Reprogramming of telomerase activity and rebuilding of telomere length in cloned cattle
Open Access
- 16 January 2001
- journal article
- research article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 98 (3) , 1077-1082
- https://doi.org/10.1073/pnas.031559298
Abstract
Nuclear reprogramming requires the removal of epigenetic modifications imposed on the chromatin during cellular differentiation and division. The mammalian oocyte can reverse these alterations to a state of totipotency, allowing the production of viable cloned offspring from somatic cell nuclei. To determine whether nuclear reprogramming is complete in cloned animals, we assessed the telomerase activity and telomere length status in cloned embryos, fetuses, and newborn offspring derived from somatic cell nuclear transfer. In this report, we show that telomerase activity was significantly (P < 0.05) diminished in bovine fibroblast donor cells compared with embryonic stem-like cells, and surprisingly was 16-fold higher in fetal fibroblasts compared with adult fibroblasts (P < 0.05). Cell passaging and culture periods under serum starvation conditions significantly decreased telomerase activity by approximately 30–50% compared with nontreated early passage cells (P < 0.05). Telomere shortening was observed during in vitro culture of bovine fetal fibroblasts and in very late passages of embryonic stem-like cells. Reprogramming of telomerase activity was apparent by the blastocyst stage of postcloning embryonic development, and telomere lengths were longer (15–23 kb) in cloned fetuses and offspring than the relatively short mean terminal restriction fragment lengths (14–18 kb) observed in adult donor cells. Overall, telomere lengths of cloned fetuses and newborn calves (≈20 kb) were not significantly different from those of age-matched control animals (P > 0.05). These results demonstrate that cloned embryos inherit genomic modifications acquired during the donor nuclei's in vivo and in vitro period but are subsequently reversed during development of the cloned animal.Keywords
This publication has 48 references indexed in Scilit:
- Full-term development of mice from enucleated oocytes injected with cumulus cell nucleiNature, 1998
- Cloned Transgenic Calves Produced from Nonquiescent Fetal FibroblastsScience, 1998
- Telomerase activity in candidate stem cells from fetal liver and adult bone marrow.1998
- Accelerated telomere shortening in fibroblasts after extended periods of confluency.Free Radical Biology & Medicine, 1998
- TRF2 Protects Human Telomeres from End-to-End FusionsCell, 1998
- Nucleolar and mitochondrial morphology in bovine embryos reconstructed by nuclear transferMolecular Reproduction and Development, 1996
- Regulation of Telomerase Activity in Immortal Cell LinesMolecular and Cellular Biology, 1996
- From telomere loss to p53 induction and activation of a DNA-damage pathway at senescence: The telomere loss/DNA damage model of cell agingExperimental Gerontology, 1996
- Telomere Shortening Is Associated with Cell Division in Vitro and in VivoExperimental Cell Research, 1995
- Developmental and tissue-specific regulation of mouse telomerase and telomere length.Proceedings of the National Academy of Sciences, 1995