Department of Cardiovascular Medicine, University of Oxford and Wellcome Trust Centre for Human Genetics, Roosevelt Drive, Oxford OX3 7BN, UK.
Eur Heart J. 2013 Aug;34(32):2557-65. doi: 10.1093/eurheartj/ehs056. Epub 2012 Apr 14.
Myocardial development is dependent on concomitant growth of cardiomyocytes and a supporting vascular network. The coupling of myocardial and coronary vascular development is partly mediated by vascular endothelial growth factor (VEGFA) signalling and additional unknown mechanisms. We examined the cardiomyocyte specific role of the transcriptional co-activator Cited2 on myocardial microstructure and vessel growth, in relation to Vegfa expression.
A cardiomyocyte-specific knockout of mouse Cited2 (Cited2(Nkx)) was analysed using magnetic resonance imaging and histology. Ventricular septal defects and significant compact layer thinning (P < 0.02 at right ventricular apex, P < 0.009 at the left ventricular apex in Cited2(Nkx) vs. controls, n = 11 vs. n = 7, respectively) were found. This was associated with a significant decrease in the number of capillaries to larger vessels (ratio 1.56 ± 0.56 vs. 3.25 ± 1.63, P = 2.7 × 10(-6) Cited2(Nkx) vs. controls, n = 11 vs. n = 7, respectively) concomitant with a 1.5-fold reduction in Vegfa expression (P < 0.02, Cited2(Nkx) vs. controls, n = 12 vs. n = 12, respectively). CITED2 was subsequently found at the Vegfa promoter in mouse embryonic hearts using chromatin immunoprecipitation, and moreover found to stimulate human VEGFA promoter activity in cooperation with TFAP2 transcription factors in transient transfection assays. There was no change in the myocardial expression of the left-right patterning gene Pitx2c, a previously known target of CITED2.
This study delineates a novel cell-autonomous role of Cited2 in regulating VEGFA transcription and the development of myocardium and coronary vasculature in the mouse. We suggest that coupling of myocardial and coronary growth in the developing heart may occur in part through a Cited2→Vegfa pathway.
心肌的发育依赖于心肌细胞和支持性脉管网络的协同生长。心肌和冠状动脉发育的偶联部分由血管内皮生长因子(VEGFA)信号和其他未知机制介导。我们研究了转录共激活因子 Cited2 在心肌微血管和血管生长方面对心肌微结构的心肌细胞特异性作用,以及与 Vegfa 表达的关系。
使用磁共振成像和组织学分析了小鼠 Cited2 的心肌细胞特异性敲除(Cited2(Nkx))。发现室间隔缺损和致密层明显变薄(右心室心尖处 P < 0.02,左心室心尖处 P < 0.009,Cited2(Nkx)与对照组相比,n = 11 与 n = 7,分别)。这与较大血管的毛细血管数量显著减少(比值 1.56 ± 0.56 与 3.25 ± 1.63,P = 2.7 × 10(-6) Cited2(Nkx)与对照组相比,n = 11 与 n = 7,分别)同时 Vegfa 表达降低 1.5 倍(P < 0.02,Cited2(Nkx)与对照组相比,n = 12 与 n = 12,分别)。使用染色质免疫沉淀法在小鼠胚胎心脏中发现 CITED2 位于 Vegfa 启动子上,并且在瞬时转染测定中发现 CITED2 与 TFAP2 转录因子合作刺激人 VEGFA 启动子活性。在左-右模式基因 Pitx2c 的心肌表达中没有变化,Pitx2c 是 CITED2 的先前已知靶标。
本研究描绘了 Cited2 在调节小鼠心肌和冠状动脉血管发育中 VEGFA 转录的新型细胞自主作用。我们认为,心脏发育中心肌和冠状动脉生长的偶联可能部分通过 Cited2→Vegfa 途径发生。