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一个独特的细胞和分子网络控制着脊椎动物肠道平滑肌细胞的分化。

An exclusive cellular and molecular network governs intestinal smooth muscle cell differentiation in vertebrates.

作者信息

Gays Dafne, Hess Christopher, Camporeale Annalisa, Ala Ugo, Provero Paolo, Mosimann Christian, Santoro Massimo M

机构信息

Department of Molecular Biotechnology and Health Sciences, Molecular Biotechnology Center, University of Torino, Turin 10126, Italy.

Institute of Molecular Life Sciences (IMLS), University of Zürich, Zürich 8057, Switzerland.

出版信息

Development. 2017 Feb 1;144(3):464-478. doi: 10.1242/dev.133926. Epub 2017 Jan 3.

DOI:10.1242/dev.133926
PMID:28049660
Abstract

Intestinal smooth muscle cells (iSMCs) are a crucial component of the adult gastrointestinal tract and support intestinal differentiation, peristalsis and epithelial homeostasis during development. Despite these crucial roles, the origin of iSMCs and the mechanisms responsible for their differentiation and function remain largely unknown in vertebrates. Here, we demonstrate that iSMCs arise from the lateral plate mesoderm (LPM) in a stepwise process. Combining pharmacological and genetic approaches, we show that TGFβ/Alk5 signaling drives the LPM ventral migration and commitment to an iSMC fate. The Alk5-dependent induction of zeb1a and foxo1a is required for this morphogenetic process: zeb1a is responsible for driving LPM migration around the gut, whereas foxo1a regulates LPM predisposition to iSMC differentiation. We further show that TGFβ, zeb1a and foxo1a are tightly linked together by miR-145 In iSMC-committed cells, TGFβ induces the expression of miR-145, which in turn is able to downregulate zeb1a and foxo1a The absence of miR-145 results in only a slight reduction in the number of iSMCs, which still express mesenchymal genes but fail to contract. Together, our data uncover a cascade of molecular events that govern distinct morphogenetic steps during the emergence and differentiation of vertebrate iSMCs.

摘要

肠道平滑肌细胞(iSMCs)是成体胃肠道的关键组成部分,在发育过程中支持肠道分化、蠕动和上皮稳态。尽管发挥着这些关键作用,但在脊椎动物中,iSMCs的起源以及其分化和功能的相关机制仍 largely未知。在这里,我们证明iSMCs是通过一个逐步的过程从侧板中胚层(LPM)产生的。结合药理学和遗传学方法,我们表明TGFβ/Alk5信号传导驱动LPM向腹侧迁移并决定其iSMC命运。这个形态发生过程需要Alk5依赖的zeb1a和foxo1a的诱导:zeb1a负责驱动LPM围绕肠道迁移,而foxo1a调节LPM对iSMC分化的易感性。我们进一步表明,在iSMC定向细胞中,TGFβ、zeb1a和foxo1a通过miR-145紧密相连。TGFβ诱导miR-145的表达,而miR-145反过来能够下调zeb1a和foxo1a。miR-145的缺失仅导致iSMCs数量略有减少,这些细胞仍表达间充质基因但无法收缩。总之,我们的数据揭示了一系列分子事件,这些事件在脊椎动物iSMCs的出现和分化过程中控制着不同的形态发生步骤。

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