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具有核苷酸转移酶或非典型棕榈催化结构域的蛋白质的结构与进化分析

Structural and Evolutionary Analysis of Proteins Endowed with a Nucleotidyltransferase, or Non-canonical Palm, Catalytic Domain.

作者信息

Jácome Rodrigo

机构信息

Facultad de Ciencias, Universidad Nacional Autónoma de México, Mexico City, México.

出版信息

J Mol Evol. 2024 Dec;92(6):799-814. doi: 10.1007/s00239-024-10207-7. Epub 2024 Sep 19.

Abstract

Many polymerases and other proteins are endowed with a catalytic domain belonging to the nucleotidyltransferase fold, which has also been deemed the non-canonical palm domain, in which three conserved acidic residues coordinate two divalent metal ions. Tertiary structure-based evolutionary analyses provide valuable information when the phylogenetic signal contained in the primary structure is blurry or has been lost, as is the case with these proteins. Pairwise structural comparisons of proteins with a nucleotidyltransferase fold were performed in the PDBefold web server: the RMSD, the number of superimposed residues, and the Qscore were obtained. The structural alignment score (RMSD × 100/number of superimposed residues) and the 1-Qscore were calculated, and distance matrices were constructed, from which a dendogram and a phylogenetic network were drawn for each score. The dendograms and the phylogenetic networks display well-defined clades, reflecting high levels of structural conservation within each clade, not mirrored by primary sequence. The conserved structural core between all these proteins consists of the catalytic nucleotidyltransferase fold, which is surrounded by different functional domains. Hence, many of the clades include proteins that bind different substrates or partake in non-related functions. Enzymes endowed with a nucleotidyltransferase fold are present in all domains of life, and participate in essential cellular and viral functions, which suggests that this domain is very ancient. Despite the loss of evolutionary traces in their primary structure, tertiary structure-based analyses allow us to delve into the evolution and functional diversification of the NT fold.

摘要

许多聚合酶和其他蛋白质都具有一个属于核苷酸转移酶折叠的催化结构域,该结构域也被认为是非典型的掌状结构域,其中三个保守的酸性残基配位两个二价金属离子。当一级结构中包含的系统发育信号模糊或丢失时,基于三级结构的进化分析会提供有价值的信息,这些蛋白质的情况正是如此。在PDBefold网络服务器中对具有核苷酸转移酶折叠的蛋白质进行了成对结构比较:获得了均方根偏差(RMSD)、重叠残基数量和Qscore。计算了结构比对分数(RMSD×100/重叠残基数量)和1-Qscore,并构建了距离矩阵,从中为每个分数绘制了树状图和系统发育网络。树状图和系统发育网络显示出明确的进化枝,反映了每个进化枝内高水平的结构保守性,而一级序列并未体现这一点。所有这些蛋白质之间保守的结构核心由催化性核苷酸转移酶折叠组成,其周围是不同的功能结构域。因此,许多进化枝包括结合不同底物或参与不相关功能的蛋白质。具有核苷酸转移酶折叠的酶存在于生命的所有领域,并参与基本的细胞和病毒功能,这表明该结构域非常古老。尽管它们的一级结构中失去了进化痕迹,但基于三级结构的分析使我们能够深入研究核苷酸转移酶折叠的进化和功能多样化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4eb4/11646218/c9b9acffff95/239_2024_10207_Fig1_HTML.jpg

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