Literature DB >> 12832649

A transposable element-mediated gene divergence that directly produces a novel type bovine Bcnt protein including the endonuclease domain of RTE-1.

Shintaro Iwashita1, Naoki Osada, Tomohito Itoh, Mariko Sezaki, Kenshiro Oshima, Etsuko Hashimoto, Yuko Kitagawa-Arita, Ichiro Takahashi, Tohru Masui, Katsuyuki Hashimoto, Wojciech Makalowski.   

Abstract

Ruminant Bcnt protein with a molecular mass of 97 kDa (designated p97Bcnt) includes a region derived from the endonuclease domain of a retrotransposable element RTE-1. Human and mouse Bcnt proteins lack the corresponding region but have a highly conserved 82-amino acid region at the C-terminus that is not present in p97Bcnt. By screening a bovine BAC library, we found two more bcnt-related genes: human-type bcnt (h-type bcnt) and its processed pseudogene. Whereas the pseudogene is localized on chromosome 26, both bcntp97 and the h-type bcnt genes are found on bovine chromosome 18, a synteny region of human chromosome 16 on which human BCNT is localized. Complete nucleotide sequencing of the BAC clone reveals that the bcntp97 and h-type bcnt genes are located just 6 kb apart in a tandem manner. The two h-type bcnt and bcntp97genes are active at both the transcriptional level and the protein level. H-type bovine Bcnt is more like human BCNT than p97Bcnt, when compared at their N-terminal regions. However, phylogenetic analysis using the N-terminal region of the bcnt gene family revealed that the duplication of bovine genes occurred within the bovine lineage with significantly accelerated substitution in bcntp97. This acceleration was not ascribed definitely to positive selection. After duplication, one of the bovine bcnt genes recruited the endonuclease domain of an intronic RTE-1 repeat accompanied by the accelerated substitution at the 5'-ORF, resulting in creation of a novel type of Bcnt protein in bovine.

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Year:  2003        PMID: 12832649     DOI: 10.1093/molbev/msg168

Source DB:  PubMed          Journal:  Mol Biol Evol        ISSN: 0737-4038            Impact factor:   16.240


  13 in total

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9.  Gene function and expression level influence the insertion/fixation dynamics of distinct transposon families in mammalian introns.

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10.  Human and mouse introns are linked to the same processes and functions through each genome's most frequent non-conserved motifs.

Authors:  Aristotelis Tsirigos; Isidore Rigoutsos
Journal:  Nucleic Acids Res       Date:  2008-05-01       Impact factor: 16.971

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