Peterkin Tessa, Gibson Abigail, Patient Roger
Weatherall Institute of Molecular Medicine, University of Oxford, Headington, Oxford OX3 9DS, UK.
Development. 2009 May;136(9):1465-74. doi: 10.1242/dev.032748. Epub 2009 Mar 18.
Over the past few years it has become clear that over half of the mammalian heart derives from outside the heart field as originally defined. Such a second heart field, however, has not been described in zebrafish, which could explain its smaller, two-chambered heart. Instead, zebrafish have a population of haemangioblasts, which is absent in mammalian embryos, raising the possibility that these cells represent the evolutionary ancestor of the second heart field. Here, we show for the first time that the genetic programmes of these anterior haemangioblasts and the adjacent heart field are co-regulated, by transcription factors previously associated with heart but not blood or endothelial development. We demonstrate that gata4, gata5 and gata6 are essential for anterior haemangioblast specification, and for subsequent myelopoiesis, acting as early as cloche and upstream of scl. The requirement for gata4, gata5 and gata6 in myeloid, endothelial and cardiac specification is in the mesoderm, but these factors also control, from within the endoderm and the yolk syncytial layer, the migration of the cardiac precursors as they differentiate. This genetic link between the blood/endothelial and cardiac programmes supports the notion that this haemangioblast population in zebrafish is an evolutionary antecedent of the second heart field, and has implications for the differentiation of haemangioblasts and cardiomyocytes from pluripotent cells, and for the origins of stem cells in the adult heart.
在过去几年中,已明确超过半数的哺乳动物心脏并非源自最初定义的心脏区域之外。然而,在斑马鱼中尚未描述过这样的第二心脏区域,这或许可以解释其较小的两腔心脏。相反,斑马鱼具有一群造血干细胞,而哺乳动物胚胎中不存在这种细胞,这增加了这些细胞代表第二心脏区域进化祖先的可能性。在此,我们首次表明,这些前部造血干细胞和相邻心脏区域的遗传程序是由先前与心脏发育相关但与血液或内皮细胞发育无关的转录因子共同调控的。我们证明,gata4、gata5和gata6对于前部造血干细胞的特化以及随后的髓系造血至关重要,其作用早在cloche阶段且在scl的上游。gata4、gata5和gata6在中胚层中对于髓系、内皮细胞和心脏特化是必需的,但这些因子也在内胚层和卵黄合胞体层内控制着心脏前体细胞分化时的迁移。血液/内皮细胞程序与心脏程序之间的这种遗传联系支持了这样一种观点,即斑马鱼中的这群造血干细胞是第二心脏区域的进化前身,并且对多能细胞分化为造血干细胞和心肌细胞以及成年心脏中干细胞的起源具有重要意义。