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Spatially Restricted Stromal Wnt Signaling Restrains Prostate Epithelial Progenitor Growth through Direct and Indirect Mechanisms

机译:空间限制的基质Wnt信号传导通过直接和间接机制来抑制前列腺上皮祖细胞生长

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摘要

Cell-autonomous Wnt signaling has well-characterized functions in controlling stem cell activity, including in the prostate. While niche cells secrete Wnt ligands, the effects of Wnt signaling in niche cells per se are less understood. Here, we show that stromal cells in the proximal prostatic duct near the urethra, a mouse prostate stem cell niche, not only produce multiple Wnt ligands but also exhibit strong Wnt/beta-catenin activity. The non-canonical Wnt ligand Wnt5a, secreted by proximal stromal cells, directly inhibits proliefration of prostate epithelial stem or progenitor cells whereas stromal cell-autonomous canonical Wnt/b-catenin signaling indirectly suppresses prostate stem or progenitor activity via the transforming growth factor beta (TGF beta) pathway. Collectively, these pathways restrain the proliferative potential of epithelial cells in the proximal prostatic ducts. Human prostate likewise exhibits spatially restricted distribution of stromal Wnt/b-catenin activity, suggesting a conserved mechanism for tissue patterning. Thus, this study shows how distinct stromal signaling mechanisms within the prostate cooperate to regulate tissue homeostasis.
机译:细胞 - 自主的WNT信号传导具有控制干细胞活性的特征功能,包括在前列腺中。虽然Niche细胞分泌WNT配体,但是Wnt信号传导在Niche细胞本身中的影响较少被理解。在这里,我们显示尿道近前列腺导管中的基质细胞,小鼠前列腺干细胞Niche,不仅产生多个Wnt配体,而且表现出强烈的Wnt /β-连环蛋白活性。由近端基质细胞分泌的非规范Wnt配体Wnt5a直接抑制前列腺上皮茎或祖细胞的扩增,而基质细胞 - 自主典型的典型Wnt / b-catenin信号传导间接抑制前列腺酸性茎或祖细胞活性通过转化生长因子β( TGFβ)途径。总的来说,这些途径限制了近端前列腺中上皮细胞的增殖性潜力。人的前列腺同样表现出用于基质Wnt / B-catenin活性的空间限制分布,表明组织图案化的保守机制。因此,该研究表明,前列腺内的不同基质信号传导机制如何合作以调节组织稳态。

著录项

  • 来源
    《Cell stem cell》 |2019年第5期|共22页
  • 作者单位

    Baylor Coll Med Dept Mol &

    Cellular Biol Houston TX 77030 USA;

    Univ Washington Dept Urol Seattle WA 98109 USA;

    Univ Washington Dept Urol Seattle WA 98109 USA;

    Univ Washington Dept Urol Seattle WA 98109 USA;

    Baylor Coll Med Dan L Duncan Comprehens Canc Ctr Houston TX 77030 USA;

    Baylor Coll Med Dept Mol &

    Cellular Biol Houston TX 77030 USA;

    Fred Hutch Canc Res Ctr Human Biol Div Seattle WA 98109 USA;

    Univ Washington Dept Pathol Seattle WA 98109 USA;

    Fred Hutch Canc Res Ctr Human Biol Div Seattle WA 98109 USA;

    Shanghai Jiao Tong Univ Sch Med RenJi Hosp Dept Urol Shanghai Peoples R China;

    Shanghai Jiao Tong Univ Sch Med RenJi Hosp Dept Urol Shanghai Peoples R China;

    Max Delbruck Ctr Mol Med MDC Robert Rossle Str 10 D-13092 Berlin Germany;

    Kyoto Univ Grad Sch Med Div Expt Therapeut Kyoto Japan;

    Agcy Sci Technol &

    Res Inst Mol &

    Cell Biol Singapore Singapore;

    Baylor Coll Med Dan L Duncan Comprehens Canc Ctr Houston TX 77030 USA;

    Baylor Coll Med Dan L Duncan Comprehens Canc Ctr Houston TX 77030 USA;

    Baylor Coll Med Dept Mol &

    Cellular Biol Houston TX 77030 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 细胞生物学;
  • 关键词

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