Horton Corrigan, Liu Yueli, Yu Chuan, Xie Qing, Wang Zhu A
Department of Molecular, Cell, and Developmental Biology, University of California, Santa Cruz, CA 95064, USA.
Department of Molecular, Cell, and Developmental Biology, University of California, Santa Cruz, CA 95064, USA
Biol Open. 2019 Oct 1;8(10):bio045724. doi: 10.1242/bio.045724.
Prostate epithelial basal cells are highly plastic in their luminal differentiation capability. Basal stem cells actively produce luminal cells during organogenesis, but become restricted in the adult prostate unless receiving oncogenic or inflammatory stimuli. Given that the number of luminal cells increases relative to basal cells through development and that equilibrium is reached in the adulthood, we hypothesize that a negative-feedback mechanism exists to inhibit basal-to-luminal differentiation. We provide evidence supporting this hypothesis by comparing murine prostatic growth in a tissue reconstitution assay with cell recombinants of different basal-to-luminal ratios. Additionally, in organoid culture, hybrid organoids derived from adjacent basal and luminal cells showed reduced basal stem cell activities, suggesting contact inhibition. Importantly, removal of adult luminal cells via either an inducible Cre/-Dre/ dual-lineage-tracing system or orthotopic trypsin injection led to robust reactivation of basal stem cell activities, which acts independent of androgen. These data illustrate the prostate organ as a distinctive paradigm where cell contact from differentiated daughter cells restricts adult stem cell multipotency to maintain the steady-state epithelial architecture.
前列腺上皮基底细胞在其向管腔细胞分化的能力方面具有高度可塑性。基底干细胞在器官发生过程中积极产生管腔细胞,但在成年前列腺中受到限制,除非受到致癌或炎症刺激。鉴于管腔细胞的数量在发育过程中相对于基底细胞增加,并且在成年期达到平衡,我们假设存在一种负反馈机制来抑制基底细胞向管腔细胞的分化。我们通过在组织重组试验中比较不同基底细胞与管腔细胞比例的细胞重组体的小鼠前列腺生长情况,为这一假设提供了证据。此外,在类器官培养中,源自相邻基底细胞和管腔细胞的杂交类器官显示基底干细胞活性降低,提示接触抑制。重要的是,通过诱导型Cre/-Dre/双谱系追踪系统或原位注射胰蛋白酶去除成年管腔细胞,导致基底干细胞活性强烈重新激活,这一过程独立于雄激素。这些数据表明前列腺器官是一种独特的模式,其中分化子代细胞的细胞接触限制了成年干细胞的多能性,以维持稳态上皮结构。