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晶状体MIP/水通道蛋白-0与γ-晶状体蛋白家族的两个成员之间的特异性相互作用。

Specific interaction between lens MIP/Aquaporin-0 and two members of the gamma-crystallin family.

作者信息

Fan Jianguo, Fariss Robert N, Purkiss Andrew G, Slingsby Christine, Sandilands Aileen, Quinlan Roy, Wistow Graeme, Chepelinsky Ana B

机构信息

Laboratory of Molecular and Developmental Biology, National Eye Institute, National Institutes of Health, Bethesda, MD 20892-0704, USA.

出版信息

Mol Vis. 2005 Jan 25;11:76-87.

Abstract

PURPOSE

Major Intrinsic Protein (MIP)/Aquaporin 0 is required for lens transparency and is specifically expressed in lens fiber cell membranes. We have demonstrated previously that in the rat lens MIP interacts specifically with gammaE-crystallin, resulting in its recruitment to the plasma membrane. Our goal was to examine the interaction or lack of interaction between MIP and all members of the gamma-crystallin family and to provide evidence for a physiological role these interactions may play in gamma-crystallin or MIP function.

METHODS

Full length MIP was expressed as untagged, enhanced green fluorescent protein (EGFP) tagged, or myc tagged proteins. Members of the gamma-crystallin family were expressed as red fluorescent protein (HcRed) tagged proteins in the rabbit kidney epithelial cell line RK13. Co-localization of tagged proteins was analyzed by confocal fluorescence microscopy.

RESULTS

Confocal fluorescence microscopy demonstrated that gammaE- and gammaF-crystallin co-localize specifically with full length MIP in mammalian cells while other gamma-crystallins, including gammaA-, gammaB-, gammaC-, gammaD-, and gammaS-crystallin do not. As a result of this interaction, either gammaE- or gammaF-crystallin was recruited to the plasma membrane from the cytoplasm. MIP does not interact with the Elo mutant of gammaE-crystallin, which has been linked to a dominant cataract phenotype in mice.

CONCLUSIONS

These experiments demonstrate that MIP interacts selectively with gammaE- and gammaF-crystallin, and not with other gamma-crystallins. This raises the possibility of MIP playing a structural role in the organization of gamma-crystallins in rodent lens fibers and/or that gammaE- and gammaF-crystallin may have a specific role in MIP function in the rodent lens.

摘要

目的

主要内在蛋白(MIP)/水通道蛋白0是晶状体透明性所必需的,且在晶状体纤维细胞膜中特异性表达。我们之前已经证明,在大鼠晶状体中,MIP与γE-晶状体蛋白特异性相互作用,导致其被募集到质膜上。我们的目标是研究MIP与γ-晶状体蛋白家族所有成员之间的相互作用或缺乏相互作用,并为这些相互作用可能在γ-晶状体蛋白或MIP功能中发挥的生理作用提供证据。

方法

全长MIP表达为无标签、增强型绿色荧光蛋白(EGFP)标签或myc标签的蛋白。γ-晶状体蛋白家族成员在兔肾上皮细胞系RK13中表达为红色荧光蛋白(HcRed)标签的蛋白。通过共聚焦荧光显微镜分析标签蛋白的共定位。

结果

共聚焦荧光显微镜显示,γE-和γF-晶状体蛋白在哺乳动物细胞中与全长MIP特异性共定位,而其他γ-晶状体蛋白,包括γA-、γB-、γC-、γD-和γS-晶状体蛋白则不共定位。由于这种相互作用,γE-或γF-晶状体蛋白从细胞质被募集到质膜上。MIP不与γE-晶状体蛋白的Elo突变体相互作用,该突变体与小鼠的显性白内障表型有关。

结论

这些实验表明,MIP选择性地与γE-和γF-晶状体蛋白相互作用,而不与其他γ-晶状体蛋白相互作用。这增加了MIP在啮齿动物晶状体纤维中γ-晶状体蛋白组织中发挥结构作用的可能性,和/或γE-和γF-晶状体蛋白可能在啮齿动物晶状体的MIP功能中具有特定作用的可能性。

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