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Migrating Cells Retain Gap Junction Plaque Structure and Function

机译:迁移细胞保留间隙连接斑块的结构和功能

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Cell migration is an essential process in organ development, differentiation, and wound healing, and it has been hypothesized that gap junctions play a pivotal role in these cell processes. However, the changes in gap junctions and the capacity for cell communication as cells migrate are unclear. To monitor gap junction plaques during cell migration, adrenocortical cells were transfected with cDNA encoding for the connexin 43-green fluorescent protein. Time-lapse imaging was used to analyze cell movements and concurrent gap junction plaque dynamics. Immunocytochemistry was used to analyze gap junction morphology and distribution. Migration was initiated by wounding the cell monolayer and diffusional coupling was demonstrated by monitoring Lucifer yellow dye transfer and fluorescence recovery after photobleaching (FRAP) in cells at the wound edge and in cells located some distance from the wound edge. Gap junction plaques were retained at sites of contact while cells migrated in a “sheet-like” formation, even when cells dramatically changed their spatial relationship to one another. Consistent with this finding, cells at the leading edge retained their capacity to communicate with contacting cells. When cells detached from one another, gap junction plaques were internalized just prior to cell process detachment. Although gap junction plaque internalization clearly was a method of gap junction removal during cell separation, cells retained gap junction plaques and continued to communicate dye while migrating.
机译:细胞迁移是器官发育,分化和伤口愈合中必不可少的过程,并且已经假设间隙连接在这些细胞过程中起关键作用。但是,间隙连接的变化以及随着细胞迁移的细胞通讯能力尚不清楚。为了监测细胞迁移过程中的间隙连接噬菌斑,用编码连接蛋白43-绿色荧光蛋白的cDNA转染肾上腺皮质细胞。延时成像用于分析细胞运动和并发间隙连接斑块动力学。免疫细胞化学用于分析间隙连接形态和分布。通过使细胞单层受伤来开始迁移,并且通过监测在伤口边缘的细胞和距伤口边缘一定距离的细胞中的光漂白(FRAP)后荧光素黄染料的转移和荧光恢复来证明扩散偶联。间隙连接斑块保留在接触部位,而细胞以“片状”形式迁移,即使细胞彼此之间的空间关系发生了显着变化。与此发现一致的是,处于前沿的单元仍保持了与接触单元通信的能力。当细胞彼此分离时,恰好在细胞过程分离之前就将间隙连接斑块内在化。尽管间隙连接斑内在化显然是细胞分离过程中去除间隙连接的一种方法,但是细胞保留了间隙连接斑并在迁移时继续传递染料。

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