Department of Molecular Biology and Genetics, Cornell University, Ithaca, New York, United States of America.
PLoS Biol. 2012;10(4):e1001307. doi: 10.1371/journal.pbio.1001307. Epub 2012 Apr 10.
Larvae of the nematode Caenorhabditis elegans must choose between reproductive development and dauer diapause. This decision is based on sensing of environmental inputs and dauer pheromone, a small molecule signal that serves to monitor population density. These signals are integrated via conserved neuroendocrine pathways that converge on steroidal ligands of the nuclear receptor DAF-12, a homolog of the mammalian vitamin D receptor and liver X receptor. DAF-12 acts as the main switch between gene expression programs that drive either reproductive development or dauer entry. Extensive studies in the past two decades demonstrated that biosynthesis of two bile acid-like DAF-12 ligands, named dafachronic acids (DA), controls developmental fate. In this issue of PLoS Biology, Wollam et al. showed that a conserved steroid-modifying enzyme, DHS-16, introduces a key feature in the structures of the DAF-12 ligands, closing a major gap in the DA biosynthesis pathway. The emerging picture of DA biosynthesis in C. elegans enables us to address a key question in the field: how are complex environmental signals integrated to enforce binary, organism-wide decisions on developmental fate? Schaedel et al. demonstrated that pheromone and DA serve as competing signals, and that a positive feedback loop based on regulation of DA biosynthesis ensures organism-wide commitment to reproductive development. Considering that many components of DA signaling are highly conserved, ongoing studies in C. elegans may reveal new aspects of bile acid function and lifespan regulation in mammals.
秀丽隐杆线虫的幼虫必须在生殖发育和 dauer 滞育之间做出选择。这一决定基于对环境输入和 dauer 信息素的感知,后者是一种小分子信号,用于监测种群密度。这些信号通过保守的神经内分泌途径进行整合,这些途径汇聚到核受体 DAF-12 的甾体配体上,DAF-12 是哺乳动物维生素 D 受体和肝 X 受体的同源物。DAF-12 作为驱动生殖发育或 dauer 进入的基因表达程序之间的主要开关。在过去的二十年中,广泛的研究表明,两种胆酸样 DAF-12 配体(称为 dafachronic 酸,DA)的生物合成控制着发育命运。在本期《PLoS 生物学》中,Wollam 等人表明,一种保守的类固醇修饰酶 DHS-16,在 DAF-12 配体的结构中引入了一个关键特征,填补了 DA 生物合成途径中的一个主要空白。秀丽隐杆线虫中 DA 生物合成的新图景使我们能够解决该领域的一个关键问题:如何整合复杂的环境信号来强制进行二元的、全局性的发育命运决策?Schaedel 等人证明,信息素和 DA 作为竞争信号,基于 DA 生物合成的调控的正反馈回路确保了全局性的生殖发育承诺。考虑到 DA 信号转导的许多成分高度保守,秀丽隐杆线虫的持续研究可能会揭示出哺乳动物中胆酸功能和寿命调节的新方面。