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Structural diversity of neuronal calcium sensor proteins and insights for activation of retinal guanylyl cyclase by GCAP1

机译:神经元钙传感器蛋白的结构多样性和GCAP1激活视网膜鸟苷酸环化酶的见解

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摘要

Neuronal calcium sensor (NCS) proteins, a sub-branch of the calmodulin superfamily, are expressed in the brain and retina where they transduce calcium signals and are genetically linked to degenerative diseases. The amino acid sequences of NCS proteins are highly conserved but their physiological functions are quite different. Retinal recoverin controls Ca2+-dependent inactivation of light-excited rhodopsin during phototransduction, guanylyl cyclase activating proteins 1 and 2 (GCAP1 and GCAP2) promote Ca2+-dependent activation of retinal guanylyl cyclases, and neuronal frequenin (NCS-1) modulates synaptic activity and neuronal secretion. Here we review the molecular structures of myristoylated forms of NCS-1, recoverin, and GCAP1 that all look very different, suggesting that the attached myristoyl group helps to refold these highly homologous proteins into different three-dimensional folds. Ca2+-binding to both recoverin and NCS-1 cause large protein conformational changes that ejects the covalently attached myristoyl group into the solvent exterior and promotes membrane targeting (Ca2+-myristoyl switch). The GCAP proteins undergo much smaller Ca2+-induced conformational changes and do not possess a Ca2+-myristoyl switch. Recent structures of GCAP1 in both its activator and Ca2+-bound inhibitory states will be discussed to understand structural determinants that control their Ca2+-dependent activation of retinal guanylyl cyclases.
机译:神经元钙传感器(NCS)蛋白是钙调蛋白超家族的一个分支,在大脑和视网膜中表达,它们在这些细胞中传递钙信号,并与退行性疾病遗传相关。 NCS蛋白的氨基酸序列高度保守,但其生理功能却大不相同。视网膜恢复素在光转导过程中控制光刺激视紫红质的Ca 2 + 依赖性失活,鸟苷酸环化酶激活蛋白1和2(GCAP1和GCAP2)促进Ca 2 < / sup> + 依赖性激活视网膜鸟苷酸环化酶,而神经元弗雷明宁(NCS-1)调节突触活性和神经元分泌。在这里,我们审查了看起来都非常不同的NCS-1,recoverin和GCAP1的豆蔻酰化形式的分子结构,这表明所连接的豆蔻酰基团有助于将这些高度同源的蛋白质重新折叠成不同的三维折叠。 Ca 2 + 结合到recoveryin和NCS-1上会引起大的蛋白质构象变化,从而将共价连接的肉豆蔻酰基基团喷出到溶剂外部并促进膜靶向(Ca > 2 + -肉豆蔻酰开关)。 GCAP蛋白经历的Ca 2 + 诱导的构象变化小得多,并且不具有Ca 2 + -肉豆蔻酰开关。将讨论GCAP1在其激活剂和Ca 2 + 结合的抑制状态中的最新结构,以了解控制其Ca 2 < sup> + 依赖性的视网膜鸟苷酸环化酶激活。

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