1p响应亚砷酸盐而被磷酸化,这种磷酸化需要Ssk1p和Pbs2p。砷激活的Hog1p主要保持细胞质,并且不介导主要的转录反应。取而代之的是,hog1 Delta敏感性伴随着细胞砷水平的升高,并且我们证明了亚砷酸盐涌入的增加取决于水甘油糖蛋白Fps1p。 Fps1p在体内被苏氨酸231磷酸化,这种磷酸化严重影响Fps1p的活性。此外,显示Hog1p影响Fps1p磷酸化。我们的数据首次证明了类金属激活了Hog1p,并提供了该激酶有助于耐受耐受的机制。了解砷/锑矿的摄取和毒性是如何调节的,可能会证明其在医学治疗中的价值。

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