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睾丸干细胞龛直接调控体干细胞增殖因子。

Direct control of somatic stem cell proliferation factors by the testis stem cell niche.

机构信息

Centre for Regenerative Therapies Dresden, Technical University Dresden, Fetscherstraße 105, 01307 Dresden, Germany.

Sector for Molecular Evolution, Institute for Information Transmission Problems of the RAS (Kharkevich Institute), Moscow 127994, Russia.

出版信息

Development. 2018 Sep 3;145(17):dev156315. doi: 10.1242/dev.156315.

Abstract

Niches have traditionally been characterised as signalling microenvironments that allow stem cells to maintain their fate. This definition implicitly assumes that the various niche signals are integrated towards a binary fate decision between stemness and differentiation. However, observations in multiple systems have demonstrated that stem cell properties, such as proliferation and self-renewal, can be uncoupled at the level of niche signalling input, which is incompatible with this simplified view. We have studied the role of the transcriptional regulator Zfh1, a shared target of the Hedgehog and Jak/Stat niche signalling pathways, in the somatic stem cells of the testis. We found that Zfh1 binds and downregulates and , two tumour suppressor genes of the Hippo/Wts/Yki pathway, thereby restricting Yki activation and proliferation to the Zfh1 stem cells. These observations provide an unbroken link from niche signal input to an individual aspect of stem cell behaviour that does not, at any step, involve a fate decision. We discuss the relevance of these findings for an overall concept of stemness and niche function.

摘要

龛位传统上被定义为信号微环境,允许干细胞维持其命运。这个定义隐含地假设,各种龛位信号是朝着干细胞特性和分化之间的二元命运决定整合的。然而,在多个系统中的观察表明,干细胞特性,如增殖和自我更新,可以在龛位信号输入的水平上解耦,这与这种简化的观点不一致。我们研究了转录调节剂 Zfh1 的作用,它是 Hedgehog 和 Jak/Stat 龛位信号通路的共同靶标,在睾丸的体干细胞中。我们发现 Zfh1 结合并下调了 Hippo/Wts/Yki 通路的两个肿瘤抑制基因和 ,从而将 Yki 的激活和增殖限制在 Zfh1 干细胞中。这些观察结果提供了从龛位信号输入到干细胞行为的一个特定方面的连续联系,在任何步骤都不涉及命运决定。我们讨论了这些发现对干细胞特性和龛位功能的整体概念的相关性。

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