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23 August 2019 Resiliency of equid H19 imprint to somatic cell reprogramming by oocyte nuclear transfer and genetically induced pluripotency
Mikhael Poirier, Olivia Eilers Smith, Jacinthe Therrien, Nathia Nathaly Rigoglio, Maria Angélica Miglino, Luciano Andrade Silva, Flavio Vieira Meirelles, Lawrence Charles Smith
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Abstract

Cell reprogramming by somatic cell nuclear transfer and in induced pluripotent stem cells is associated with epigenetic modifications that are often incompatible with embryonic development and differentiation. For instance, aberrant DNA methylation patterns of the differentially methylated region and biallelic expression of H19-/IGF2-imprinted gene locus have been associated with abnormal growth of fetuses and placenta in several mammalian species. However, cloned horses are born with normal sizes and with no apparent placental anomalies, suggesting that H19/IGF2 imprinting may be epigenetically stable after reprogramming in this species. In light of this, we aimed at characterizing the equid H19 gene to determine whether imprinting is altered in somatic cell nuclear transfer (SCNT)-derived conceptuses and induced pluripotent stem cell (iPSC) lines using the mule hybrid model. A CpG-rich region containing five CTCF binding sites was identified upstream of the equine H19 gene and analyzed by bisulfite sequencing. Coupled with parent-specific and global H19 transcript analysis, we found that the imprinted H19 remains monoallelic and that on average the methylation levels of both parental differentially methylated regions in embryonic and extra-embryonic SCNT tissues and iPSC lines remained unaltered after reprogramming. Together, these results show that, compared to other species, equid somatic cells are more resilient to epigenetic alterations to the H19-imprinted locus during SCNT and iPSC reprogramming.

Summary sentence

The reprogramming of equid somatic cells by oocyte nuclear transfer (SCNT) or genetically induced pluripotency (iPSC) does not induce epigenetic alterations to the H19 imprinting.

© The Author(s) 2019. Published by Oxford University Press on behalf of Society for the Study of Reproduction. All rights reserved. For permissions, please e-mail: journals.permissions@oup.com
Mikhael Poirier, Olivia Eilers Smith, Jacinthe Therrien, Nathia Nathaly Rigoglio, Maria Angélica Miglino, Luciano Andrade Silva, Flavio Vieira Meirelles, and Lawrence Charles Smith "Resiliency of equid H19 imprint to somatic cell reprogramming by oocyte nuclear transfer and genetically induced pluripotency," Biology of Reproduction 102(1), 211-219, (23 August 2019). https://doi.org/10.1093/biolre/ioz168
Received: 24 May 2019; Accepted: 20 August 2019; Published: 23 August 2019
KEYWORDS
assisted reproductive technologies
DNA methylation
epigenetics
equids
GENOMIC IMPRINTING
somatic cell nuclear transfer
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