Department of Biological Sciences, Graduate School of Science, University of Tokyo, 7-3-1 Hongo, Bunkyo-ku, Tokyo 113-0033, Japan.
Dev Growth Differ. 2011 Oct;53(8):911-23. doi: 10.1111/j.1440-169X.2011.01299.x. Epub 2011 Oct 14.
Gradient formation and signaling ranges of secreted proteins are crucial problems to understand how morphogens work for positional information and patterning in animal development. Yet, extracellular behaviors of secreted signaling molecules remain unexplored compared to their downstream pathways inside the cell. Recent advances in bioimaging make it possible to directly visualize morphogen molecules, and this simple strategy has, at least partly, succeeded in uncovering molecular behaviors of morphogens, such as Wnt (wingless-type MMTV integration site family member) and BMP (bone morphogenetic protein) as well as secreted Wnt binding proteins, sFRPs (secreted Frizzled-related proteins), in embryonic tissues. Here, we review the regulation of Wnt signaling by sFRPs, focusing on extracellular regulation of Wnt ligands in comparison with other morphogens. We also discuss evolutionary aspects with comprehensive syntenic and phylogenetic information about vertebrate sfrp genes. We newly annotated several sfrp genes including sfrp2-like 1 (sfrp2l1) in frogs and fishes and crescent in mammals.
梯度形成和分泌蛋白的信号范围是理解形态发生素如何在动物发育中发挥位置信息和模式形成作用的关键问题。然而,与细胞内的下游途径相比,细胞外分泌信号分子的行为仍未得到探索。生物成像的最新进展使得直接可视化形态发生素分子成为可能,这种简单的策略至少在一定程度上成功地揭示了形态发生素的分子行为,例如 Wnt(无翅型 MMTV 整合位点家族成员)和 BMP(骨形态发生蛋白)以及分泌的 Wnt 结合蛋白、sFRP(分泌卷曲相关蛋白)在胚胎组织中的行为。在这里,我们综述了 sFRP 对 Wnt 信号的调节,重点介绍了与其他形态发生素相比,Wnt 配体的细胞外调节。我们还讨论了进化方面的问题,包括脊椎动物 sfrp 基因的全面同基因和系统发育信息。我们新注释了包括青蛙和鱼类中的 sfrp2 样 1(sfrp2l1)和哺乳动物中的 crescent 在内的几个 sfrp 基因。