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首页> 外文期刊>The Journal of biological chemistry >Nitric Oxide Mediates the Glutamate-dependent Pathway for Neurotransmission in Sepia officinalis Chromatophore Organs
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Nitric Oxide Mediates the Glutamate-dependent Pathway for Neurotransmission in Sepia officinalis Chromatophore Organs

机译:一氧化氮在棕褐内染色体染色体器官中介导谷氨酸依赖性途径

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Chromatophore organs are complex and unique structures responsible for the variety of body coloration patterns used by cephalopods to communicate and camouflage. They are formed by a pigment-containing cytoelastic sacculus, surrounded by muscle fibers directly innervated from the brain. Muscle contraction and relaxation are responsible for expansion and retraction of the pigment-containing cell. Their functioning depends on glutamate and Phe-Met-Arg-Phe-NH2-related peptides, which induce fast and slow cell expansion, respectively, and 5-hydroxytryptamine, which induces retraction. Apart from these three substances and acetylcholine, which acts presynaptically, no other neuroactive compounds have so far been found to be involved in the neuroregulation of chromatophore physiology, and the detailed signaling mechanisms are still little understood. Herein, we disclose the role of nitric oxide (NO) as mediator in one of the signaling pathways by which glutamate activates body patterning. NO and nitric-oxide synthase have been detected in pigment and muscle fibers of embryo, juvenile, and adult chromatophore organs from Sepia officinalis. NO-mediated Sepia chromatophore expansion operates at slower rate than glutamate and involves cGMP, cyclic ADP-ribose, and ryanodine receptor activation. These results demonstrate for the first time that NO is an important messenger in the long term maintenance of the body coloration patterns in Sepia.
机译:染色体器官是复杂的结构和独特的结构,负责Cephalopods用于通信和伪装的各种身体着色图案。它们由含颜料的细胞弹性姿势形成,被肌肉纤维围绕着直接从脑中接头。肌肉收缩和放松是负责含颜料细胞的膨胀和缩回。它们的作用取决于谷氨酸和PHE-MET-ARG-PHE-NH2相关肽,其分别诱导快速和缓慢的细胞膨胀和5-羟基特胺,其诱导缩回。除了这三种物质和乙酰胆碱,迄今为止,目前没有发现其他神经活性化合物涉及染色体生理学的神经疗程,并且详细的信号传导机制仍然很少了解。在此,我们公开了一氧化氮(NO)作为介质在谷氨酸活化体图案中的一种信号通路中的介体的作用。从棕褐色,幼虫,成人染色体器官的颜料和肌肉纤维中检测到NO和一氧化氮合成酶。无介导的棕褐色染色体膨胀率比谷氨酸酸盐较慢,涉及CGMP,环状ADP-核糖和ryanodine受体活化。这些结果首次证明了在棕褐色的长期维护身体着色模式的长期维护中,这是第一次的重要使者。

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