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Cell cycle regulation during development and dormancy in embryos of the annual killifishAustrofundulus limnaeus

Jason E. Podrabsky, Kristin M. Culpepper

Cell Cycle · 2012 · ▲ 34 citations

Abstract

Embryos of the annual killifish Austrofundulus limnaeus can enter into a state of metabolic dormancy, termed diapause, as a normal part of their development. In addition, these embryos can also survive for prolonged sojourns in the complete absence of oxygen. Dormant embryos support their metabolism using anaerobic metabolic pathways, regardless of oxygen availability. Dormancy in diapause is associated with high ATP and a positive cellular energy status, while anoxia causes a severe reduction in ATP content and large reductions in adenylate energy charge and ATP/ADP ratios. Most cells are arrested in the G 1/G 0 phase of the cell cycle during diapause and in response to oxygen deprivation. In this paper, we review what is known about the physiological and biochemical mechanisms that support metabolic dormancy in this species. We also highlight the great potential that this model holds for identifying novel therapies for human diseases such as heart attack, stroke and cancer.

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Provenance

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OpenAlex
DOI
10.4161/cc.19881
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2026-09-13 MST

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APA
Podrabsky, J.E., &amp; Culpepper, K.M. (2012). Cell cycle regulation during development and dormancy in embryos of the annual killifishAustrofundulus limnaeus. <em>Cell Cycle</em>. https://doi.org/10.4161/cc.19881
Vancouver
Podrabsky JE, Culpepper KM. Cell cycle regulation during development and dormancy in embryos of the annual killifishAustrofundulus limnaeus. Cell Cycle. 2012. doi:10.4161/cc.19881.
BibTeX
@article{jason2012Cellcy, title = {Cell cycle regulation during development and dormancy in embryos of the annual killifishAustrofundulus limnaeus}, author = {Jason E. Podrabsky and Kristin M. Culpepper}, journal = {Cell Cycle}, year = {2012}, doi = {10.4161/cc.19881}, }

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