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Mg2+/Ca2+ cation binding cycle of guanylyl cyclase activating proteins (GCAPs): role in regulation of photoreceptor guanylyl cyclase

机译:鸟苷酸环化酶激活蛋白(GCAPs)的Mg 2 + / Ca 2 + 阳离子结合周期:在调节光感受器鸟苷酸环化酶中的作用

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摘要

Photon absorption by photoreceptors activates hydrolysis of cGMP, which shuts down cGMP-gated channels and decreases free Ca2+ concentrations in outer segment. Suppression of Ca2+ influx through the cGMP channel by light activates retinal guanylyl cyclase through guanylyl cyclase activating proteins (GCAPs) and thus expedites photoreceptors recovery from excitation and restores their light sensitivity. GCAP1 and GCAP2, two ubiquitous among vertebrate species isoforms of GCAPs that activate retGC during rod response to light, are myristoylated Ca2+/Mg2+-binding proteins of the EF-hand superfamily. They consist of one non-metal binding EF-hand-like domain and three other EF-hands, each capable of binding Ca2+ and Mg2+. In the metal binding EF-hands of GCAP1, different point mutations can selectively block binding of Ca2+ or both Ca2+ and Mg2+ altogether. Activation of retGC at low Ca2+ (light adaptation) or its inhibition at high Ca2+ (dark adaptation) follows a cycle of Ca2+/Mg2+ exchange in GCAPs, rather than release of Ca2+ and its binding by apo-GCAPs. The Mg2+ binding in two of the EF-hands controls docking of GCAP1 with retGC1 in the conditions of light adaptation and is essential for activation of retGC. Mg2+ binding in a C-terminal EF-hand contributes to neither retGC1 docking with the cyclase nor its subsequent activation in the light, but is specifically required for switching the cyclase off in the conditions of dark adaptation by binding Ca2+. The Mg2+/Ca2+ exchange in GCAP1 and 2 operates within different range of intracellular Ca2+ concentrations and provides a two-step activation of the cyclase during rod recovery. Keywords Photoreceptor - Guanylyl cyclase - Retina - Ca2+ - Mg2+ - GCAP - Calcium-binding proteins
机译:感光体吸收光子会激活cGMP的水解,从而关闭cGMP门控通道并降低外部片段中的游离Ca 2 + 浓度。通过光抑制通过cGMP通道的Ca 2 + 流入,可通过鸟苷酸环化酶激活蛋白(GCAP)激活视网膜鸟苷酸环化酶,从而加快感光器从激发中的恢复并恢复其光敏性。 GCAP1和GCAP2是EF的髓鞘化Ca 2 + / Mg 2 + -结合蛋白手超家族。它们由一个非金属结合EF-手状结构域和三个其他EF-手组成,每个都能够结合Ca 2 + 和Mg 2 + 。在GCAP1的金属结合EF手中,不同的点突变可以选择性地阻断Ca 2 + 或Ca 2 + 和Mg 2 + 总共。 retGC在低Ca 2 + 下的激活(轻度适应)或在高Ca 2 + 上的抑制(暗适应)遵循Ca 2+ 循环。在GCAP中进行sup> / Mg 2 + 交换,而不是Ca 2 + 的释放及其与apo-GCAP的结合。 Mg 2 + 在两只EF手中的结合可控制GCAP1在光适应条件下与retGC1的对接,这对于retGC的激活至关重要。 C端EF手中的Mg 2 + 结合既不会使retGC1与环化酶对接,也不会使其随后在光下激活,但是在黑暗适应条件下关闭环化酶特别需要通过结合Ca 2 + 。 GCAP1和2中的Mg 2 + / Ca 2 + 交换在细胞内Ca 2 + 的不同浓度范围内运行,并提供了两步棒回收过程中环化酶的活化。关键词感光细胞-胍基环化酶-视网膜-Ca 2 + -Mg 2 + -GCAP-钙结合蛋白

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