Hatzistergos Konstantinos E, Takeuchi Lauro M, Saur Dieter, Seidler Barbara, Dymecki Susan M, Mai Jia Jia, White Ian A, Balkan Wayne, Kanashiro-Takeuchi Rosemeire M, Schally Andrew V, Hare Joshua M
Interdisciplinary Stem Cell Institute, Leonard M. Miller School of Medicine, Miami, FL 33136;
Department of Internal Medicine, Mediziniche Klinik und Policlinik Der Technischen Universitat Munchen, Munich 81675, Germany;
Proc Natl Acad Sci U S A. 2015 Oct 20;112(42):13051-6. doi: 10.1073/pnas.1517201112. Epub 2015 Oct 5.
The degree to which cKit-expressing progenitors generate cardiomyocytes in the heart is controversial. Genetic fate-mapping studies suggest minimal contribution; however, whether or not minimal contribution reflects minimal cardiomyogenic capacity is unclear because the embryonic origin and role in cardiogenesis of these progenitors remain elusive. Using high-resolution genetic fate-mapping approaches with cKit(CreERT2/+) and Wnt1::Flpe mouse lines, we show that cKit delineates cardiac neural crest progenitors (CNC(kit)). CNC(kit) possess full cardiomyogenic capacity and contribute to all CNC derivatives, including cardiac conduction system cells. Furthermore, by modeling cardiogenesis in cKit(CreERT2)-induced pluripotent stem cells, we show that, paradoxically, the cardiogenic fate of CNC(kit) is regulated by bone morphogenetic protein antagonism, a signaling pathway activated transiently during establishment of the cardiac crescent, and extinguished from the heart before CNC invasion. Together, these findings elucidate the origin of cKit(+) cardiac progenitors and suggest that a nonpermissive cardiac milieu, rather than minimal cardiomyogenic capacity, controls the degree of CNC(kit) contribution to myocardium.
表达cKit的祖细胞在心脏中生成心肌细胞的程度存在争议。基因命运图谱研究表明其贡献极小;然而,极小的贡献是否反映了极小的心肌生成能力尚不清楚,因为这些祖细胞的胚胎起源和在心脏发生中的作用仍然难以捉摸。利用cKit(CreERT2/+)和Wnt1::Flpe小鼠品系的高分辨率基因命运图谱方法,我们表明cKit描绘了心脏神经嵴祖细胞(CNC(kit))。CNC(kit)具有完全的心肌生成能力,并对包括心脏传导系统细胞在内的所有CNC衍生物有贡献。此外,通过在cKit(CreERT2)诱导的多能干细胞中模拟心脏发生,我们发现,矛盾的是,CNC(kit)的心肌生成命运受骨形态发生蛋白拮抗作用调节,这是一种在心脏新月形成过程中短暂激活、在CNC侵入心脏之前从心脏中消失的信号通路。总之,这些发现阐明了cKit(+)心脏祖细胞的起源,并表明非允许性的心脏环境而非极小的心肌生成能力控制着CNC(kit)对心肌的贡献程度。