Institute of Genetics, University of Bonn, 53117 Bonn, Germany.
J Cell Sci. 2010 Oct 15;123(Pt 20):3605-15. doi: 10.1242/jcs.068668.
The gap junction protein connexin-45 (Cx45) is expressed in the conduction system of the heart and in certain neurons of the retina and brain. General and cardiomyocyte-directed deficiencies of Cx45 in mice lead to lethality on embryonic day 10.5 as a result of cardiovascular defects. Neuron-directed deletion of Cx45 leads to defects in transmission of visual signals. Connexin-36 (Cx36) is co-expressed with Cx45 in certain types of retinal interneurons. To determine whether these two connexins have similar functions and whether Cx36 can compensate for Cx45, we generated knock-in mice in which DNA encoding Cx45 was replaced with that encoding Cx36. Neuron-directed replacement of Cx45 with Cx36 resulted in viable animals. Electroretinographic and neurotransmitter coupling analyses demonstrated functional compensation in the retina. By contrast, general and cardiomyocyte-directed gene replacement led to lethality on embryonic day 11.5. Mutant embryos displayed defects in cardiac morphogenesis and conduction. Thus, functional compensation of Cx45 by Cx36 did not occur during embryonic heart development. These data suggest that Cx45 and Cx36 have similar functions in the retina, whereas Cx45 fulfills special functions in the developing heart that cannot be compensated by Cx36.
间隙连接蛋白 connexin-45(Cx45)在心脏传导系统和视网膜及大脑的某些神经元中表达。Cx45 在小鼠中的普遍和心肌细胞靶向缺失导致胚胎第 10.5 天由于心血管缺陷而致死。Cx45 在神经元中的缺失导致视觉信号传递缺陷。Connexin-36(Cx36)与 Cx45 在某些类型的视网膜中间神经元中共表达。为了确定这两种连接蛋白是否具有相似的功能,以及 Cx36 是否可以补偿 Cx45,我们生成了敲入小鼠,其中 Cx45 的编码 DNA 被 Cx36 的编码 DNA 取代。神经元靶向性地用 Cx36 替换 Cx45 导致了存活的动物。视网膜电图和神经递质偶联分析表明在视网膜中有功能补偿。相比之下,普遍和心肌细胞靶向性的基因替换导致胚胎第 11.5 天的致死。突变胚胎表现出心脏形态发生和传导缺陷。因此,Cx45 的 Cx36 功能补偿在胚胎心脏发育过程中没有发生。这些数据表明 Cx45 和 Cx36 在视网膜中具有相似的功能,而 Cx45 在发育中的心脏中具有特殊功能,不能被 Cx36 补偿。