咽囊为弓动脉祖细胞的鉴定提供了一个生态位微环境

Aihua Mao, Mingming Zhang, Linwei Li, Jie Liu, Guozhu Ning, Yu Cao, Qiang Wang
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引用次数: 5

摘要

配对咽部弓动脉(PAAs)是胚胎发生期间连接心脏和背主动脉的短暂血管。虽然PAA畸形经常与咽袋缺损一起发生,但这些邻近组织之间的功能相互作用在很大程度上仍不清楚。在这里,我们报告咽囊是必要的PAA祖细胞规格在斑马鱼胚胎。我们发现咽袋的分割与PAA祖细胞群的出现在时空上是一致的。这些囊袋在离散区域与咽中胚层物理关联,并通过表达BMP蛋白为PAA祖细胞提供一个微环境。具体来说,袋源性BMP2a和BMP5是负责激活咽中胚层BMP/Smad通路的主要生态位线索,从而促进祖细胞的特异性。此外,BMP2a和BMP5在PAA祖细胞中对时钟基因npas4l的表达起诱导作用。时钟突变体在指定PAA祖细胞时表现出显著的失败,并在咽中表皮中显示头肌标记物的异位表达。因此,我们的研究结果支持咽袋在通过BMP2a/5表达建立PAA形态发生的祖生态位中的关键作用。摘要:咽囊来源的BMP2a和BMP5是斑马鱼胚胎发育过程中诱导弓动脉祖细胞形成的关键生态位线索。
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Pharyngeal pouches provide a niche microenvironment for arch artery progenitor specification
ABSTRACT The paired pharyngeal arch arteries (PAAs) are transient blood vessels connecting the heart with the dorsal aorta during embryogenesis. Although PAA malformations often occur along with pharyngeal pouch defects, the functional interaction between these adjacent tissues remains largely unclear. Here, we report that pharyngeal pouches are essential for PAA progenitor specification in zebrafish embryos. We reveal that the segmentation of pharyngeal pouches coincides spatiotemporally with the emergence of PAA progenitor clusters. These pouches physically associate with pharyngeal mesoderm in discrete regions and provide a niche microenvironment for PAA progenitor commitment by expressing BMP proteins. Specifically, pouch-derived BMP2a and BMP5 are the primary niche cues responsible for activating the BMP/Smad pathway in pharyngeal mesoderm, thereby promoting progenitor specification. In addition, BMP2a and BMP5 play an inductive function in the expression of the cloche gene npas4l in PAA progenitors. cloche mutants exhibit a striking failure to specify PAA progenitors and display ectopic expression of head muscle markers in the pharyngeal mesoderm. Therefore, our results support a crucial role for pharyngeal pouches in establishing a progenitor niche for PAA morphogenesis via BMP2a/5 expression. Summary: Pharyngeal pouch-derived BMP2a and BMP5 are the key niche cues that induce arch artery progenitor specification during zebrafish embryonic development.
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