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在鳍再生过程中,连接蛋白43(GJA1)在分裂细胞群体中是必需的。

Connexin43 (GJA1) is required in the population of dividing cells during fin regeneration.

作者信息

Hoptak-Solga Angela D, Nielsen Sarah, Jain Isha, Thummel Ryan, Hyde David R, 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. 2008 May 15;317(2):541-8. doi: 10.1016/j.ydbio.2008.02.051. Epub 2008 Mar 12.

Abstract

In zebrafish, mutations in the gap junction gene connexin43 lead to short bony fin ray segments that give rise to the short fin phenotype. The sof(b123) mutant exhibits fins that are half the length of wild-type fins and have reduced levels of cx43 mRNA. We find that sof(b123) regenerating fins exhibit reduced levels of cell proliferation. Interestingly, the number of dividing cells per unit length of fin growth is similar between wild-type and mutant fins, suggesting that the number of cells that enter the cell cycle is specifically affected in sof(b123). Expression of cx43 is identified in mitotic cells, which further suggests that Cx43 may contribute to establishing or maintaining the population of dividing cells. Indeed, missense alleles exhibiting high or low levels of gap junctional communication reveal a correlation between defects in direct cell-cell communication, cell proliferation, and segment length. Finally, targeted gene knockdown of cx43 in adult regenerating fins recapitulates the sof(b123) phenotype, revealing that the loss of Cx43 is sufficient to reduce both cell proliferation and segment length. We hypothesize that the level of gap junctional intercellular communication among dividing cells regulates the level of cell proliferation and ultimately regulates bone growth.

摘要

在斑马鱼中,缝隙连接基因连接蛋白43(connexin43)的突变会导致骨质鳍条节段变短,从而产生短鳍表型。sof(b123)突变体的鳍长度只有野生型鳍的一半,且cx43 mRNA水平降低。我们发现sof(b123)再生鳍中的细胞增殖水平降低。有趣的是,野生型鳍和突变体鳍每单位鳍生长长度中分裂细胞的数量相似,这表明进入细胞周期的细胞数量在sof(b123)中受到了特异性影响。在有丝分裂细胞中鉴定出了cx43的表达,这进一步表明Cx43可能有助于建立或维持分裂细胞群体。事实上,表现出高或低水平缝隙连接通讯的错义等位基因揭示了直接细胞间通讯缺陷、细胞增殖和节段长度之间的相关性。最后,在成年再生鳍中对cx43进行靶向基因敲低重现了sof(b123)表型,表明Cx43的缺失足以降低细胞增殖和节段长度。我们推测,分裂细胞间缝隙连接细胞间通讯的水平调节细胞增殖水平,并最终调节骨骼生长。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5cbb/2429987/a4b38673b150/nihms51314f1.jpg

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Connexin43 regulates joint location in zebrafish fins.连接蛋白43调节斑马鱼鳍的关节位置。
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