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FUCCI tracking shows cell-cycle-dependent Neurog3 variation in pancreatic progenitors.

Citation
Bechard, M. E., et al. “Fucci Tracking Shows Cell-Cycle-Dependent Neurog3 Variation In Pancreatic Progenitors.”. Genesis (New York, N.y. : 2000).
Center Vanderbilt University
Author Matthew E Bechard, Eric D Bankaitis, Alessandro Ustione, David W Piston, Mark A Magnuson, Christopher E Wright V
Keywords endocrine-biased, lineage priming, progenitor
Abstract

During pancreas organogenesis, Neurog3 endocrine-committing cells are generated from a population of Sox9 mitotic progenitors with only a low level of Neurog3 transcriptional activity (Neurog3 ). Low-level Neurog3 protein, in Neurog3 cells, is required to maintain their mitotic endocrine-lineage-primed status. Herein, we describe a Neurog3-driven FUCCI cell-cycle reporter (Neurog3 ) derived from a Neurog3 BAC transgenic reporter that functions as a loxed cassette acceptor (LCA). In cycling Sox9 Neurog3 progenitors, the majority of cells in S-G -M phases have undetectable levels of Neurog3 with increased expression of endocrine progenitor markers, while those in G have low Neurog3 levels with increased expression of endocrine differentiation markers. These findings support a model in which variations in Neurog3 protein levels are coordinated with cell-cycle phase progression in Neurog3 progenitors with entrance into G triggering a concerted effort, beyond increasing Neurog3 levels, to maintain an endocrine-lineage-primed state by initiating expression of the downstream endocrine differentiation program prior to endocrine-commitment.

Year of Publication
2017
Journal
Genesis (New York, N.Y. : 2000)
Volume
55
Issue
9
Date Published
12/2017
ISSN Number
1526-968X
DOI
10.1002/dvg.23050
Alternate Journal
Genesis
PMID
28772022
PMCID
PMC5750046
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