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连接蛋白43调节斑马鱼鳍的关节位置。

Connexin43 regulates joint location in zebrafish fins.

作者信息

Sims Kenneth, Eble Diane M, Iovine M Kathryn

机构信息

Lehigh University, Department of Biological Sciences, 111 Research Drive, Iacocca B-217, Bethlehem, PA 18015, USA.

出版信息

Dev Biol. 2009 Mar 15;327(2):410-8. doi: 10.1016/j.ydbio.2008.12.027. Epub 2008 Dec 30.

Abstract

Joints are essential for skeletal form and function, yet their development remains poorly understood. In zebrafish fins, joints form between the bony fin ray segments providing essentially unlimited opportunities to evaluate joint morphogenesis. Mutations in cx43 cause the short segment phenotype of short fin (sof(b123)) mutants, suggesting that direct cell-cell communication may regulate joint location. Interestingly, increased cx43 expression in the another long fin (alf(dty86)) mutant appears to cause joint failure typical of that mutant. Indeed, knockdown of cx43 in alf(dty86) mutant fins rescues joint formation. Together, these data reveal a correlation between the level of Cx43 expression in the fin ray mesenchyme and the location of joints. Cx43 was also observed laterally in cells associated with developing joints. Confocal microscopy revealed that the Cx43 protein initially surrounds the membranes of ZNS5-positive joint cells, but at later stages becomes polarized toward the underlying Cx43-positive mesenchymal cells. One possibility is that communication between the Cx43-positive mesenchyme and the overlying ZNS5-positive cells regulates joint location, and upregulation of Cx43 in joint-forming cells contributes to joint morphogenesis.

摘要

关节对于骨骼的形态和功能至关重要,但其发育过程仍知之甚少。在斑马鱼鳍中,关节形成于骨质鳍条节段之间,这为评估关节形态发生提供了几乎无限的机会。cx43基因的突变会导致短鳍(sof(b123))突变体出现短节段表型,这表明细胞间的直接通讯可能调节关节位置。有趣的是,在另一种长鳍(alf(dty86))突变体中cx43表达增加似乎导致了该突变体典型的关节形成失败。事实上,在alf(dty86)突变体鳍中敲低cx43可挽救关节形成。这些数据共同揭示了鳍条间充质中Cx43表达水平与关节位置之间的相关性。在与发育中的关节相关的细胞中也观察到了侧向的Cx43。共聚焦显微镜显示,Cx43蛋白最初围绕ZNS5阳性关节细胞的细胞膜,但在后期会朝着下方的Cx43阳性间充质细胞极化。一种可能性是,Cx43阳性间充质与上方ZNS5阳性细胞之间的通讯调节关节位置,并且关节形成细胞中Cx43的上调有助于关节形态发生。

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