Cheng Feng, Miao Liyun, Wu Qing, Gong Xia, Xiong Jingwei, Zhang Jian
State Key Laboratory of Molecular Developmental Biology, Institute of Genetics and Developmental Biology, Chinese Academy of Sciences, Beijing 100101, China University of Chinese Academy of Sciences, Beijing 100049, China.
Institute of Molecular Medicine, Beijing Key Laboratory of Cardiometabolic Molecular Medicine and State Key Laboratory of Natural and Biomimetic Drugs, Peking University, Beijing 100871, China.
Development. 2016 Oct 1;143(19):3522-3531. doi: 10.1242/dev.132936. Epub 2016 Aug 30.
Coronary vessel development is a highly coordinated process during heart formation. Abnormal development and dysfunction of the coronary network are contributory factors in the majority of heart disease. Understanding the molecular mechanisms that regulate coronary vessel formation is crucial for preventing and treating the disease. We report a zebrafish gene-trap vinculin b (vclb) mutant that displays abnormal coronary vessel development among multiple cardiac defects. The mutant shows overproliferation of epicardium-derived cells and disorganization of coronary vessels, and they eventually die off at juvenile stages. Mechanistically, Vclb deficiency results in the release of another cytoskeletal protein, paxillin, from the Vclb complex and the upregulation of ERK and FAK phosphorylation in epicardium and endocardium, causing disorganization of endothelial cells and pericytes during coronary vessel development. By contrast, cardiac muscle development is relatively normal, probably owing to redundancy with Vcla, a vinculin paralog that is expressed in the myocardium but not epicardium. Together, our results reveal a previously unappreciated function of vinculin in epicardium and endocardium and reinforce the notion that well-balanced FAK activity is essential for coronary vessel development.
冠状动脉发育是心脏形成过程中一个高度协调的过程。冠状动脉网络的异常发育和功能障碍是大多数心脏病的促成因素。了解调节冠状动脉形成的分子机制对于预防和治疗该疾病至关重要。我们报道了一种斑马鱼基因陷阱纽蛋白b(vclb)突变体,该突变体在多种心脏缺陷中表现出冠状动脉发育异常。该突变体显示心外膜来源的细胞过度增殖以及冠状动脉紊乱,并且它们最终在幼年期死亡。从机制上讲,Vclb缺陷导致另一种细胞骨架蛋白桩蛋白从Vclb复合物中释放出来,并导致心外膜和心内膜中ERK和FAK磷酸化上调,从而在冠状动脉发育过程中导致内皮细胞和周细胞紊乱。相比之下,心肌发育相对正常,这可能是由于Vcla的冗余性,Vcla是一种纽蛋白旁系同源物,在心肌中表达但不在心外膜中表达。总之,我们的结果揭示了纽蛋白在心外膜和心内膜中以前未被认识到的功能,并强化了这样一种观念,即平衡良好的FAK活性对于冠状动脉发育至关重要。