Moore Joshua A, Moreno-Campos Rodrigo, Noah Arielle S, Singleton Eileen W, Uribe Rosa A
Department of Biosciences, Rice University, Houston, Texas, USA.
Biochemistry and Cell Biology Graduate Program, Rice University, Houston, Texas, USA.
Dev Dyn. 2025 Mar;254(3):272-287. doi: 10.1002/dvdy.737. Epub 2024 Sep 19.
The vertebrate enteric nervous system (ENS) consists of a series of interconnected ganglia within the gastrointestinal (GI) tract, formed during development following migration of enteric neural crest cells (ENCCs) into the primitive gut tube. Much work has been done to unravel the complex nature of extrinsic and intrinsic factors that regulate processes that direct migration, proliferation, and differentiation of ENCCs. However, ENS development is a complex process, and we still have much to learn regarding the signaling factors that regulate ENCC development.
Here in zebrafish, through transcriptomic, in situ transcript expression, immunohistochemical analysis, and chemical attenuation, we identified a time-dependent role for bone morphogenetic protein (BMP) in the maintenance of Phox2bb enteric progenitor numbers and/or time of differentiation of the progenitor pool. In support of our in silico transcriptomic analysis, we identified expression of a novel ENS ligand-encoding transcript, bmp5, within developmental regions of ENCCs. Through generation of a novel mutant bmp5 and bmp5 crispants, we identified a functional role for BMP5 in proper GI tract colonization, whereby phox2bb enteric progenitor numbers were reduced.
Altogether, this work identified time-dependent roles for BMP signaling and a novel extrinsic factor, BMP5, that is necessary for vertebrate ENS formation.
脊椎动物的肠神经系统(ENS)由胃肠道(GI)内一系列相互连接的神经节组成,这些神经节在发育过程中由肠神经嵴细胞(ENCCs)迁移至原始肠管后形成。为了解开调节ENCCs迁移、增殖和分化过程的外在和内在因素的复杂本质,已经开展了大量工作。然而,ENS发育是一个复杂的过程,对于调节ENCC发育的信号因子,我们仍有很多需要了解的地方。
在斑马鱼中,通过转录组学、原位转录表达、免疫组织化学分析和化学衰减,我们确定了骨形态发生蛋白(BMP)在维持Phox2bb肠祖细胞数量和/或祖细胞池分化时间方面具有时间依赖性作用。为支持我们的电子转录组学分析,我们在ENCCs的发育区域内鉴定出一种新的编码ENS配体的转录本bmp5的表达。通过生成新的bmp5突变体和bmp5基因敲降体,我们确定了BMP5在正常胃肠道定植中的功能作用,即Phox2bb肠祖细胞数量减少。
总之,这项工作确定了BMP信号传导的时间依赖性作用以及一种新的外在因子BMP5,它是脊椎动物ENS形成所必需的。