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蛋白质组的三维结构预测为研究古老古菌和细菌的原始代谢提供了线索。

Proteome-wide 3D structure prediction provides insights into the ancestral metabolism of ancient archaea and bacteria.

机构信息

State Key Laboratory of Microbial Metabolism, International Center for Deep Life Investigation (IC-DLI), School of Life Sciences and Biotechnology, Shanghai Jiao Tong University, 200240, Shanghai, China.

Institute of Natural Sciences, Shanghai National Center for Applied Mathematics (SJTU Center) and MOE-LSC, Shanghai Jiao Tong University, 200240, Shanghai, China.

出版信息

Nat Commun. 2022 Dec 21;13(1):7861. doi: 10.1038/s41467-022-35523-8.

Abstract

Ancestral metabolism has remained controversial due to a lack of evidence beyond sequence-based reconstructions. Although prebiotic chemists have provided hints that metabolism might originate from non-enzymatic protometabolic pathways, gaps between ancestral reconstruction and prebiotic processes mean there is much that is still unknown. Here, we apply proteome-wide 3D structure predictions and comparisons to investigate ancestorial metabolism of ancient bacteria and archaea, to provide information beyond sequence as a bridge to the prebiotic processes. We compare representative bacterial and archaeal strains, which reveal surprisingly similar physiological and metabolic characteristics via microbiological and biophysical experiments. Pairwise comparison of protein structures identify the conserved metabolic modules in bacteria and archaea, despite interference from overly variable sequences. The conserved modules (for example, middle of glycolysis, partial TCA, proton/sulfur respiration, building block biosynthesis) constitute the basic functions that possibly existed in the archaeal-bacterial common ancestor, which are remarkably consistent with the experimentally confirmed protometabolic pathways. These structure-based findings provide a new perspective to reconstructing the ancestral metabolism and understanding its origin, which suggests high-throughput protein 3D structure prediction is a promising approach, deserving broader application in future ancestral exploration.

摘要

由于缺乏基于序列重建以外的证据,祖先代谢一直存在争议。虽然前生物化学家已经提供了一些线索,表明代谢可能起源于非酶原代谢途径,但祖先重建和前生物过程之间的差距意味着仍有许多未知。在这里,我们应用蛋白质组范围的 3D 结构预测和比较来研究古代细菌和古菌的祖先代谢,为序列以外的信息提供信息,作为连接前生物过程的桥梁。我们比较了有代表性的细菌和古菌菌株,通过微生物学和生物物理实验揭示了惊人相似的生理和代谢特征。尽管序列变化过大,但蛋白质结构的成对比较可以识别细菌和古菌中保守的代谢模块。保守模块(例如,糖酵解的中间部分、部分 TCA、质子/硫呼吸、构建块生物合成)构成了可能存在于古细菌-细菌共同祖先中的基本功能,这与实验证实的原代谢途径非常一致。这些基于结构的发现为重建祖先代谢和理解其起源提供了新的视角,这表明高通量蛋白质 3D 结构预测是一种很有前途的方法,值得在未来的祖先探索中更广泛地应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f43a/9772386/43a46c07f69c/41467_2022_35523_Fig1_HTML.jpg

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