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Cited 40 time in webofscience Cited 45 time in scopus
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S-adenosylhomocysteine treatment of adult female fibroblasts alters X-chromosome inactivation and improves in vitro embryo development after somatic cell nuclear transferopen access

Authors
Jeon, Byeong-GyunCoppola, GianfrancoPerrault, Steven D.Rho, Gyu-JinBetts, Dean H.King, W. Allan
Issue Date
Jun-2008
Publisher
BIOSCIENTIFICA LTD
Citation
REPRODUCTION, v.135, no.6, pp 815 - 828
Pages
14
Indexed
SCIE
SCOPUS
Journal Title
REPRODUCTION
Volume
135
Number
6
Start Page
815
End Page
828
URI
https://scholarworks.gnu.ac.kr/handle/sw.gnu/27383
DOI
10.1530/REP-07-0442
ISSN
1470-1626
1741-7899
Abstract
The poor outcome of somatic cell nuclear transfer (SCNT) is thought to be a consequence of incomplete reprogramming of the donor cell. The objective of this study was to investigate the effects of treatment with S-adenosylhomocysteine (SAH) a DNA demethylation agent, on DNA methylation levels and X-chromosome inactivation status of bovine female fibroblast donor cells and the subsequent impact on developmental potential after SCNT. Compared with non-treated controls, the cells treated with SAH revealed (i) significantly (P< 0.05) reduced global DNA methylation, 00 significantly (similar to 1.5-fold) increased telomerase activity, (iii) diminished distribution signals of methylated histones H3-3mK9 and H3-3mK27 on the presumptive inactive X-chromosome (Xi), (iv) alteration in the replication pattern of the Xi, and (v) elevation of transcript levels for X-chromosome linked genes, ANT3, MECP2, XIAP, XIST, and HPRT SCNT embryos produced with SAH-treated donor cells compared with those derived from untreated donor cells revealed (i) similar cleavage frequencies, (ii) significant elevation in the frequencies of development of cleaved embryos to hatched blastocyst stage, and (iii) 1.5-fold increase in telomerase activity. We concluded that SAH induces global DNA demethylation that partially reactivates the Xi, and that a hypomethylated genome may facilitate the nuclear reprogramming process.
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