首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Rod-type transducin alpha-subunit mediates a phototransduction pathway in the chicken pineal gland.
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Rod-type transducin alpha-subunit mediates a phototransduction pathway in the chicken pineal gland.

机译:杆型转导蛋白α亚基介导鸡松果体中的光转导途径。

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摘要

The chicken pineal gland is a photosensitive neuroendocrine organ producing melatonin in circadian clock-regulated and light-sensitive manners. To understand the relationship between the photoreceptive molecule pinopsin and the light-dependent melatonin suppression that is sensitive to pertussis toxin treatment, we have searched for pertussis toxin-sensitive G protein alpha-subunits expressed in the chicken pineal gland. Here we report the cDNA cloning of the pineal transducin alpha-subunit (Gtalpha), which is highly homologous to human retinal rod cell-specific Gt(1)alpha. Concurrent cDNA cloning of chicken retinal Gt(1)alpha and Gt(2)alpha (rod and cone cell-specific alpha-subunits of transducin, respectively) revealed that the chicken pineal Gtalpha is identical to the retinal Gt(1)alpha. Double-immunostaining analysis of the chicken pineal sections localized Gt(1)alpha-immunoreactivity in the rudimentary outer segments of both follicular and parafollicular pinealocytes that were immunopositive to anti-pinopsin antibody. To examine whether pineal Gt(1)alpha is involved in the pineal phototransduction pathway, trypsin protection assay was applied for detecting the conversion of GDP-bound Gt(1)alpha into the guanosine 5'-O-(3-thiotriphosphate) (GTPgammaS)-bound form in the pineal membrane homogenate. It was clearly demonstrated that the pineal Gt(1)alpha is activated in a light-dependent manner in the presence of GTPgammaS. These data together suggest strongly that pineal Gt(1)alpha mediates the phototransduction pathway triggered by pinopsin in the chicken pinealocytes.
机译:鸡松果体是一种光敏的神经内分泌器官,以昼夜节律和光敏方式产生褪黑激素。为了了解光感受性分子pinopsin和对百日咳毒素治疗敏感的光依赖性褪黑素抑制之间的关系,我们已经研究了在鸡松果体中表达的百日咳毒素敏感的G蛋白α亚基。在这里,我们报告松果转导蛋白α亚基(Gtalpha)的cDNA克隆,与人视网膜视杆细胞特异性Gt(1)alpha高度同源。鸡视网膜Gt(1)alpha和Gt(2)alpha(分别为转导蛋白的杆和视锥细胞特异性alpha亚基)的并发cDNA克隆显示,鸡松果体Gtalpha与视网膜Gt(1)alpha相同。鸡松果体部分的双重免疫染色分析将Gt(1)alpha-免疫反应性定位在对抗-pinopsin抗体免疫阳性的滤泡和滤泡旁松果体细胞的最外层。若要检查松果体光转导途径是否涉及松果体Gt(1)alpha,采用胰蛋白酶保护试验检测GDP结合的Gt(1)alpha向鸟苷5'-O-(3-硫代三磷酸)(GTPgammaS)的转化)形式在松果体膜上匀浆。清楚地表明,在存在GTPgammaS的情况下,松果体Gt(1)alpha以光依赖的方式被激活。这些数据一起强烈表明,松果体Gt(1)alpha介导了鸡松果体细胞中由Pinopsin触发的光转导途径。

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