Literature DB >> 16916925

POU5F1 isoforms show different expression patterns in human embryonic stem cells and preimplantation embryos.

Greet Cauffman1, Inge Liebaers, André Van Steirteghem, Hilde Van de Velde.   

Abstract

The contribution of the POU domain, class 5, transcription factor-1 (POU5F1) in maintaining totipotency in human embryonic stem cells (hESCs) has been repeatedly proven. In humans, two isoforms are encoded: POU5F1_iA and POU5F1_iB. So far, no discrimination has been made between the isoforms in POU5F1 studies, and it is unknown which isoform contributes to the undifferentiated phenotype. Using immunocytochemistry, expression of POU5F1_iA and POU5F1_iB was examined in hESCs and all stages of human preimplantation development to look for differences in expression, biological activity, and relation to totipotency. POU5F1_iA and POU5F1_iB displayed different temporal and spatial expression patterns. During human preimplantation development, a significant POU5F1_iA expression was seen in all nuclei of compacted embryos and blastocysts and a clear POU5F1_iB expression was detected from the four-cell stage onwards in the cytoplasm of all cells. The cytoplasmic localization might imply no or other biological functions beyond transcription activation for POU5F1_iB. The stemness properties of POU5F1 can be assigned to POU5F1_iA because hESCs expressed POU5F1_iA but not POU5F1_iB. However, POU5F1_iA is not the appropriate marker to identify totipotent cells, because POU5F1_iA was also expressed in the nontotipotent trophectoderm and was not expressed in zygotes and early cleavage stage embryos, which are assumed to be totipotent. The expression pattern of POU5F1_iA may suggest that POU5F1_iA alone cannot sustain totipotency and that coexpression with other stemness factors might be the key to totipotency.

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Year:  2006        PMID: 16916925     DOI: 10.1634/stemcells.2005-0611

Source DB:  PubMed          Journal:  Stem Cells        ISSN: 1066-5099            Impact factor:   6.277


  58 in total

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2.  Dynamic methylation and expression of Oct4 in early neural stem cells.

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5.  Statins inhibit blastocyst formation by preventing geranylgeranylation.

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7.  An expressed retrogene of the master embryonic stem cell gene POU5F1 is associated with prostate cancer susceptibility.

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8.  Oct4A is expressed by a subpopulation of prostate neuroendocrine cells.

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9.  Constitutive expression of pluripotency-associated genes in mesodermal progenitor cells (MPCs).

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10.  Promoter analysis of the rabbit POU5F1 gene and its expression in preimplantation stage embryos.

Authors:  Julianna Kobolak; Katalin Kiss; Zsuzsanna Polgar; Solomon Mamo; Claire Rogel-Gaillard; Zsuzsanna Tancos; Istvan Bock; Arpad G Baji; Krisztina Tar; Melinda K Pirity; Andras Dinnyes
Journal:  BMC Mol Biol       Date:  2009-09-04       Impact factor: 2.946

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