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CIA 靶向复合物对 Fe-S 蛋白生物发生的结构见解。

Structural insights into Fe-S protein biogenesis by the CIA targeting complex.

机构信息

Friedrich Miescher Institute for Biomedical Research, Basel, Switzerland.

出版信息

Nat Struct Mol Biol. 2020 Aug;27(8):735-742. doi: 10.1038/s41594-020-0454-0. Epub 2020 Jul 6.

Abstract

The cytosolic iron-sulfur (Fe-S) assembly (CIA) pathway is required for the insertion of Fe-S clusters into cytosolic and nuclear client proteins, including many DNA replication and repair factors. The molecular mechanisms of client protein recognition and Fe-S cluster transfer remain unknown. Here, we report crystal structures of the CIA targeting complex (CTC), revealing that its CIAO2B subunit is centrally located and bridges CIAO1 and the client adaptor protein MMS19. Cryo-EM reconstructions of human CTC bound either to the DNA replication factor primase or to the DNA helicase DNA2, combined with biochemical, biophysical and yeast complementation assays, reveal an evolutionarily conserved, bipartite client recognition mode facilitated by CIAO1 and the structural flexibility of the MMS19 subunit. Unexpectedly, the primase Fe-S cluster is located ~70 Å away from the CTC reactive cysteine, implicating conformational dynamics of the CTC or additional maturation factors in the mechanism of Fe-S cluster transfer.

摘要

细胞质铁硫(Fe-S)组装(CIA)途径是将 Fe-S 簇插入细胞质和核内客户蛋白所必需的,包括许多 DNA 复制和修复因子。客户蛋白识别和 Fe-S 簇转移的分子机制尚不清楚。在这里,我们报告了 CIA 靶向复合物(CTC)的晶体结构,揭示其 CIAO2B 亚基位于中心位置,并连接 CIAO1 和客户衔接蛋白 MMS19。与人 CTC 结合的 DNA 复制因子引发酶或 DNA 解旋酶 DNA2 的冷冻电镜重建,结合生化、生物物理和酵母互补测定,揭示了一种保守的、二分体的客户识别模式,由 CIAO1 和 MMS19 亚基的结构灵活性介导。出乎意料的是,引发酶的 Fe-S 簇位于 CTC 反应性半胱氨酸的~70 Å 以外,这表明 CTC 或其他成熟因子的构象动力学在 Fe-S 簇转移机制中起作用。

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