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Posttranslational Regulation of the Scaffold for Fe-S Cluster Biogenesis, Isu

机译:Fe-S簇生物发生的支架的翻译后调控,五十生

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Isu, the scaffold protein on which Fe-S clusters are built in the mitochondrial matrix, plays a central role in the biogenesis of Fe-S cluster proteins. We report that the reduction in the activity of several components of the cluster biogenesis system, including the specialized Hsp70 Ssq1, causes a 15-20-fold up-regulation of Isu. This up-regulation results from changes at both the transcriptional and posttranslational level: an increase in ISU mRNA levels and in stability of ISU protein. Its biological importance is demonstrated by the fact that cells lacking Ssq1 grow poorly when Isu levels are prevented from rising above those found in wild-type cells. Of the biogenesis factors tested, Nfs1, the sulfur donor, was unique. Little increase in Isu levels occurred when Nfs1 was depleted. However, its presence was required for the up-regulation caused by reduction in activity of other components. Our results are consistent with the existence of a mechanism to increase the stability of Isu, and thus its level, that is dependent on the presence of the cysteine desulfurase Nfs1.
机译:线粒体基质中建立有Fe-S簇的支架蛋白Isu在Fe-S簇蛋白的生物发生中起着核心作用。我们报告说,在集群生物发生系统的几个组件,包括专门的Hsp70 Ssq1,减少活动导致Isu的15-20倍上调。这种上调是由转录和翻译后水平的变化引起的:ISU mRNA水平的增加和ISU蛋白的稳定性。当阻止Isu水平升高到高于野生型细胞中的水平时,缺乏Ssq1的细胞生长不良的事实证明了它的生物学重要性。在测试的生物发生因子中,硫供体Nfs1是唯一的。 Nfs1耗尽时,Isu水平几乎没有增加。但是,其存在是由于其他组分活性降低引起的上调所必需的。我们的结果与提高Isu稳定性(从而提高Isu的稳定性)的机制一致,该机制取决于半胱氨酸脱硫酶Nfs1的存在。

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