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通过结构域重复和融合进化而来的真菌抑制剂胱氨酸结肽的分子多样性。

Molecular diversity of fungal inhibitor cystine knot peptides evolved by domain repeat and fusion.

作者信息

Zhao Jingru, Yuan Shouli, Gao Bin, Zhu Shunyi

机构信息

Group of Peptide Biology and Evolution, State Key Laboratory of Integrated Management of Pest Insects and Rodents, Institute of Zoology, Chinese Academy of Sciences, 1 Beichen West Road, Chaoyang District, Beijing 100101, China.

University of Chinese Academy of Sciences, No.19(A) Yuquan Road, Shijingshan District, Beijing 100049, China.

出版信息

FEMS Microbiol Lett. 2018 Aug 1;365(15). doi: 10.1093/femsle/fny158.

Abstract

Peptides with the inhibitor cystine knot (ICK) motif are extensively present in animals and plants where they exert a diversity of biological functions. However, few studies have been undertaken on this class of peptides in fungi. In this work, we identify a total of 386 fungal ICK peptides and proteins containing this motif by computational data mining of fungal genome databases, which exhibit 14 different exon-intron structures. According to their domain architectures, these proteins are classified into three distinct structural types, including single domains, tandem repeat domains and fusion domains, in which six families belonging to single or tandem repeat domains show remarkable sequence similarity to those from animals and plants, suggesting their orthologous relationship. Extremely high molecular diversity in fungal ICKs might be attributable to different genetic mechanisms, such as gene/domain duplication and fusion. This work not only enlarges the number of ICK peptides in multicellular organisms, but also uncovers their complex evolutionary history in a specific lineage.

摘要

具有抑制性胱氨酸结(ICK)基序的肽广泛存在于动植物中,发挥着多种生物学功能。然而,针对真菌中这类肽的研究却很少。在这项工作中,我们通过对真菌基因组数据库进行计算数据挖掘,共鉴定出386种含有该基序的真菌ICK肽和蛋白质,它们呈现出14种不同的外显子 - 内含子结构。根据其结构域架构,这些蛋白质被分为三种不同的结构类型,包括单结构域、串联重复结构域和融合结构域,其中属于单结构域或串联重复结构域的六个家族与动植物中的相应家族表现出显著的序列相似性,表明它们的直系同源关系。真菌ICKs中极高的分子多样性可能归因于不同的遗传机制,如基因/结构域重复和融合。这项工作不仅增加了多细胞生物中ICK肽的数量,还揭示了它们在特定谱系中的复杂进化历史。

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