Deshwar Ashish R, Onderisin John C, Aleksandrova Anastasiia, Yuan Xuefei, Burrows Jeffrey T A, Scott Ian C
Program in Developmental and Stem Cell Biology, The Hospital for Sick Children, Toronto, Ontario, Canada M5G 0A4; Department of Molecular Genetics, University of Toronto, Canada.
Program in Developmental and Stem Cell Biology, The Hospital for Sick Children, Toronto, Ontario, Canada M5G 0A4.
Dev Biol. 2016 Oct 1;418(1):17-27. doi: 10.1016/j.ydbio.2016.08.022. Epub 2016 Aug 20.
The Mesp family of transcription factors have been implicated in the early formation and migration of the cardiac lineage, although the precise molecular mechanisms underlying this process remain unknown. In this study we examine the function of Mesp family members in zebrafish cardiac development and find that Mespaa is remarkably efficient at promoting cardiac fates in normally non-cardiogenic cells. However, Mespaa is dispensable for normal cardiac formation. Despite no overt defects in cardiovascular specification, we find a consistent defect in cardiac laterality in mespaa null embryos. This is further exacerbated by the depletion of other mesp paralogues, highlighting a conserved role for the mesp family in left-right asymmetry, distinct from a function in cardiac specification. Despite an early requirement for mespaa to promote cardiogenesis, cells over-expressing mespaa are found to both exhibit unique cellular behaviors and activate the transcription of gata5 only after the completion of gastrulation. We propose that while mespaa remains capable of driving cardiac progenitor formation in zebrafish, it may not play an essential role in the cardiac regulatory network. Furthermore, the late activation of migration and cardiac gene transcription in mespaa over-expressing cells challenges previous studies on the timing of these events and provides intriguing questions for future study.
转录因子Mesp家族与心脏谱系的早期形成和迁移有关,尽管这一过程背后的确切分子机制仍不清楚。在本研究中,我们研究了Mesp家族成员在斑马鱼心脏发育中的功能,发现Mespaa在促进正常情况下非心脏源性细胞的心脏命运方面非常有效。然而,Mespaa对于正常心脏形成并非必需。尽管在心血管特化方面没有明显缺陷,但我们在mespaa基因敲除胚胎中发现了一致的心脏左右不对称缺陷。其他mesp旁系同源基因的缺失进一步加剧了这种情况,突出了mesp家族在左右不对称方面的保守作用,这与在心脏特化中的功能不同。尽管早期需要mespaa来促进心脏发生,但发现过表达mespaa的细胞仅在原肠胚形成完成后才表现出独特的细胞行为并激活gata5的转录。我们提出,虽然mespaa在斑马鱼中仍能够驱动心脏祖细胞的形成,但它可能在心脏调节网络中不发挥关键作用。此外,过表达mespaa的细胞中迁移和心脏基因转录的后期激活对之前关于这些事件时间的研究提出了挑战,并为未来研究提供了有趣的问题。