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首页> 外文期刊>Investigative ophthalmology & visual science >Diurnal and Circadian Regulation of Connexin 36 Transcript and Protein in the Mammalian Retina
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Diurnal and Circadian Regulation of Connexin 36 Transcript and Protein in the Mammalian Retina

机译:连接蛋白36转录和蛋白在哺乳动物视网膜中的昼夜节律调节

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Purpose.: Gap junctional coupling between rod and cone photoreceptor cells is regulated by light and the circadian clock, and contributes to retinal light adaptation. Phosphorylation of connexin 36 (Cx36) has been proposed as the mechanism involved. We investigated whether retinal Cx36 is also regulated at the level of transcript and protein expression. Methods.: At specific time points in a diurnal or circadian cycle, Cx36 protein was assessed by Western blotting and immunohistochemistry, and Cx36 transcript by quantitative real time PCR in a melatonin-deficient (C57BL6/FVB) and two melatonin-proficient (C3H+/+ and C3Hrd/rd) mouse strains. Results.: In C57BL6/FVB mice during a diurnal cycle, Cx36 protein expression was rhythmic, peaking at approximately zeitgeber time (ZT) 20. However, this rhythm was not maintained in the circadian cycle. In C3H+/+ mice levels of Cx36 protein were higher at night and subjective night relative to day and subjective day, respectively. These patterns of Cx36 expression were localized primarily to the outer plexiform layer in both strains. Cx36 transcript expression was higher at night and subjective night relative to day and subjective day in C57BL6/FVB and C3H+/+ mice. Rhythmic expression of Cx36 transcript was lost in retinally degenerate C3Hrd/rd mice. Conclusions.: The results suggested the circadian control of Cx36 protein expression is dependent on melatonin, whereas the circadian regulation of Cx36 transcript expression may be controlled directly by the circadian clock. In addition to post-translational modification, regulation of Cx36 transcript and protein expression may be important during retinal light adaptation.
机译:目的:视杆和视锥细胞之间的间隙连接耦合受光和昼夜节律的调节,并有助于视网膜的光适应。连接蛋白36(Cx36)的磷酸化已被提议为所涉及的机制。我们调查了视网膜Cx36是否也在转录本和蛋白质表达水平上受到调节。方法:在昼夜或昼夜节律周期的特定时间点,通过蛋白质印迹和免疫组织化学评估Cx36蛋白,并通过实时定量PCR在褪黑素缺陷型(C57BL6 / FVB)和两个褪黑激素水平(C3H + / +和C3Hrd / rd)小鼠品系。结果:在昼夜周期中的C57BL6 / FVB小鼠中,Cx36蛋白表达具有节律性,大约在zeitgeber time(ZT)20时达到峰值。但是,这种节律在昼夜节律中没有得到维持。在C3H + / +小鼠中,相对于白天和主观日,Cx36蛋白的水平在夜间和主观夜间分别较高。在两种菌株中,Cx36表达的这些模式主要定位于外部丛状层。在C57BL6 / FVB和C3H + / +小鼠中,相对于白天和主观日,Cx36转录物表达在夜间和主观夜较高。在视网膜退化的C3Hrd / rd小鼠中,Cx36转录物的节律性表达丢失。结论:结果表明,昼夜节律对Cx36蛋白表达的控制依赖于褪黑激素,而昼夜节律对Cx36转录本表达的调控可能直接由昼夜节律控制。除翻译后修饰外,调节Cx36转录本和蛋白质表达在视网膜光适应过程中可能很重要。

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