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首页> 外文期刊>Experimental Eye Research >Gap junction communication influences intercellular protein distribution in the lens.
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Gap junction communication influences intercellular protein distribution in the lens.

机译:间隙连接通讯影响晶状体中细胞间蛋白质的分布。

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摘要

Lens transparency and high refractive index presumably depend on the appropriate arrangement and distribution of lens proteins among lens fiber cells. Intercellular gap junction channels formed by alpha3 and alpha8 connexins are known to transport small molecules, ions and water, but not proteins, in the lens. Mosaic expression of green fluorescent protein (GFP) in the lens is a useful marker for monitoring macromolecule distribution between fiber cells and for constructing three-dimensional images of living lens cells. In alpha3(-/-) alpha8(-/-) double knockout (DKO) lenses, three-dimensional images of GFP-positive cells demonstrate the changes of epithelial cell surfaces and insufficient elongation of inner fiber cells. Uniform distribution of GFP between inner lens fiber cells is observed in both wild-type and alpha3(-/-) lenses. In contrast, uniform GFP distribution is slightly delayed in alpha8(-/-) lenses and is abolished in DKO lenses. Without endogenous wild-type alpha3 and alpha8 connexins, knock-in alpha3 connexin (expressed under the alpha8 gene promoter) restores the uniform distribution of GFP protein in the lens. Thus, the presence of either alpha3 or alpha8 connexins seems sufficient to support the uniform distribution of GFP between differentiated lens fiber cells. Although the mechanism that drives GFP transport between fiber cells remains unknown, this work reveals that gap junction communication plays a novel role in the regulation of intercellular protein distribution in the lens.
机译:晶状体的透明度和高折射率大概取决于晶状体蛋白在晶状体纤维细胞之间的适当排列和分布。由α3和α8连接蛋白形成的细胞间间隙连接通道已知在晶状体中转运小分子,离子和水,但不转运蛋白质。晶状体中绿色荧光蛋白(GFP)的镶嵌表达是监测纤维细胞之间大分子分布以及构建活晶状体细胞三维图像的有用标记。在alpha3(-/-)alpha8(-/-)双敲除(DKO)透镜中,GFP阳性细胞的三维图像显示了上皮细胞表面的变化以及内部纤维细胞的伸长不足。在野生型和alpha3(-/-)透镜中均观察到GFP在内部晶状体纤维细胞之间的均匀分布。相比之下,均匀的GFP分布在alpha8(-/-)镜头中略有延迟,而在DKO镜头中则被取消。没有内源性野生型alpha3和alpha8连接蛋白,敲入的alpha3连接蛋白(在alpha8基因启动子下表达)可恢复GFP蛋白在晶状体中的均匀分布。因此,α3或α8连接蛋白的存在似乎足以支持GFP在分化的晶状体纤维细胞之间的均匀分布。尽管驱动GFP在纤维细胞之间运输的机制仍然未知,但这项工作表明,间隙连接通讯在晶状体中细胞间蛋白质分布的调节中起着新作用。

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