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Molecular Phylogenetic Analysis of the AIG Family in Vertebrates.


ABSTRACT: Androgen-inducible genes (AIGs), which can be regulated by androgen level, constitute a group of genes characterized by the presence of the AIG/FAR-17a domain in its protein sequence. Previous studies on AIGs demonstrated that one member of the gene family, AIG1, is involved in many biological processes in cancer cell lines and that ADTRP is associated with cardiovascular diseases. It has been shown that the numbers of AIG paralogs in humans, mice, and zebrafish are 2, 2, and 3, respectively, indicating possible gene duplication events during vertebrate evolution. Therefore, classifying subgroups of AIGs and identifying the homologs of each AIG member are important to characterize this novel gene family further. In this study, vertebrate AIGs were phylogenetically grouped into three major clades, ADTRP, AIG1, and AIG-L, with AIG-L also evident in an outgroup consisting of invertebrsate species. In this case, AIG-L, as the ancestral AIG, gave rise to ADTRP and AIG1 after two rounds of whole-genome duplications during vertebrate evolution. Then, the AIG family, which was exposed to purifying forces during evolution, lost or gained some of its members in some species. For example, in eutherians, Neognathae, and Percomorphaceae, AIG-L was lost; in contrast, Salmonidae and Cyprinidae acquired additional AIG copies. In conclusion, this study provides a comprehensive molecular phylogenetic analysis of vertebrate AIGs, which can be employed for future functional characterization of AIGs.

SUBMITTER: Huang Y 

PROVIDER: S-EPMC8394805 | biostudies-literature | 2021 Jul

REPOSITORIES: biostudies-literature

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Molecular Phylogenetic Analysis of the <i>AIG</i> Family in Vertebrates.

Huang Yuqi Y   Sun Minghao M   Zhuang Lenan L   He Jin J  

Genes 20210730 8


<i>Androgen-inducible genes</i> (<i>AIGs</i>), which can be regulated by androgen level, constitute a group of genes characterized by the presence of the AIG/FAR-17a domain in its protein sequence. Previous studies on AIGs demonstrated that one member of the gene family, <i>AIG1,</i> is involved in many biological processes in cancer cell lines and that <i>ADTRP</i> is associated with cardiovascular diseases. It has been shown that the numbers of <i>AIG</i> paralogs in humans, mice, and zebrafis  ...[more]

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