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首页> 外文期刊>BMC Genomics >A subset of the diverse COG0523 family of putative metal chaperones is linked to zinc homeostasis in all kingdoms of life
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A subset of the diverse COG0523 family of putative metal chaperones is linked to zinc homeostasis in all kingdoms of life

机译:假定的金属伴侣中各种COG0523家族的子集与所有生命王国中的锌稳态有关

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Background COG0523 proteins are, like the nickel chaperones of the UreG family, part of the G3E family of GTPases linking them to metallocenter biosynthesis. Even though the first COG0523-encoding gene, cobW, was identified almost 20 years ago, little is known concerning the function of other members belonging to this ubiquitous family. Results Based on a combination of comparative genomics, literature and phylogenetic analyses and experimental validations, the COG0523 family can be separated into at least fifteen subgroups. The CobW subgroup involved in cobalamin synthesis represents only one small sub-fraction of the family. Another, larger subgroup, is suggested to play a predominant role in the response to zinc limitation based on the presence of the corresponding COG0523-encoding genes downstream from putative Zur binding sites in many bacterial genomes. Zur binding sites in these genomes are also associated with candidate zinc-independent paralogs of zinc-dependent enzymes. Finally, the potential role of COG0523 in zinc homeostasis is not limited to Bacteria. We have predicted a link between COG0523 and regulation by zinc in Archaea and show that two COG0523 genes are induced upon zinc depletion in a eukaryotic reference organism, Chlamydomonas reinhardtii. Conclusion This work lays the foundation for the pursuit by experimental methods of the specific role of COG0523 members in metal trafficking. Based on phylogeny and comparative genomics, both the metal specificity and the protein target(s) might vary from one COG0523 subgroup to another. Additionally, Zur-dependent expression of COG0523 and putative paralogs of zinc-dependent proteins may represent a mechanism for hierarchal zinc distribution and zinc sparing in the face of inadequate zinc nutrition.
机译:背景技术COG0523蛋白与UreG家族的镍伴侣一样,是GTPases的G3E家族的一部分,将它们与金属中心生物合成联系起来。即使大约20年前就发现了第一个COG0523编码基因cobW,但对于这个无处不在的家族中其他成员的功能知之甚少。结果基于比较基因组学,文献和系统发育分析以及实验验证的结合,COG0523家族可分为至少15个亚组。钴胺素合成中涉及的CobW亚组仅代表该家族的一个小亚组。根据在许多细菌基因组中假定的Zur结合位点下游对应的COG0523编码基因的存在,建议另一个更大的亚组在对锌缺乏的反应中起主要作用。这些基因组中的Zur结合位点也与锌依赖性酶的候选锌非依赖性旁系同源物有关。最后,COG0523在锌稳态中的潜在作用不限于细菌。我们已经预测古细菌中的COG0523和锌的调节之间的联系,并表明在真核参照生物莱茵衣藻(Chlamydomonas reinhardtii)中,锌耗尽后会诱导两个COG0523基因。结论这项工作为通过实验方法追求COG0523成员在金属贩运中的特定作用奠定了基础。基于系统发育和比较基因组学,金属特异性和蛋白质靶标可能从一个COG0523亚组到另一个COG0523亚组有所不同。此外,面对锌营养不足,COG0523的Zur依赖性表达和锌依赖性蛋白的推定旁系同源物可能代表了锌的分层分布和锌节省的机制。

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