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音猬因子信号通路调控小鼠中从早期中胚层到心脏中胚层的最佳分化速度。

Sonic Hedgehog signaling regulates the optimal differentiation pace from early-stage mesoderm to cardiogenic mesoderm in mice.

作者信息

Inoue Satoshi, Nosetani Moe, Nakajima Yoshiro, Sakaki Shinichiro, Kato Hiroki, Saba Rie, Takeshita Naoki, Nishikawa Kosuke, Ueyama Atsuko, Matsuo Kazuhiko, Shigeta Masaki, Kobayashi Daisuke, Iehara Tomoko, Yashiro Kenta

机构信息

Division of Anatomy and Developmental Biology, Department of Anatomy, Graduate School of Medical Science, Kyoto Prefectural University of Medicine, Kyoto, Japan.

Department of Pediatrics, Graduate School of Medical Science, Kyoto Prefectural University of Medicine, Kyoto, Japan.

出版信息

Dev Growth Differ. 2025 Feb;67(2):75-84. doi: 10.1111/dgd.12955. Epub 2025 Jan 9.

Abstract

Sonic Hedgehog (Shh), encoding an extracellular signaling molecule, is vital for heart development. Shh null mutants show congenital heart disease due to left-right asymmetry defects stemming from functional anomaly in the midline structure in mice. Shh signaling is also known to affect cardiomyocyte differentiation, endocardium development, and heart morphogenesis, particularly in second heart field (SHF) cardiac progenitor cells that contribute to the right ventricle, outflow tract, and parts of the atrium. Despite extensive studies, our understanding remains incomplete. Notably, Shh signaling is suggested to promote cardiac differentiation, while paradoxically preventing premature differentiation of SHF progenitors. In this study, we elucidate the role of Shh signaling in the earliest phase of cardiac differentiation. Our meta-analysis of single-cell RNA sequencing suggests that cardiogenic nascent mesoderm cells expressing the bHLH transcription factor Mesp1 interact with axial mesoderm via Hh signaling. Activation of Hh signaling using a Smoothened agonist delayed or suppressed the differentiation of primitive streak cells expressing T-box transcription factor T to Mesp1 nascent mesoderm cells both in vitro and ex vivo. Conversely, inhibition of Hh signaling by cyclopamine facilitated cardiac differentiation. The reduction of Eomes, an inducer of Mesp1, by Hh signaling appears to be the underlying mechanism of this phenomenon. Our data suggest that SHH secreted from axial mesoderm inhibits premature differentiation of T cells to Mesp1 nascent mesoderm cells, thereby regulating the pace of cardiac differentiation. These findings enhance our comprehension of Shh signaling in cardiac development, underscoring its crucial role in early cardiac differentiation.

摘要

音猬因子(Shh)编码一种细胞外信号分子,对心脏发育至关重要。Shh基因敲除突变体由于小鼠中线结构功能异常导致的左右不对称缺陷而出现先天性心脏病。已知Shh信号传导也会影响心肌细胞分化、心内膜发育和心脏形态发生,特别是在对右心室、流出道和部分心房有贡献的第二心脏场(SHF)心脏祖细胞中。尽管进行了广泛研究,但我们的理解仍不完整。值得注意的是,Shh信号传导被认为可促进心脏分化,而自相矛盾的是,它又能防止SHF祖细胞过早分化。在本研究中,我们阐明了Shh信号传导在心脏分化最早阶段的作用。我们对单细胞RNA测序的荟萃分析表明,表达bHLH转录因子Mesp1的心脏发生新生中胚层细胞通过Hh信号传导与轴旁中胚层相互作用。使用 smoothened 激动剂激活Hh信号传导在体外和离体实验中均延迟或抑制了表达T盒转录因子T的原始条纹细胞向Mesp1新生中胚层细胞的分化。相反,环杷明抑制Hh信号传导则促进了心脏分化。Hh信号传导导致Mesp1诱导因子Eomes减少似乎是这一现象的潜在机制。我们的数据表明,轴旁中胚层分泌的SHH抑制T细胞过早分化为Mesp1新生中胚层细胞,从而调节心脏分化的速度。这些发现增强了我们对Shh信号传导在心脏发育中作用的理解,强调了其在早期心脏分化中的关键作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ab36/11842887/5af32596f490/DGD-67-75-g002.jpg

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