Department of Cardiac Development and Remodelling, Max-Planck-Institute for Heart and Lung Research, Ludwigstr. 43, Bad Nauheim 61231, Germany.
Cardiovasc Res. 2012 Nov 1;96(2):276-85. doi: 10.1093/cvr/cvs250. Epub 2012 Aug 3.
The ventricular wall of the heart is composed of trabeculated and compact layers, which are separated by yet unknown processes during embryonic development. Here, we wanted to explore the role of Notch2 and Numb/Numblike for myocardial trabeculation and compaction.
We found that Notch2 activity is specifically down-regulated in the compact layer during cardiac development in the mouse. The biological role of Notch2 down-regulation was investigated by the expression of constitutively active Notch2 in the myocardium of transgenic mice, resulting in hypertrabeculation, reduced compaction, and ventricular septum defects. To disclose the mechanism that inhibited Notch2 activity during the formation of myocardial layers, we analysed potential suppressors of Notch signalling. We unveiled that concomitant but not separate ablation of Numb and Numblike in the developing heart leads to increased Notch2 activity along with hypertrabeculation, reduced compaction, and ventricular septum defects, phenocopying effects gained by overexpression of constitutively active Notch2. Expression profiling revealed a strong up-regulation of Bmp10 in Numb/Numblike mutant hearts, which might also interfere with trabeculation and compaction.
This study identified potential novel roles of Numb/Numblike in regulating trabeculation and compaction by inhibiting Notch2 and Bmp10 signalling.
心脏的心室壁由小梁化和致密层组成,它们在胚胎发育过程中被尚未可知的过程分隔开来。在这里,我们想要探究 Notch2 和 Numb/Numblike 在心肌小梁化和致密化中的作用。
我们发现 Notch2 活性在心脏发育过程中在小鼠的致密层中特异性地下调。通过在转基因小鼠的心肌中表达组成性激活的 Notch2,研究了 Notch2 下调的生物学作用,导致心肌小梁化增加、致密化减少和室间隔缺损。为了揭示在心肌层形成过程中抑制 Notch2 活性的机制,我们分析了潜在的 Notch 信号抑制剂。我们揭示了在发育中的心脏中同时而不是分别消融 Numb 和 Numblike 会导致 Notch2 活性增加,伴随着心肌小梁化增加、致密化减少和室间隔缺损,与组成性激活 Notch2 的过表达获得的表型相似。表达谱分析显示,Numb/Numblike 突变心脏中 Bmp10 的表达强烈上调,这也可能干扰小梁化和致密化。
这项研究确定了 Numb/Numblike 通过抑制 Notch2 和 Bmp10 信号在调节小梁化和致密化方面的潜在新作用。