Sweeney L J, Zak R, Manasek F J
Circ Res. 1987 Aug;61(2):287-95. doi: 10.1161/01.res.61.2.287.
The expression of different isoforms of the contractile protein myosin plays a major role in determining contractile characteristics in both cardiac and skeletal muscle in the adult. There is little evidence pertaining to putative changes in myosin phenotype during cardiac embryogenesis or if such changes could play a role in modulating the contractile characteristics of the developing heart. We examined isomyosin expression during cardiogenesis in the chick by indirect immunofluorescence microscopy with monoclonal antibodies to adult ventricular and atrial myosin heavy chains. Antibody specificity was characterized in the adult on the basis of immunofluorescence localization, ELISA, and protein blot immunoassay. Results show that the early embryonic chick heart has a different myosin phenotype than the later embryonic or adult heart. Both the embryonic ventricular and atrial myocardia initially expressed a myosin heavy chain that was recognized by antibody specific (in the adult) for ventricular myosin heavy chain. The ventricles remained reactive throughout life with the ventricular antibody, but reactivity of the atrial myocardium was confined to the initial 6 days of embryonic development. On the other hand, reactivity of the embryonic heart with multiple antibodies specific (in the adult) for atrial myosin was confined to the atrial myocardium throughout development. Thus, the distribution of myosin isoforms became similar to that of the adult myocardium by the time the embryonic heart achieved a 4-chambered configuration at 6 days in ovo.
收缩蛋白肌球蛋白不同亚型的表达在决定成年心脏和骨骼肌的收缩特性方面起着主要作用。关于心脏胚胎发育过程中肌球蛋白表型的假定变化,或者这种变化是否可能在调节发育中心脏的收缩特性中发挥作用,几乎没有证据。我们通过间接免疫荧光显微镜,使用针对成年心室和心房肌球蛋白重链的单克隆抗体,研究了鸡心脏发生过程中的同工型肌球蛋白表达。基于免疫荧光定位、酶联免疫吸附测定和蛋白质印迹免疫测定,在成年个体中对抗体特异性进行了表征。结果表明,早期胚胎期鸡心脏的肌球蛋白表型与后期胚胎期或成年期心脏不同。胚胎期的心室和心房心肌最初都表达一种肌球蛋白重链,该重链可被成年个体中对心室肌球蛋白重链特异的抗体识别。心室在整个生命过程中对心室抗体保持反应性,但心房心肌的反应性仅限于胚胎发育的最初6天。另一方面,胚胎心脏对成年个体中对心房肌球蛋白特异的多种抗体的反应性在整个发育过程中仅限于心房心肌。因此,当胚胎心脏在孵化6天时达到四腔结构时,肌球蛋白亚型的分布变得与成年心肌相似。