Literature DB >> 18393569

Mammalian Sox15 gene: promoter analysis and implications for placental evolution.

Kayo Yamada1, Hiromi Kanda, Takashi Aihara, Nobuhiko Takamatsu, Tadayoshi Shiba, Michihiko Ito.   

Abstract

Sox15 belongs to the Sox (Sry-type HMG box) protein family, which is involved in placental development and muscle regeneration. Previously, we showed that the Sox15 gene is highly expressed in the trophoblast giant cells of the mouse placenta. To elucidate the molecular mechanisms of the tissue-dependent transcription of the gene, we isolated approximately 2.2 kb of the 5'-flanking sequence upstream of the transcription initiation site and used it to construct luciferase reporter plasmids. A variety of cell lines, including trophoblast stem (TS) cells, placenta-derived Rcho-1 cells, and myoblast C2C12 cells, required the same 5'-flanking sequence, from -109 to -8, for basal promoter activity. In contrast, the sequences from -297 to -149 and from -148 to -110 were required for cell-type-specific promoter activity in myoblast-derived C2C12 cells and placenta-derived Rcho-1 and TS cells, respectively. These results suggest that the region from -297 to -8 of the Sox15 gene contains three distinct cis-elements that respectively control placenta-specific, myoblast-specific, and common basal expression. We also searched for Sox15 ortholog(s) in the genome databases of various vertebrate species. The results indicated that the three regulatory promoter sequences of the Sox15 genes were conserved among eutherian mammals during vertebrate evolution. Interestingly, the marsupial opossum gene that is closest to Sox15 appeared to be a pseudogene. These findings indicate that Sox15 may have been involved in placental evolution.

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Year:  2008        PMID: 18393569     DOI: 10.2108/zsj.25.313

Source DB:  PubMed          Journal:  Zoolog Sci        ISSN: 0289-0003            Impact factor:   0.931


  2 in total

1.  Independent pseudogenizations and losses of sox15 during amniote diversification following asymmetric ohnolog evolution.

Authors:  Yusaku Ogita; Kei Tamura; Shuuji Mawaribuchi; Nobuhiko Takamatsu; Michihiko Ito
Journal:  BMC Ecol Evol       Date:  2021-06-30

2.  Testing the role of SOX15 in human primordial germ cell fate.

Authors:  Merrick Pierson Smela; Anastasiya Sybirna; Frederick C K Wong; M Azim Surani
Journal:  Wellcome Open Res       Date:  2019-09-23
  2 in total

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