| Literature DB >> 26032417 |
Yanqing Huang1, Tomoaki Hamana1, Junchen Liu1, Cong Wang2, Lei An1, Pan You3, Julia Y F Chang1, Jianming Xu4, Chengliu Jin1, Zhongying Zhang5, Wallace L McKeehan1, Fen Wang6.
Abstract
Prostate stem cells (P-SCs) are capable of giving rise to all three lineages of prostate epithelial cells, which include basal, luminal, and neuroendocrine cells. Two types of P-SCs have been identified in both human and mouse adult prostates based on prostasphere or organoid cultures, cell lineage tracing, renal capsule implantation, and expression of luminal- and basal-specific proteins. The sphere-forming P-SCs are from the basal cell compartment that express P63, and are therefore designated as basal P-SCs (P-bSCs). Luminal P-SCs (P-lSCs) express luminal cytokeratins and Nkx3.1. Herein, we report that the type 2 FGF receptor (FGFR2) signaling axis is crucial for preserving stemness and preventing differentiation of P-bSCs. FGFR2 signaling mediated by FGFR substrate 2α (FRS2α) is indispensable for formation and maintenance of prostaspheres derived from P63(+) P-bSCs. Ablation of Fgfr2 in P63(+) cells in vitro causes the disintegration of prostaspheres. Ablation of Fgfr2 in vivo reduces the number of P63-expressing basal cells and enriches luminal cells. This suggests a basal stem cell-to-luminal cell differentiation. In addition, ablation of Fgfr2 in P63(+) cells causes defective postnatal development of the prostate. Therefore, the data indicate that FGFR2 signaling is critical for preserving stemness and preventing differentiation of P-bSCs.Entities:
Keywords: cell signaling; fibroblast growth factor (FGF); fibroblast growth factor receptor (FGFR); prostate; stem cell; stem cells
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Year: 2015 PMID: 26032417 PMCID: PMC4505024 DOI: 10.1074/jbc.M115.661066
Source DB: PubMed Journal: J Biol Chem ISSN: 0021-9258 Impact factor: 5.157