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Cadmium impairs protein folding in the endoplasmic reticulum and induces the unfolded protein response

机译:镉损害内质网中的蛋白质折叠并诱导未折叠的蛋白质反应

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Cellular exposure to cadmium is known to strongly induce the unfolded protein response (UPR), which suggests that the endoplasmic reticulum (ER) is preferentially damaged by cadmium. According to recent reports, the UPR is induced both dependent on and independently of accumulation of unfolded proteins in the ER. In order to understand the toxic mechanism of cadmium, here we investigated how cadmium exposure leads to Ire1 activation, which triggers the UPR, using yeast Saccharomyces cerevisiae as a model organism. Cadmium poorly induced the UPR when Ire1 carried a mutation that impairs its ability to recognize unfolded proteins. Ire1 activation by cadmium was also attenuated by the chemical chaperone 4-phenylbutyrate. Cadmium caused sedimentation of BiP, the molecular chaperone in the ER, which suggests the ER accumulation of unfolded proteins. A green fluorescent protein-based reporter assay also indicated that cadmium damages the oxidative protein folding in the ER. We also found that an excess concentration of extracellular calcium attenuates the Ire1 activation by cadmium. Taken together, we propose that cadmium exposure leads to the UPR induction through impairment of protein folding in the ER.
机译:已知细胞暴露于镉会强烈诱导未折叠的蛋白质反应(UPR),这表明内质网(ER)优先受到镉的破坏。根据最近的报道,UPR的诱导既依赖于ER,也依赖于ER中未折叠蛋白的积累。为了了解镉的毒性机理,在这里我们使用酵母酿酒酵母作为模型生物,研究了镉暴露如何导致Ire1活化并触发UPR。当Ire1携带突变,削弱其识别未折叠蛋白的能力时,镉几乎不能诱导UPR。分子伴侣4-苯基丁酸酯也减弱了镉对Ire1的活化作用。镉导致ER中的分子伴侣BiP沉淀,这表明ER积累了未折叠的蛋白质。基于绿色荧光蛋白的报告基因检测还表明,镉会破坏ER中的氧化蛋白折叠。我们还发现过量的细胞外钙会减弱镉对Ire1的活化作用。两者合计,我们建议镉暴露通过ER中蛋白质折叠的损伤导致UPR诱导。

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