Department of Biological Sciences, Lehigh University, Bethlehem, PA 18020, USA
Department of Biological Sciences, Lehigh University, Bethlehem, PA 18020, USA.
Development. 2020 Jul 3;147(13):dev190512. doi: 10.1242/dev.190512.
The gap junction protein Connexin 43 (Cx43) contributes to cell fate decisions that determine the location of fin ray joints during regeneration. Here, we provide insights into how Cx43, expressed medially, influences changes in gene expression in lateral skeletal precursor cells. Using the Gap27 peptide inhibitor specific to Cx43, we show that Cx43-gap junctional intercellular communication (GJIC) influences Cx43-dependent skeletal phenotypes, including segment length. We also demonstrate that Cx43-GJIC influences the expression of the Smp/β-catenin pathway in the lateral skeletal precursor cells, and does not influence the Sema3d pathway. Moreover, we show that the allele, which has increased Cx43 protein levels, exhibits increased regenerate length and segment length. These phenotypes are rescued by Gap27, suggesting that increased Cx43 is responsible for the observed Cx43 phenotypes. Finally, our findings suggest that inhibition of Cx43 hemichannel activity does not influence Cx43-dependent skeletal phenotypes. These data provide evidence that Cx43-GJIC is responsible for regulating cell fate decisions associated with appropriate joint formation in the regenerating fin.
间隙连接蛋白 Connexin 43(Cx43)有助于细胞命运的决定,这些决定决定了再生过程中鳍射线关节的位置。在这里,我们提供了关于 Cx43 在中线表达如何影响侧向骨骼前体细胞中基因表达变化的见解。我们使用专门针对 Cx43 的 Gap27 肽抑制剂表明,Cx43-间隙连接细胞间通讯(GJIC)影响 Cx43 依赖性骨骼表型,包括节段长度。我们还证明,Cx43-GJIC 影响侧向骨骼前体细胞中 Smp/β-catenin 途径的表达,而不影响 Sema3d 途径。此外,我们表明,等位基因,其 Cx43 蛋白水平增加,表现出增加的再生长度和节段长度。这些表型可被 Gap27 挽救,表明增加的 Cx43 是导致观察到的 Cx43 表型的原因。最后,我们的研究结果表明,抑制 Cx43 半通道活性不会影响 Cx43 依赖性骨骼表型。这些数据提供了证据表明,Cx43-GJIC 负责调节与再生鳍中适当关节形成相关的细胞命运决定。