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Arabidopsis Mitochondrial Voltage-Dependent Anion Channels Are Involved in Maintaining Reactive Oxygen Species Homeostasis, Oxidative and Salt Stress Tolerance in Yeast

机译:<斜视> rabidopsis 线粒体电压依赖性阴离子通道涉及维持酵母的反应性氧物种稳态,氧化和盐胁迫耐受性

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Voltage-dependent anion channels (VDACs) are conserved proteins of the mitochondria. We have functionally compared Arabidopsis VDACs using Saccharomyces cerevisiae Δpor1 and M3 yeast system. VDAC (1, 2, and 4) were able to restore Δpor1 growth in elevated temperature, in oxidative and salt stresses, whereas VDAC3 only partially rescued Δpor1 in these conditions. The ectopic expression of VDAC (1, 2, 3, and 4) in mutant yeast recapitulated the mitochondrial membrane potential thus, enabled it to maintain reactive oxygen species homeostasis. Overexpression of these VDACs ( AtVDACs) in M3 strain did not display any synergistic or antagonistic activity with the native yeast VDAC1 (ScVDAC1). Collectively, our data suggest that Arabidopsis VDACs are involved in regulating respiration, reactive oxygen species homeostasis, and stress tolerance in yeast.
机译:电压依赖性阴离子通道(VDACs)是线粒体的保守蛋白。我们使用酿酒酵母ΔPor1和M3酵母系统在功能上与拟南芥VDAC进行了功能化。 VDAC(1,2和4)能够在氧化和盐胁迫下恢复升高的温度ΔPor1生长,而Vdac3仅在这些条件下仅部分地振动ΔPor1。因此,突变酵母中的Vdac(1,2,3和4)的异位表达概述了线粒体膜电位,使其能够维持活性氧物种稳态。在M3菌株中的这些Vdacs(ATVDACs)的过度表达未显示与天然酵母VDAC1(SCVDAC1)显示任何协同或拮抗活性。统称,我们的数据表明Arabidopsis Vdacs参与调节呼吸,反应性氧物种稳态,以及酵母的应力耐受性。

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