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DNA hypomethylation of individual sequences in aborted cloned bovine fetuses. | LitMetric

DNA hypomethylation of individual sequences in aborted cloned bovine fetuses.

Front Biosci

State Key Laboratory of Reproductive Biology, Institute of Zoology, Chinese Academy of Science, Beijing 100080, China.

Published: September 2005

AI Article Synopsis

  • Cloned bovines experience a significantly higher abortion rate due to issues with epigenetic reprogramming of donor nuclei.
  • A study examined DNA methylation patterns in both cloned and artificially inseminated fetuses, revealing that two aborted cloned fetuses had low methylation levels in certain gene promoter regions.
  • The results indicate that abnormal DNA methylation may play a role in the developmental failures observed in cloned bovine pregnancies.

Article Abstract

Cloned bovines have a much higher abortion rate than those derived in vivo. Available evidence indicates that inappropriate epigenetic reprogramming of donor nuclei is the primary cause of cloning failure. To gain a better understanding of the DNA methylation changes associated with the high abortion rate of cloned bovines, we examined the DNA methylation status of a repeated sequence (satellite I) and the promoter regions of two single-copy genes (interleukin 3/cytokeratin) in aborted cloned fetuses, aborted fetuses derived from artificial insemination (AI), cloned adults and AI adults by bisulfite sequencing and restriction enzyme analysis. Two of four aborted cloned fetuses show very low methylation levels in the two single-copy gene promoter regions. One of the two fetuses also showed undermethylated status in the satellite I sequence. The other two aborted cloned fetuses have similar methylation levels to those of aborted AI fetuses. However, no difference in methylation was observed between cloned adults and AI adults. Our results demonstrate for the first time the undermethylated status of individual sequences in aborted cloned fetuses. These findings suggest that aberrant DNA methylation may contribute to the developmental failure of cloned bovine fetuses.

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Source
http://dx.doi.org/10.2741/1756DOI Listing

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