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多种脊椎动物视蛋白的非视觉光感受

Non-visual photoreception by a variety of vertebrate opsins.

作者信息

Kojima D, Fukada Y

机构信息

Department of Biophysics and Biochemistry, Graduate School of Science, University of Tokyo, Japan.

出版信息

Novartis Found Symp. 1999;224:265-79; discussion 279-82. doi: 10.1002/9780470515693.ch15.

Abstract

Extraretinal photoreceptors in animals are involved in a variety of physiological functions such as photo-entrainment of circadian rhythm, photoperiodicity and body colour change. We have identified pinopsin in the chicken pineal gland as a typical 'non-visual' photoreceptive molecule. Pinopsin with bound 11-cis-retinal shows a blue-light sensitivity (lambda max = 468 nm), and it may play a role in synchronizing the phase of the endogenous circadian oscillator with an environmental dark-light cycle. Pinopsin is not a unique pineal opsin in animals. In the zebrafish, we have detected expression of two rhodopsin genes, the nucleotide sequences of which are very similar but distinct from each other. One is canonical rhodopsin expressed in the retina, and the other is expressed in the pineal gland. The latter gene is widely distributed among teleosts, and we named it 'exo-rhodopsin' after extraocular rhodopsin. On the other hand, our effort to identify the 'deep brain opsin' responsible for the photoperiodic gonadal response resulted in the identification of two kinds of opsins; pinopsin in the toad anterior preoptic nucleus and rhodopsin in the pigeon lateral septum. Both of these opsins are localized in the cerebrospinal fluid-contacting neurons in the brain of the two animals. We also identified VAL opsin in zebrafish retinal horizontal cells, which have not been considered as photoreceptive cells. It has become evident that animals employ a wide variety of photoreceptive molecules for 'non-visual' purposes.

摘要

动物的视网膜外光感受器参与多种生理功能,如昼夜节律的光调节、光周期现象和体色变化。我们已确定鸡松果体中的视锥蛋白是一种典型的“非视觉”光感受分子。结合11 - 顺式视黄醛的视锥蛋白表现出蓝光敏感性(最大吸收波长 = 468 nm),它可能在内源性昼夜节律振荡器的相位与环境明暗周期同步中发挥作用。视锥蛋白并非动物松果体中唯一的视蛋白。在斑马鱼中,我们检测到两个视紫红质基因的表达,它们的核苷酸序列非常相似但彼此不同。一个是在视网膜中表达的典型视紫红质,另一个在松果体中表达。后一个基因在硬骨鱼中广泛分布,我们根据眼外视紫红质将其命名为“外视紫红质”。另一方面,我们为鉴定负责光周期性腺反应的“深部脑视蛋白”所做的努力,导致鉴定出两种视蛋白;蟾蜍前视前核中的视锥蛋白和鸽子外侧隔中的视紫红质。这两种视蛋白都定位于这两种动物大脑中与脑脊液接触的神经元中。我们还在斑马鱼视网膜水平细胞中鉴定出VAL视蛋白,而视网膜水平细胞此前未被视为光感受细胞。很明显,动物为“非视觉”目的使用了多种光感受分子。

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