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维甲酸直接向斑马鱼内胚层发出信号,以确定表达胰岛素的β细胞。

Retinoids signal directly to zebrafish endoderm to specify insulin-expressing beta-cells.

作者信息

Stafford David, White Richard J, Kinkel Mary D, Linville Angela, Schilling Thomas F, Prince Victoria E

机构信息

The Committee on Developmental Biology, The University of Chicago, 1027 East 57th Street, IL 60637, USA.

出版信息

Development. 2006 Mar;133(5):949-56. doi: 10.1242/dev.02263. Epub 2006 Feb 1.

Abstract

During vertebrate development, the endodermal germ layer becomes regionalized along its anteroposterior axis to give rise to a variety of organs, including the pancreas. Genetic studies in zebrafish and mice have established that the signaling molecule retinoic acid (RA) plays a crucial role in endoderm patterning and promotes pancreas development. To identify how RA signals to pancreatic progenitors in the endoderm, we have developed a novel cell transplantation technique, using the ability of the SOX32 transcription factor to confer endodermal identity, to selectively target reagents to (or exclude them from) the endodermal germ layer of the zebrafish. We show that RA synthesized in the anterior paraxial mesoderm adjacent to the foregut is necessary for the development of insulin-expressing beta-cells. Conversely, RA receptor function is required in the foregut endoderm for insulin expression, but not in mesoderm or ectoderm. We further show that activation of RA signal transduction in endoderm alone is sufficient to induce insulin expression. Our results reveal that RA is an instructive signal from the mesoderm that directly induces precursors of the endocrine pancreas. These findings suggest that RA will have important applications in the quest to induce islets from stem cells for therapeutic uses.

摘要

在脊椎动物发育过程中,内胚层胚层沿其前后轴区域化,形成包括胰腺在内的多种器官。斑马鱼和小鼠的遗传学研究表明,信号分子视黄酸(RA)在内胚层模式形成中起关键作用,并促进胰腺发育。为了确定RA如何向内胚层中的胰腺祖细胞发出信号,我们开发了一种新的细胞移植技术,利用SOX32转录因子赋予内胚层特性的能力,将试剂选择性地靶向斑马鱼的内胚层胚层(或使其排除在外)。我们发现,在前肠附近的前轴旁中胚层中合成的RA对于表达胰岛素的β细胞的发育是必需的。相反,前肠内胚层中RA受体功能对于胰岛素表达是必需的,但在中胚层或外胚层中则不是。我们进一步表明,仅在内胚层中激活RA信号转导就足以诱导胰岛素表达。我们的结果表明,RA是来自中胚层的一种指导性信号,可直接诱导内分泌胰腺的前体。这些发现表明,RA在从干细胞诱导胰岛用于治疗用途的研究中将具有重要应用。

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