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Phylogenetic analysis of eukaryotic NEET proteins uncovers a link between a key gene duplication event and the evolution of vertebrates

机译:真核新蛋白的系统发育分析揭示了关键基因重复事件与脊椎动物演化的联系

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NEET proteins belong to a unique family of iron-sulfur proteins in which the 2Fe-2S cluster is coordinated by a CDGSH domain that is followed by the “NEET” motif. They are involved in the regulation of iron and reactive oxygen metabolism, and have been associated with the progression of diabetes, cancer, aging and neurodegenerative diseases. Despite their important biological functions, the evolution and diversification of eukaryotic NEET proteins are largely unknown. Here we used the three members of the human NEET protein family (CISD1, mitoNEET; CISD2, NAF-1 or Miner 1; and CISD3, Miner2) as our guides to conduct a phylogenetic analysis of eukaryotic NEET proteins and their evolution. Our findings identified the slime mold Dictyostelium discoideum’s CISD proteins as the closest to the ancient archetype of eukaryotic NEET proteins. We further identified CISD3 homologs in fungi that were previously reported not to contain any NEET proteins, and revealed that plants lack homolog(s) of CISD3. Furthermore, our study suggests that the mammalian NEET proteins, mitoNEET (CISD1) and NAF-1 (CISD2), emerged via gene duplication around the origin of vertebrates. Our findings provide new insights into the classification and expansion of the NEET protein family, as well as offer clues to the diverged functions of the human mitoNEET and NAF-1 proteins.
机译:NEET蛋白属于独特的铁硫蛋白族,其中2FE-2S簇由CDGSH结构域配位,然后是“NEET”主题。它们参与了铁和反应性氧代谢的调节,并与糖尿病,癌症,老龄化和神经变性疾病的进展相关。尽管其重要的生物学功能,真核新蛋白的进化和多样化很大程度上是未知的。在这里,我们使用了人类Neet蛋白质家族(CISD1,Mitoneet; CISD2,NAF-1或矿工1;和CISD3,Miner2)作为我们的导游,以进行真核新蛋白的系统发育分析及其演化。我们的研究结果确定了粘液模具Dictyostelium Discoidum的CISD蛋白,作为最接近真核新核蛋白的古代原型。我们进一步鉴定了先前报道的真菌中的CISD3同源物,所述真菌不含有任何Neet蛋白,并且揭示了植物缺乏CISD3的同源物。此外,我们的研究表明,哺乳动物Neet蛋白,Mitoneet(CISD1)和NAF-1(CISD2)通过周围的脊椎动物的来源而出现。我们的调查结果为新蛋白质家族的分类和扩张提供了新的见解,以及为人弥素患者和NAF-1蛋白的分散功能提供线索。

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