Division of Animal Sciences, Agharkar Research Institute, Pune 411 004, India.
J Biosci. 2011 Aug;36(3):517-29. doi: 10.1007/s12038-011-9086-1.
Noggin, along with other secreted bone morphogenetic protein (BMP) inhibitors, plays a crucial role in neural induction and neural tube patterning as well as in somitogenesis, cardiac morphogenesis and formation of the skeleton in vertebrates. The BMP signalling pathway is one of the seven fundamental pathways that drive embryonic development and pattern formation in animals. Understanding its evolutionary origin and role in pattern formation is, therefore, important to evolutionary developmental biology (evo-devo). We have studied the evolutionary origin of BMP-Noggin antagonism in hydra, which is a powerful diploblastic model to study evolution of pattern-forming mechanisms because of the unusual cellular dynamics during its pattern formation and its remarkable ability to regenerate. We cloned and characterized the noggin gene from hydra and found it to exhibit considerable similarity with its orthologues at the amino acid level. Microinjection of hydra Noggin mRNA led to duplication of the dorsoventral axis in Xenopus embryos, demonstrating its functional conservation across the taxa. Our data, along with those of others, indicate that the evolutionarily conserved antagonism between BMP and its inhibitors predates bilateral divergence. This article reviews the various roles of Noggin in different organisms and some of our recent work on hydra Noggin in the context of evolution of developmental signalling pathways.
Noggin 与其他分泌型骨形态发生蛋白 (BMP) 抑制剂一起,在神经诱导和神经管模式形成以及体节形成、心脏形态发生和脊椎动物骨骼形成中发挥着关键作用。BMP 信号通路是驱动胚胎发育和动物形态形成的七个基本通路之一。因此,了解其进化起源及其在形态形成中的作用对于进化发育生物学 (evo-devo) 非常重要。我们研究了水螅中 BMP-Noggin 拮抗作用的进化起源,水螅是研究模式形成机制进化的有力二胚层模型,因为其在模式形成过程中具有不寻常的细胞动力学和惊人的再生能力。我们从水螅中克隆并鉴定了 noggin 基因,发现其在氨基酸水平上与它的同源物具有相当大的相似性。水螅 Noggin mRNA 的显微注射导致了非洲爪蟾胚胎背腹轴的复制,证明了其在分类群之间的功能保守性。我们的数据以及其他人的数据表明,BMP 与其抑制剂之间的进化保守拮抗作用早于两侧分歧。本文综述了 Noggin 在不同生物体中的各种作用,以及我们最近在水螅 Noggin 发育信号通路进化方面的一些工作。