| Literature DB >> 25336737 |
Sowmya Parameswaran1, Xiaohuan Xia1, Ganapati Hegde1, Iqbal Ahmad2.
Abstract
In vertebrate retina, histogenesis occurs over an extended period. To sustain the temporal generation of diverse cell types, retinal progenitor cells (RPCs) must self-renew. However, self-renewal and regulation of RPCs remain poorly understood. Here, we demonstrate that cell-extrinsic factors coordinate with the epigenetic regulator high-mobility group AT-hook 2 (Hmga2) to regulate self-renewal of late retinal progenitor cells (RPCs). We observed that a small subset of RPCs was capable of clonal propagation and retained multipotentiality of parents in the presence of endothelial cells (ECs), known self-renewal regulators in various stem cell niches. The self-renewing effects, also observed in vivo, involve multiple intercellular signaling pathways, engaging Hmga2. As progenitors exhaust during retinal development, expression of Hmga2 progressively decreases. Analyses of Hmga2-expression perturbation, in vitro and in vivo, revealed that Hmga2 functionally helps to mediate cell-extrinsic influences on late-retinal progenitor self-renewal. Our results provide a framework for integrating the diverse intercellular influences elicited by epigenetic regulators for self-renewal in a dynamic stem cell niche: the developing vertebrate retina.Entities:
Keywords: Epigenetic; Hmga2; Progenitors; Rat; Retina; Self-renewal; Stem cells
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Year: 2014 PMID: 25336737 PMCID: PMC4302892 DOI: 10.1242/dev.107326
Source DB: PubMed Journal: Development ISSN: 0950-1991 Impact factor: 6.868