首页> 外文期刊>Protein Science: A Publication of the Protein Society >Evolutionarily conserved regions and hydrophobic contacts at the superfamily level: The case of the fold-type I, pyridoxal-5'-phosphate-dependent enzymes.
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Evolutionarily conserved regions and hydrophobic contacts at the superfamily level: The case of the fold-type I, pyridoxal-5'-phosphate-dependent enzymes.

机译:超家族水平上的进化保守区域和疏水性接触:折叠型I,吡x醛5'-磷酸依赖性酶的情况。

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摘要

The wealth of biological information provided by structural and genomic projects opens new prospects of understanding life and evolution at the molecular level. In this work, it is shown how computational approaches can be exploited to pinpoint protein structural features that remain invariant upon long evolutionary periods in the fold-type I, PLP-dependent enzymes. A nonredundant set of 23 superposed crystallographic structures belonging to this superfamily was built. Members of this family typically display high-structural conservation despite low-sequence identity. For each structure, a multiple-sequence alignment of orthologous sequences was obtained, and the 23 alignments were merged using the structural information to obtain a comprehensive multiple alignment of 921 sequences of fold-type I enzymes. The structurally conserved regions (SCRs), the evolutionarily conserved residues, and the conserved hydrophobic contacts (CHCs) were extracted from this data set, using both sequence and structural information. The results of this study identified a structural pattern of hydrophobic contacts shared by all of the superfamily members of fold-type I enzymes and involved in native interactions. This profile highlights the presence of a nucleus for this fold, in which residues participating in the most conserved native interactions exhibit preferential evolutionary conservation, that correlates significantly (r = 0.70) with the extent of mean hydrophobic contact value of their apolar fraction.
机译:由结构和基因组计划提供的大量生物学信息为在分子水平上了解生命和进化开辟了新前景。在这项工作中,它显示了如何利用计算方法来查明在折叠型I,PLP依赖的酶中长期进化后仍保持不变的蛋白质结构特征。建立了一个属于该超家族的非冗余的23个重叠的晶体学结构。尽管具有低序列同一性,该家族的成员通常仍显示出高结构的保守性。对于每种结构,均获得了直系同源序列的多序列比对,并使用结构信息合并了23个比对,以获得921个I型折叠酶序列的全面多重比对。使用序列和结构信息从该数据集中提取结构保守区域(SCR),进化保守残基和保守疏水接触(CHC)。这项研究的结果确定了折叠型I酶的所有超家族成员共有并参与天然相互作用的疏水性接触的结构模式。该图谱突出显示了该折叠的核的存在,其中参与最保守的天然相互作用的残基表现出优先的进化保守性,这与它们的非极性部分的平均疏水接触值的程度显着相关(r = 0.70)。

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