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核受体Nr5a2的迭代使用调节肝脏和胰腺发育的多个阶段。

Iterative use of nuclear receptor Nr5a2 regulates multiple stages of liver and pancreas development.

作者信息

Nissim Sahar, Weeks Olivia, Talbot Jared C, Hedgepeth John W, Wucherpfennig Julia, Schatzman-Bone Stephanie, Swinburne Ian, Cortes Mauricio, Alexa Kristen, Megason Sean, North Trista E, Amacher Sharon L, Goessling Wolfram

机构信息

Gastroenterology Division, Brigham and Women's Hospital, Harvard Medical School, Boston, MA 02115, USA; Genetics Division, Brigham and Women's Hospital, Harvard Medical School, Boston, MA 02115, USA; Dana-Farber Cancer Institute, Boston, MA 02115, USA.

Genetics Division, Brigham and Women's Hospital, Harvard Medical School, Boston, MA 02115, USA.

出版信息

Dev Biol. 2016 Oct 1;418(1):108-123. doi: 10.1016/j.ydbio.2016.07.019. Epub 2016 Jul 26.

Abstract

The stepwise progression of common endoderm progenitors into differentiated liver and pancreas organs is regulated by a dynamic array of signals that are not well understood. The nuclear receptor subfamily 5, group A, member 2 gene nr5a2, also known as Liver receptor homolog-1 (Lrh-1) is expressed in several tissues including the developing liver and pancreas. Here, we interrogate the role of Nr5a2 at multiple developmental stages using genetic and chemical approaches and uncover novel pleiotropic requirements during zebrafish liver and pancreas development. Zygotic loss of nr5a2 in a targeted genetic null mutant disrupted the development of the exocrine pancreas and liver, while leaving the endocrine pancreas intact. Loss of nr5a2 abrogated exocrine pancreas markers such as trypsin, while pancreas progenitors marked by ptf1a or pdx1 remained unaffected, suggesting a role for Nr5a2 in regulating pancreatic acinar cell differentiation. In the developing liver, Nr5a2 regulates hepatic progenitor outgrowth and differentiation, as nr5a2 mutants exhibited reduced hepatoblast markers hnf4α and prox1 as well as differentiated hepatocyte marker fabp10a. Through the first in vivo use of Nr5a2 chemical antagonist Cpd3, the iterative requirement for Nr5a2 for exocrine pancreas and liver differentiation was temporally elucidated: chemical inhibition of Nr5a2 function during hepatopancreas progenitor specification was sufficient to disrupt exocrine pancreas formation and enhance the size of the embryonic liver, suggesting that Nr5a2 regulates hepatic vs. pancreatic progenitor fate choice. Chemical inhibition of Nr5a2 at a later time during pancreas and liver differentiation was sufficient to block the formation of mature acinar cells and hepatocytes. These findings define critical iterative and pleiotropic roles for Nr5a2 at distinct stages of pancreas and liver organogenesis, and provide novel perspectives for interpreting the role of Nr5a2 in disease.

摘要

常见内胚层祖细胞逐步分化为肝脏和胰腺器官的过程受一系列动态信号调控,而这些信号目前尚未完全明确。核受体亚家族5 A组成员2基因nr5a2,也被称为肝脏受体同源物1(Lrh - 1),在包括发育中的肝脏和胰腺在内的多种组织中表达。在此,我们运用遗传和化学方法探究Nr5a2在多个发育阶段的作用,并揭示了斑马鱼肝脏和胰腺发育过程中全新的多效性需求。nr5a2在靶向基因敲除突变体中的合子缺失破坏了外分泌胰腺和肝脏的发育,而内分泌胰腺则保持完整。nr5a2的缺失消除了外分泌胰腺标志物如胰蛋白酶,而以ptf1a或pdx1标记的胰腺祖细胞不受影响,这表明Nr5a2在调节胰腺腺泡细胞分化中发挥作用。在发育中的肝脏中,Nr5a2调节肝祖细胞的增殖和分化,因为nr5a2突变体表现出肝母细胞标志物hnf4α和prox1以及分化的肝细胞标志物fabp10a减少。通过首次在体内使用Nr5a2化学拮抗剂Cpd3,我们从时间上阐明了Nr5a2对外分泌胰腺和肝脏分化的反复需求:在肝胰腺祖细胞特化过程中对Nr5a2功能进行化学抑制足以破坏外分泌胰腺的形成并增大胚胎肝脏的大小,这表明Nr5a2调节肝脏与胰腺祖细胞的命运选择。在胰腺和肝脏分化后期对Nr5a2进行化学抑制足以阻止成熟腺泡细胞和肝细胞的形成。这些发现明确了Nr5a2在胰腺和肝脏器官发生不同阶段的关键反复性和多效性作用,并为解释Nr5a2在疾病中的作用提供了新的视角。

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