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Dark-dependent soluble guanylyl cyclase activity in locust photoreceptor cells

机译:蝗虫感光细胞中的暗依赖性可溶性鸟苷基环化酶活性

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The enzyme soluble guanylyl cyclase (SGC) mediates physiological effects of the gaseous signalling molecule nitric oxide by generating the second messenger molecule cyclic-GMP (cGMP). Here we have demonstrated that SGC is expressed in photoreceptor cells of locust compound eyes. However, stimulation of SGC activity in the eyes was observed only in the dark, indicating that light may cause inhibition of SGC activity in locust photoreceptor cells. Because light causes elevation of cytosolic Ca~(2+) in insect photoreceptor cells, we investigated the involvement of Ca~(2+) in mediating the inhibitory effect of light on SGC activity in the locust eye. Light-adapted locust eyes incubated with Ca~(2+) -free physiological saline displayed a similar level of stimulated SGC activity to that normally seen only in dark-adapted eyes. These data indicate for the first time that Ca~(2+) may regulate SGC activity in cells. Moreover, the dark dependence of SGC activity in the locust eye suggests that SGC and cGMP may participate in dark-adaptation mechanisms in insect photoreceptor cells.
机译:可溶性可溶性鸟苷基环化酶(SGC)通过生成第二信使分子环状GMP(cGMP)介导气体信号分子一氧化氮的生理作用。在这里,我们证明了SGC在蝗虫复眼的感光细胞中表达。然而,仅在黑暗中观察到眼睛中SGC活性的刺激,这表明光可能会导致蝗虫感光细胞中SGC活性的抑制。由于光导致昆虫感光细胞中胞质Ca〜(2+)升高,因此我们研究了Ca〜(2+)参与介导光对蝗虫SGC活性的抑制作用。与不含Ca〜(2+)的生理盐水孵育的光适应蝗虫眼的SGC活性水平与仅在黑暗适应眼中所观察到的水平相似。这些数据首次表明Ca〜(2+)可能调节细胞中的SGC活性。此外,蝗虫眼中SGC活性的暗依赖性表明SGC和cGMP可能参与昆虫感光细胞的暗适应机制。

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