Department of Biologic and Materials Sciences, University of Michigan - Ann Arbor, 1011 N. University Ave, Ann Arbor, MI 48109, USA.
Department of Biologic and Materials Sciences, University of Michigan - Ann Arbor, 1011 N. University Ave, Ann Arbor, MI 48109, USA.
Dev Biol. 2014 Jun 15;390(2):191-207. doi: 10.1016/j.ydbio.2014.03.008. Epub 2014 Mar 27.
BMP signaling plays an essential role in second heart field-derived heart and arterial trunk development, including myocardial differentiation, right ventricular growth, and interventricular, outflow tract and aortico-pulmonary septation. It is mediated by a number of different BMP ligands, and receptors, many of which are present simultaneously. The mechanisms by which they regulate morphogenetic events and degree of redundancy amongst them have still to be elucidated. We therefore assessed the role of BMP Type I receptor AcvR1 in anterior second heart field-derived cell development, and compared it with that of BmpR1a. By removing Acvr1 using the driver Mef2c[AHF]-Cre, we show that AcvR1 plays an essential role in arterial pole morphogenesis, identifying defects in outflow tract wall and cushion morphology that preceded a spectrum of septation defects from double outlet right ventricle to common arterial trunk in mutants. Its absence caused dysregulation in gene expression important for myocardial differentiation (Isl1, Fgf8) and regional identity (Tbx2, Tbx3, Tbx20, Tgfb2). Although these defects resemble to some degree those in the equivalent Bmpr1a mutant, a novel gene knock-in model in which Bmpr1a was expressed in the Acvr1 locus only partially restored septation in Acvr1 mutants. These data show that both BmpR1a and AcvR1 are needed for normal heart development, in which they play some non-redundant roles, and refine our understanding of the genetic and morphogenetic processes underlying Bmp-mediated heart development important in human congenital heart disease.
BMP 信号在第二心脏场衍生的心脏和动脉干发育中起着至关重要的作用,包括心肌分化、右心室生长以及室间隔、流出道和主-肺动脉隔的形成。它由许多不同的 BMP 配体和受体介导,其中许多同时存在。它们调节形态发生事件的机制以及它们之间冗余程度仍有待阐明。因此,我们评估了 BMP 型受体 AcvR1 在第二心脏场前体细胞发育中的作用,并将其与 BmpR1a 进行了比较。通过使用驱动 Mef2c[AHF]-Cre 去除 Acvr1,我们表明 AcvR1 在动脉极形态发生中起着至关重要的作用,鉴定出流出道壁和垫形态的缺陷,这些缺陷先于从双出口右心室到共同动脉干的一系列隔缺损。其缺失导致对心肌分化(Isl1、Fgf8)和区域特征(Tbx2、Tbx3、Tbx20、Tgfb2)重要的基因表达失调。尽管这些缺陷在某种程度上类似于等效的 Bmpr1a 突变体,但在 Acvr1 基因座中仅表达 Bmpr1a 的新型基因敲入模型仅部分恢复了 Acvr1 突变体的隔缺损。这些数据表明,BmpR1a 和 AcvR1 对于正常心脏发育都是必需的,它们在其中发挥一些非冗余作用,并细化了我们对 Bmp 介导的心脏发育的遗传和形态发生过程的理解,这对于人类先天性心脏病很重要。