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Actin-Mediated Endocytosis Limits Intracellular Cr Accumulation and Cr Toxicity during Chromate Stress

机译:肌动蛋白介导的内吞作用限制了铬酸盐胁迫期间细胞内铬的积累和铬的毒性

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摘要

Chromate toxicity is well documented, but the underlying toxic mechanism(s) has yet to be fully elucidated. Following a Cr toxicity screen against > 6000 heterozygous yeast mutants, here we show that Cr resistance requires normal function of the cortical actin cytoskeleton. Furthermore, Cr-stressed yeast cells exhibited an increased number of actin patches, the sites of endocytosis. This was coincident with a marked stimulation of endocytosis following Cr exposure. Genetic dissection of actin nucleation from endocytosis revealed that endocytosis, specifically, was required for Cr resistance. A series of further endocytosis mutants (sac6Δ, chc1Δ, end3Δ) exhibited elevated Cr sensitivity. These mutants also showed markedly elevated cellular Cr accumulation, explaining their sensitivities. In wild-type cells, an initial endocytosis-independent phase of Cr uptake was followed by an endocytosis-dependent decline in Cr accumulation. The results indicate that actin-mediated endocytosis is required to limit Cr accumulation and toxicity. It is proposed that this involves ubiquitin-dependent endocytic inactivation of a plasma membrane Cr transporter(s). We showed that such an action was not dependent on the transporters that have been characterized to date, the sulfate (and chromate) permeases Sul1p and Sul2p.
机译:铬酸盐毒性已有充分的文献证明,但潜在的毒性机理尚未完全阐明。在针对> 6000个杂合酵母突变体进行Cr毒性筛选后,我们在这里显示Cr抗性需要皮质肌动蛋白细胞骨架的正常功能。此外,Cr胁迫的酵母细胞表现出增加的肌动蛋白补丁数量,即内吞作用的位点。这与铬暴露后胞吞作用的明显刺激相吻合。从内吞作用的肌动蛋白成核的遗传解剖揭示内吞作用,特别是对Cr的抵抗力是必需的。一系列其他内吞突变体(sac6Δ,chc1Δ,end3Δ)表现出较高的Cr敏感性。这些突变体还显示出细胞Cr积累显着增加,说明了它们的敏感性。在野生型细胞中,Cr吸收的初始内吞无关阶段,随后是Cr累积的内吞依赖性下降。结果表明肌动蛋白介导的内吞作用是限制Cr积累和毒性所必需的。提出这涉及质膜Cr转运蛋白的遍在蛋白依赖性内吞失活。我们表明,这种作用不依赖于迄今已表征的转运蛋白,硫酸盐(和铬酸盐)渗透酶Sul1p和Sul2p。

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