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味觉受体细胞中苦味受体通过转导素与磷酸二酯酶的偶联。

Coupling of bitter receptor to phosphodiesterase through transducin in taste receptor cells.

作者信息

Ruiz-Avila L, McLaughlin S K, Wildman D, McKinnon P J, Robichon A, Spickofsky N, Margolskee R F

机构信息

Roche Institute of Molecular Biology, Roche Research Center, Hoffmann-La Roche Inc., Nutley, New Jersey, USA.

出版信息

Nature. 1995 Jul 6;376(6535):80-5. doi: 10.1038/376080a0.

Abstract

The rod and cone transducins are specific G proteins originally thought to be present only in photoreceptor cells of the vertebrate retina. Transducins convert light stimulation of photoreceptor opsins into activation of cyclic GMP phosphodiesterase (reviewed in refs. 5-7). A transducin-like G protein, gustducin, has been identified and cloned from rat taste cells. We report here that rod transducin is also present in vertebrate taste cells, where it specifically activates a phosphodiesterase isolated from taste tissue. Furthermore, the bitter compound denatonium in the presence of taste-cell membranes activates transducin but not Gi. A peptide that competitively inhibits rhodopsin activation of transducin also blocks taste-cell membrane activation of transducin, arguing for the involvement of a seven-transmembrane-helix G-protein-coupled receptor. These results suggest that rod transducin transduces bitter taste by coupling taste receptor(s) to taste-cell phosphodiesterase. Phosphodieterase-mediated degradation of cyclic nucleotides may lead to taste-cell depolarization through the recently identified cyclic-nucleotide-suppressible conductance.

摘要

视杆和视锥转导素是特定的G蛋白,最初被认为仅存在于脊椎动物视网膜的光感受器细胞中。转导素将光感受器视蛋白的光刺激转化为环鸟苷酸磷酸二酯酶的激活(参考文献5 - 7中有综述)。一种类似转导素的G蛋白——味觉转导素,已从大鼠味觉细胞中被鉴定和克隆出来。我们在此报告,视杆转导素也存在于脊椎动物的味觉细胞中,在那里它特异性地激活从味觉组织中分离出的一种磷酸二酯酶。此外,苦味化合物苯甲地那铵在味觉细胞膜存在的情况下激活转导素,但不激活Gi。一种竞争性抑制视紫红质对视杆转导素激活的肽,也能阻断味觉细胞膜对视杆转导素的激活,这表明涉及一种七跨膜螺旋G蛋白偶联受体。这些结果表明,视杆转导素通过将味觉受体与味觉细胞磷酸二酯酶偶联来转导苦味。磷酸二酯酶介导的环核苷酸降解可能通过最近发现的环核苷酸可抑制的电导导致味觉细胞去极化。

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