van Kempen M J, ten Velde I, Wessels A, Oosthoek P W, Gros D, Jongsma H J, Moorman A F, Lamers W H
Department of Anatomy and Embryology, University of Amsterdam, The Netherlands.
Microsc Res Tech. 1995 Aug 1;31(5):420-36. doi: 10.1002/jemt.1070310511.
Using immunohistochemical staining, the distribution of connexin40 (Cx40) and connexin43 (Cx43) was studied in rat, guinea pig, porcine, bovine and human hearts. These species display differences in the degree of morphological differentiation of the conduction system. This study was performed in the anticipation that comparison of the distributions of Cx40 and Cx43 in young and adult specimens may provide clues as to the physiological role of connexins in the heart. To a large extent, the distribution patterns of Cx40 and Cx43 are comparable between species. In neonates and adults, Cx43 was immunolocalized throughout the working myocardium, but in the conduction system Cx43 was detected only after birth. Cx40 was found to appear slightly earlier in development than Cx43 and to disappear when levels of Cx43 became more abundant. This time course was seen in working myocardium and in the ventricular conduction system. Together these data suggest that expression of Cx40 induces or facilitates expression of Cx43, while abundant expression of Cx43 in turn leads to suppression of Cx40 expression. The exceptions to this may represent blocks in this potential regulatory sequence. A second conclusion is that Cx40 and Cx43 containing gap junctions appear in the ventricular conduction system from distal to proximal and only after birth. This indicates that terminal differentiation of the conduction system occurs unexpectedly late in development.
运用免疫组织化学染色法,研究了连接蛋白40(Cx40)和连接蛋白43(Cx43)在大鼠、豚鼠、猪、牛和人类心脏中的分布。这些物种在传导系统的形态分化程度上存在差异。进行这项研究是预期比较年轻和成年标本中Cx40和Cx43的分布,可能会为连接蛋白在心脏中的生理作用提供线索。在很大程度上,Cx40和Cx43的分布模式在不同物种间具有可比性。在新生儿和成年人中,Cx43免疫定位在整个工作心肌中,但在传导系统中,Cx43仅在出生后才被检测到。发现Cx40在发育中比Cx43出现得稍早,并且在Cx43水平变得更高时消失。这种时间进程在工作心肌和心室传导系统中均可见。这些数据共同表明,Cx40的表达诱导或促进Cx43的表达,而Cx43的大量表达反过来导致Cx40表达的抑制。对此的例外情况可能代表了这一潜在调控序列中的阻断。第二个结论是,含有缝隙连接的Cx40和Cx43在心室传导系统中从远端到近端出现,且仅在出生后出现。这表明传导系统的终末分化在发育过程中意外地出现得很晚。