4.6 Article

Evolutionary history of the reprimo tumor suppressor gene family in vertebrates with a description of a new reprimo gene lineage

Journal

GENE
Volume 591, Issue 1, Pages 245-254

Publisher

ELSEVIER
DOI: 10.1016/j.gene.2016.07.036

Keywords

Whole genome duplication; Gene family evolution; Cancer; Gastric cancer; Evolutionary medicine

Funding

  1. Fondo Nacional de Desarrollo Cientifico y Tecnologico (FONDECYT) [1160627, 1151411, 1140970]
  2. CORFO [13IDL2-18608, 13CTI-21526-P6]
  3. CONICYT-FONDAP [15130011]
  4. BMBF-CONICYT [20140027]
  5. CRP-ICGEB [CH15-01]
  6. CONICYT-ANILLO [ACT1402]
  7. National Science Foundation [EPS-0903787]
  8. Direct For Biological Sciences
  9. Division Of Environmental Biology [1354147] Funding Source: National Science Foundation

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Genes related to human diseases should be natural targets for evolutionary studies, since they could provide clues regarding the genetic bases of pathologies and potential treatments. Here we studied the evolution of the reprimo gene family, a group of tumor-suppressor genes that are implicated in p53-mediated cell cycle arrest. These genes, especially the reprimo duplicate located on human chromosome 2, have been associated with epigenetic modifications correlated with transcriptional silencing and cancer progression. We demonstrate the presence of a third reprimo lineage that, together with the reprimo and reprimo-like genes, appears to have been differentially retained during the evolutionary history of vertebrates. We present evidence that these reprimo lineages originated early in vertebrate evolution and expanded as a result of the two rounds of whole genome duplications that occurred in the last common ancestor of vertebrates. The reprimo gene has been lost in birds, and the third reprimo gene lineage has been retained in only a few distantly related species, such as coelacanth and gar. Expression analyses revealed that the reprimo paralogs are mainly expressed in the nervous system. Different vertebrate lineages have retained different reprimo paralogs, and even in species that have retained multiple copies, only one of them is heavily expressed. (C) 2016 Elsevier B.V. All rights reserved.

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