Okazaki Shoko, Naganuma Akira, Kuge Shusuke
Laboratory of Molecular and Biochemical Toxicology, Graduate School of Pharmaceutical Sciences, Tohoku University, Sendai, Miyagi, Japan.
Antioxid Redox Signal. 2005 Mar-Apr;7(3-4):327-34. doi: 10.1089/ars.2005.7.327.
A redox reaction involving cysteine thiol-disulfide exchange is crucial for the intracellular monitoring of oxidation status. The yeast transcription factor Yap1 is activated by formation of a disulfide bond, which inhibits nuclear export in response to peroxide stress, with resultant enhancement of the nuclear localization of Yap1. A glutathione peroxidase-like protein, Gpx3, which has peroxiredoxin activity, is required for formation of the disulfide bond in Yap1. We show here that the requirement for Gpx3 in the regulation of Yap1 is strain-specific. Thus, Tsa1, a ubiquitous thioredoxin peroxidase, is required for the activation of Yap1 in yeast strain Y700, which is derived from W303. The strain-specific utilization of different peroxiredoxins appears to be determined by Ybp1, a Yap1-binding protein. The Ybp1 of Y700 has a nonsense mutation, and a wild-type YBP1 gene can restore the Gpx3-dependent activation of Yap1. These results suggest that Tsa1, a ubiquitous peroxiredoxin, has the potential for transducing redox signals to a particular sensor protein.
涉及半胱氨酸硫醇 - 二硫键交换的氧化还原反应对于细胞内氧化状态的监测至关重要。酵母转录因子Yap1通过二硫键的形成而被激活,该二硫键响应过氧化物应激抑制核输出,从而增强Yap1的核定位。一种具有过氧化物酶活性的谷胱甘肽过氧化物酶样蛋白Gpx3是Yap1中二硫键形成所必需的。我们在此表明,Gpx3在Yap1调节中的需求具有菌株特异性。因此,普遍存在的硫氧还蛋白过氧化物酶Tsa1是酵母菌株Y700(源自W303)中Yap1激活所必需的。不同过氧化物酶的菌株特异性利用似乎由Yap1结合蛋白Ybp1决定。Y700的Ybp1存在无义突变,野生型YBP1基因可恢复Yap1的Gpx3依赖性激活。这些结果表明,普遍存在的过氧化物酶Tsa1具有将氧化还原信号转导至特定传感蛋白的潜力。