首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Molecular cloning, mRNA expression, and immunocytochemical localization of a putative blue-light photoreceptor CRY4 in the chicken pineal gland.
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Molecular cloning, mRNA expression, and immunocytochemical localization of a putative blue-light photoreceptor CRY4 in the chicken pineal gland.

机译:在松果体中推定的蓝光感光体CRY4的分子克隆,mRNA表达和免疫细胞化学定位。

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摘要

In non-mammalian vertebrates, the pineal gland contains an endogenous circadian oscillator and serves as a photosensitive neuroendocrinal organ. To better understand the pineal phototransduction mechanism, we focused on the chicken putative blue-light photoreceptive molecule, Cryptochrome4 (cCRY4). Here we report the molecular cloning of pineal cCry4 cDNA, the in vivo expression of cCry4 mRNA, and the detection of cCRY4 protein. cCry4 is transcribed in a wide variety of chick tissues out of which the pineal gland and retina contain high levels of cCry4 mRNA. In the pineal gland, under 12 h light : 12 h dark cycles, the levels of both cCry4 mRNA and cCRY4 protein showed diurnal changes, and in cultured chick pineal cells, the cCry4 mRNA level was not only up-regulated by light but also controlled by circadian signals. Immunoblot analysis with a cCRY4-specific antibody detected cCRY4 in a soluble fraction of the pineal lysate. Immunocytochemistry revealed that cCRY4 was expressed in many parenchymal cells and a limited number of stromal cells. These cCRY4 features strikingly contrast with those of the chick pineal photoreceptor pinopsin, suggesting a possible temporal and/or spatial duplicity of the pineal photoreceptive system, the opsin- and CRY-based mechanisms.
机译:在非哺乳动物脊椎动物中,松果体含有内源性昼夜节律振荡器,并用作光敏性神经内分泌器官。为了更好地了解松果体的光转导机制,我们集中研究了鸡假定的蓝光感光分子Cryptochrome4(cCRY​​4)。在这里我们报告了松果体cCry4 cDNA的分子克隆,cCry4 mRNA的体内表达以及cCRY4蛋白的检测。 cCry4转录在各种各样的雏鸡组织中,其中的松果体和视网膜含有高水平的cCry4 mRNA。在松果体中,在12 h光照:12 ​​h黑暗周期下,cCry4 mRNA和cCRY4蛋白的水平均表现出昼夜变化,并且在培养的鸡松果细胞中,cCry4 mRNA的水平不仅受到光照的调节,而且受到控制通过昼夜节律信号。用cCRY4特异性抗体进行的免疫印迹分析在松果裂解液的可溶性部分中检测到cCRY4。免疫细胞化学表明,cCRY4在许多实质细胞和有限数量的基质细胞中表达。这些cCRY4特征与鸡的松果体感光细胞pinopsin形成鲜明对比,表明松果体感光系统,视蛋白和基于CRY的机制可能存在时间和/或空间双重性。

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