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Re-partitioning of Cu and Zn isotopes by modified protein expression

机译:通过修饰的蛋白质表达对铜和锌同位素进行重分配

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Cu and Zn have naturally occurring non radioactive isotopes, and their isotopic systematics in abiological context are poorly understood. In this study we used double focussing mass spectroscopy to determine the ratios for these isotopes for the first time in mouse brain. The Cu and Zn isotope ratios for four strains of wild-type mice showed no significant difference (δ~(65)Cu -0.12 to -0.78 permil; δ~(66)Zn -0.23 to -0.48 permil). We also looked at how altering the expression of a single copper binding protein, the prion protein (PrP), alters the isotope ratios. Both knockout and overexpression of PrP had no significant effect on the ratio of Cu isotopes. Mice brains expressing mutant PrP lacking the known metal binding domain have δ~(65)Cu isotope values of on average 0.57 permil higher than wild-type mouse brains. This implies that loss of the copper binding domain of PrP increases the level of ~(65)Cu in the brain. δ~(66)Zn isotope values of the transgenic mouse brains are enriched for ~(66)Zn to the wild-type mouse brains. Here we show for the first time that the expression of a single protein can alter the partitioning of metal isotopes in mouse brains. The results imply that the expression of the prion protein can alter cellular Cu isotope content.
机译:铜和锌具有天然存在的非放射性同位素,在生物背景下它们的同位素系统了解得很少。在这项研究中,我们首次使用双聚焦质谱法确定了小鼠脑中这些同位素的比率。四株野生型小鼠的铜和锌同位素比没有显着差异(δ〜(65)Cu -0.12至-0.78 permil;δ〜(66)Zn -0.23至-0.48 permil)。我们还研究了如何改变单个铜结合蛋白expression病毒蛋白(PrP)的表达如何改变同位素比。 PrP的敲除和过表达对Cu同位素的比率均无显着影响。表达缺少已知金属结合域的突变型PrP的小鼠大脑的δ〜(65)Cu同位素值平均比野生型小鼠大脑高0.57 permil。这意味着PrP铜结合域的丢失会增加大脑中〜(65)Cu的水平。转基因小鼠脑的δ〜(66)Zn同位素值丰富了野生型小鼠脑的〜(66)Zn。在这里,我们首次展示了一种蛋白质的表达可以改变小鼠大脑中金属同位素的分配。结果暗示病毒蛋白的表达可以改变细胞中铜的同位素含量。

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