Qyang Yibing, Martin-Puig Silvia, Chiravuri Murali, Chen Shuibing, Xu Huansheng, Bu Lei, Jiang Xin, Lin Lizhu, Granger Anne, Moretti Alessandra, Caron Leslie, Wu Xu, Clarke Jonathan, Taketo Makoto M, Laugwitz Karl-Ludwig, Moon Randall T, Gruber Peter, Evans Sylvia M, Ding Sheng, Chien Kenneth R
Cardiovascular Research Center, Massachusetts General Hospital, Charles River Plaza/CPZN 3208, 185 Cambridge Street, Boston, MA 02114-2790, USA.
Cell Stem Cell. 2007 Aug 16;1(2):165-79. doi: 10.1016/j.stem.2007.05.018. Epub 2007 Jun 14.
Isl1(+) cardiovascular progenitors and their downstream progeny play a pivotal role in cardiogenesis and lineage diversification of the heart. The mechanisms that control their renewal and differentiation are largely unknown. Herein, we show that the Wnt/beta-catenin pathway is a major component by which cardiac mesenchymal cells modulate the prespecification, renewal, and differentiation of isl1(+) cardiovascular progenitors. This microenvironment can be reconstituted by a Wnt3a-secreting feeder layer with ES cell-derived, embryonic, and postnatal isl1(+) cardiovascular progenitors. In vivo activation of beta-catenin signaling in isl1(+) progenitors of the secondary heart field leads to their massive accumulation, inhibition of differentiation, and outflow tract (OFT) morphogenic defects. In addition, the mitosis rate in OFT myocytes is significantly reduced following beta-catenin deletion in isl1(+) precursors. Agents that manipulate Wnt signals can markedly expand isl1(+) progenitors from human neonatal hearts, a key advance toward the cloning of human isl1(+) heart progenitors.
Isl1(+)心血管祖细胞及其下游子代细胞在心脏发生和心脏谱系多样化过程中发挥着关键作用。控制它们更新和分化的机制在很大程度上尚不清楚。在此,我们表明Wnt/β-连环蛋白信号通路是心脏间充质细胞调节Isl1(+)心血管祖细胞预特化、更新和分化的主要组成部分。这种微环境可以通过分泌Wnt3a的饲养层与胚胎干细胞衍生的、胚胎期和出生后的Isl1(+)心血管祖细胞来重建。在体内,次级心脏场的Isl1(+)祖细胞中β-连环蛋白信号的激活导致它们大量积累、分化受到抑制以及流出道(OFT)形态发生缺陷。此外,在Isl1(+)前体细胞中β-连环蛋白缺失后,OFT心肌细胞的有丝分裂率显著降低。操纵Wnt信号的试剂可以显著扩增来自人类新生儿心脏的Isl1(+)祖细胞,这是克隆人类Isl1(+)心脏祖细胞的一项关键进展。