Early myocardial function affects endocardial cushion development in zebrafish

被引:170
作者
Bartman, T
Walsh, EC
Wen, KK
McKane, M
Ren, JH
Alexander, J
Rubenstein, PA
Stainier, DYR [1 ]
机构
[1] Univ Calif San Francisco, Dept Biochem & Biophys, San Francisco, CA 94143 USA
[2] Univ Calif San Francisco, Dept Pediat, San Francisco, CA 94143 USA
[3] Univ Cincinnati, Coll Med, Dept Pediat, Cincinnati, OH 45221 USA
[4] Cincinnati Childrens Hosp, Med Ctr, Div Neonatol, Cincinnati, OH USA
[5] Cincinnati Childrens Hosp, Med Ctr, Div Pulm Biol, Cincinnati, OH USA
[6] Cincinnati Childrens Hosp, Med Ctr, Div Dev Biol, Cincinnati, OH USA
[7] Whitehead Inst Biomed Res, Cambridge, MA 02142 USA
[8] Univ Iowa, Coll Med, Dept Biochem, Iowa City, IA 52242 USA
[9] Univ Calif San Francisco, Div Pulm & Crit Care Med, San Francisco, CA 94143 USA
关键词
D O I
10.1371/journal.pbio.0020129
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Function of the heart begins long before its formation is complete. Analyses in mouse and zebrafish have shown that myocardial function is not required for early steps of organogenesis, such as formation of the heart tube or chamber specification. However, whether myocardial function is required for later steps of cardiac development, such as endocardial cushion (EC) formation, has not been established. Recent technical advances and approaches have provided novel inroads toward the study of organogenesis, allowing us to examine the effects of both genetic and pharmacological perturbations of myocardial function on EC formation in zebrafish. To address whether myocardial function is required for EC formation, we examined silent heart (sih(-/-)) embryos, which lack a heartbeat due to mutation of cardiac troponin T (tnnt2), and observed that atrioventricular (AV) ECs do not form. Likewise, we determined that cushion formation is blocked in cardiofunk (cfk(-/-)) embryos, which exhibit cardiac dilation and no early blood flow. In order to further analyze the heart defects in cfk(-/-) embryos, we positionally cloned cfk and show that it encodes a novel sarcomeric actin expressed in the embryonic myocardium. The Cfk(s11) variant exhibits a change in a universally conserved residue (R177H). We show that in yeast this mutation negatively affects actin polymerization. Because the lack of cushion formation in sih- and cfk-mutant embryos could be due to reduced myocardial function and/or lack of blood flow, we approached this question pharmacologically and provide evidence that reduction in myocardial function is primarily responsible for the defect in cushion development. Our data demonstrate that early myocardial function is required for later steps of organogenesis and suggest that myocardial function, not endothelial shear stress, is the major epigenetic factor controlling late heart development. Based on these observations, we postulate that defects in cardiac morphogenesis may be secondary to mutations affecting early myocardial function, and that, in humans, mutations affecting embryonic myocardial function may be responsible for structural congenital heart disease.
引用
收藏
页码:673 / 681
页数:9
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