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Sonic Hedgehog 信号在胚胎发育过程中 Cyp26 表达所必需。

Sonic Hedgehog Signaling Is Required for Cyp26 Expression during Embryonic Development.

机构信息

Department of Oral Biochemistry, Sahlgrenska Academy at the University of Gothenburg, SE-40530 Göteborg, Sweden.

Department of Oral Biology, Minia University, Minia 51161, Egypt.

出版信息

Int J Mol Sci. 2019 May 8;20(9):2275. doi: 10.3390/ijms20092275.

Abstract

Deciphering how signaling pathways interact during development is necessary for understanding the etiopathogenesis of congenital malformations and disease. In several embryonic structures, components of the Hedgehog and retinoic acid pathways, two potent players in development and disease are expressed and operate in the same or adjacent tissues and cells. Yet whether and, if so, how these pathways interact during organogenesis is, to a large extent, unclear. Using genetic and experimental approaches in the mouse, we show that during development of ontogenetically different organs, including the tail, genital tubercle, and secondary palate, Sonic hedgehog (SHH) loss-of-function causes anomalies phenocopying those induced by enhanced retinoic acid signaling and that SHH is required to prevent supraphysiological activation of retinoic signaling through maintenance and reinforcement of expression of the genes. Furthermore, in other tissues and organs, disruptions of the Hedgehog or the retinoic acid pathways during development generate similar phenotypes. These findings reveal that rigidly calibrated Hedgehog and retinoic acid activities are required for normal organogenesis and tissue patterning.

摘要

解析信号通路在发育过程中的相互作用对于理解先天性畸形和疾病的病因发病机制是必要的。在几种胚胎结构中,发育和疾病的两个重要参与者——Hedgehog 和视黄酸途径的成分在相同或相邻的组织和细胞中表达和起作用。然而,这些途径在器官发生过程中是否以及如何相互作用在很大程度上尚不清楚。我们使用小鼠中的遗传和实验方法表明,在包括尾巴、生殖器结节和次生腭在内的不同胚胎起源的器官发育过程中,Sonic hedgehog(SHH)功能丧失会导致类似于增强的视黄酸信号诱导的异常表型,并且 SHH 通过维持和加强表达来防止视黄酸信号的超生理激活基因。此外,在其他组织和器官中,发育过程中 Hedgehog 或视黄酸途径的中断会产生相似的表型。这些发现表明,刚性校准的 Hedgehog 和视黄酸活性对于正常的器官发生和组织模式形成是必需的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/db02/6540044/9242ec20bb69/ijms-20-02275-g001.jpg

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