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由富集于成年肠道区室边界的无翅/无翼型MMTV整合位点家族(Wingless/Wnt)信号梯度调控干细胞增殖和细胞命运决定

Regulation of Stem Cell Proliferation and Cell Fate Specification by Wingless/Wnt Signaling Gradients Enriched at Adult Intestinal Compartment Boundaries.

作者信息

Tian Ai, Benchabane Hassina, Wang Zhenghan, Ahmed Yashi

机构信息

Department of Genetics and the Norris Cotton Cancer Center, Geisel School of Medicine at Dartmouth College, Hanover, New Hampshire, United States of America.

出版信息

PLoS Genet. 2016 Feb 4;12(2):e1005822. doi: 10.1371/journal.pgen.1005822. eCollection 2016 Feb.

Abstract

Intestinal stem cell (ISC) self-renewal and proliferation are directed by Wnt/β-catenin signaling in mammals, whereas aberrant Wnt pathway activation in ISCs triggers the development of human colorectal carcinoma. Herein, we have utilized the Drosophila midgut, a powerful model for ISC regulation, to elucidate the mechanisms by which Wingless (Wg)/Wnt regulates intestinal homeostasis and development. We provide evidence that the Wg signaling pathway, activation of which peaks at each of the major compartment boundaries of the adult intestine, has essential functions. Wg pathway activation in the intestinal epithelium is required not only to specify cell fate near compartment boundaries during development, but also to control ISC proliferation within compartments during homeostasis. Further, in contrast with the previous focus on Wg pathway activation within ISCs, we demonstrate that the primary mechanism by which Wg signaling regulates ISC proliferation during homeostasis is non-autonomous. Activation of the Wg pathway in absorptive enterocytes is required to suppress JAK-STAT signaling in neighboring ISCs, and thereby their proliferation. We conclude that Wg signaling gradients have essential roles during homeostasis and development of the adult intestine, non-autonomously controlling stem cell proliferation inside compartments, and autonomously specifying cell fate near compartment boundaries.

摘要

在哺乳动物中,肠道干细胞(ISC)的自我更新和增殖由Wnt/β-连环蛋白信号传导调控,而ISC中Wnt通路的异常激活会引发人类结直肠癌的发生。在此,我们利用果蝇中肠这一用于ISC调控的强大模型,来阐明无翅(Wg)/Wnt调节肠道稳态和发育的机制。我们提供的证据表明,Wg信号通路在成年肠道的每个主要区室边界处激活达到峰值,具有重要功能。肠道上皮中Wg通路的激活不仅在发育过程中确定区室边界附近的细胞命运是必需的,而且在稳态期间控制区室内的ISC增殖也是必需的。此外,与之前对ISC内Wg通路激活的关注不同,我们证明Wg信号在稳态期间调节ISC增殖的主要机制是非自主性的。吸收性肠细胞中Wg通路的激活是抑制相邻ISC中的JAK-STAT信号传导从而抑制其增殖所必需的。我们得出结论,Wg信号梯度在成年肠道的稳态和发育过程中具有重要作用,非自主性地控制区室内的干细胞增殖,并自主性地确定区室边界附近的细胞命运。

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