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首页> 外文期刊>American Journal of Physiology >Novel role for alphavbeta5-integrin in retinal adhesion and its diurnal peak.
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Novel role for alphavbeta5-integrin in retinal adhesion and its diurnal peak.

机译:alphavbeta5-整联蛋白在视网膜粘连及其昼夜峰中的新作用。

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摘要

alpha(v)beta(5)-Integrin is the sole integrin receptor at the retinal pigment epithelium (RPE)-photoreceptor interface and promotes RPE phagocytic signaling to the tyrosine kinase Mer tyrosine kinase (MerTK) once a day in response to circadian photoreceptor shedding. Herein we identify a novel role for alpha(v)beta(5)-integrin in permanent RPE-photoreceptor adhesion that is independent of alpha(v)beta(5)'s function in retinal phagocytosis. To compare retinal adhesion of wild-type and beta(5)-integrin(-/-) mice, we mechanically separated RPE and neural retina and quantified RPE protein and pigment retention with the neural retina. Lack of alpha(v)beta(5)-integrin with normal expression of other RPE integrins greatly weakened retinal adhesion in young mice and accelerated its age-dependent decline. Unexpectedly, the strength of wild-type retinal adhesion varied with a diurnal rhythm that peaked 3.5 h after light onset, after the completion of phagocytosis, when integrin signaling to MerTK is minimal. Permanent alpha(v)beta(5) receptor deficiency attenuated the diurnal peak of retinal adhesion in beta(5)-integrin(-/-) mice. These results identify alpha(v)beta(5)-integrin as the first RPE receptor that contributes to retinal adhesion, a vital mechanism for long-term photoreceptor function and viability. Furthermore, they indicate that alpha(v)beta(5) receptors at the same apical plasma membrane domain of RPE cells fulfill two separate functions that are synchronized by different diurnal rhythms.
机译:alpha(v)beta(5)-整联蛋白是视网膜色素上皮(RPE)-感光受体界面上唯一的整联蛋白受体,并响应于昼夜节律性光受体脱落,每天一次向酪氨酸激酶Mer酪氨酸激酶(MerTK)传递RPE吞噬信号。 。在本文中,我们确定了α(v)beta(5)-整联蛋白在永久性RPE-感光细胞粘附中的新作用,该作用独立于视网膜吞噬作用中的alpha(v)beta(5)的功能。为了比较野生型和beta(5)-整合素(-/-)小鼠的视网膜粘连,我们机械分离了RPE和神经视网膜,并定量了RPE蛋白和色素与神经视网膜的结合。与其他RPE整合素正常表达的alpha(v)beta(5)-整合素的缺乏大大削弱了年轻小鼠的视网膜粘连并加速了其年龄依赖性的下降。出乎意料的是,吞噬作用完成后,整合素向MerTK的信号传递极少时,野生型视网膜粘附的强度随昼夜节律变化而变化,昼夜节律在光照后3.5小时达到峰值。永久性alpha(v)beta(5)受体缺乏减弱了beta(5)-整联蛋白(-/-)小鼠的视网膜粘连的昼夜峰。这些结果确定alpha(v)beta(5)-整联蛋白是第一个RPE受体,有助于视网膜的粘附,这是长期感光器功能和生存能力的重要机制。此外,他们表明在RPE细胞的同一顶质膜域的alpha(v)beta(5)受体具有两个不同的功能,这些功能通过不同的昼夜节律同步。

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