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首页> 外文期刊>Journal of Molecular Biology >Gene duplication and gene conversion shape the evolution of archaeal chaperonins.
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Gene duplication and gene conversion shape the evolution of archaeal chaperonins.

机译:基因复制和基因转化影响古细菌伴侣蛋白的进化。

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摘要

Chaperonins are multi-subunit double-ring complexes that mediate the folding of nascent or denatured proteins. Gene duplication has been a potent force in the evolution of chaperonins in Archaea. Here we show that gene conversion has also been an important factor. We utilized a novel maximum likehood-based phylogenetic method for scanning DNA sequence alignments for regions of anomalous phylogenetic signal, such as those affected by gene conversion. Our results suggest that in crenarchaeotes, where an ancient gene duplication producing alpha and beta subunits took place in the common ancestor of the Pyrodictium, Aeropyrum, Pyrobaculum and Sulfolobus lineages, multiple independent gene conversions have occurred between the alpha and beta genes independently in each of these groups. Significantly, the conversions have repeatedly homogenized the region of the gene encoding the substrate-binding domain. This suggests that while the alpha and beta subunits in crenarchaeotes share only 50-60% overall amino acid sequence identity, they do not possess distinct roles in the binding of substrate. Cryptic gene conversion between distantly related paralogs may be more common than is currently appreciated, and could be a significant factor in slowing the functional differentiation of proteins encoded by duplicate genes long after their duplication.
机译:伴侣蛋白是介导新生或变性蛋白质折叠的多亚基双环复合物。基因复制已成为古细菌伴侣蛋白进化中的强大力量。在这里,我们证明基因转换也是一个重要因素。我们利用一种新颖的基于最大似然的系统发育方法来扫描DNA序列比对中异常的系统发生信号区域,例如那些受基因转换影响的区域。我们的结果表明,在Crenarchaeotes中,一个古老的产生α和β亚基的基因重复发生在烟火菌,气杆菌,焦杆菌和硫磺菌谱系的共同祖先中,在每个基因中,α和β基因之间都独立发生了多次独立的基因转化。这些团体。显着地,这些转化已经重复均化了编码底物结合域的基因的区域。这表明,尽管月古菌中的α和β亚基仅共享50-60%的整体氨基酸序列同一性,但它们在底物结合中没有独特的作用。远距离相关旁系同源物之间的隐秘基因转换可能比目前所认识的更为普遍,并且可能是减慢复制基因复制后很长时间内复制基因编码的蛋白质功能分化的重要因素。

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