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Regulatory function of the C-terminal segment of guanylate cyclase-activating protein 2

机译:鸟苷酸环化酶激活蛋白2 C末端片段的调控功能

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摘要

Neuronal responses to Ca2+-signals are provided by EF-hand-type neuronal Ca2+-sensor (NCS) proteins, which have similar core domains containing Ca2+-binding and target-recognizing sites. NCS proteins vary in functional specificity, probably depending on the structure and conformation of their non-conserved C-terminal segments. Here, we investigated the role of the C-terminal segment in guanylate cyclase activating protein-2, GCAP2, an NCS protein controlling the Ca2+-dependent regulation of photoreceptor guanylate cyclases. We obtained two chimeric proteins by exchanging C-terminal segments between GCAP2 and its photoreceptor homolog recoverin, a Ca2+-sensor controlling rhodopsin kinase (RK) activity. The exchange affected neither the structural integrity of GCAP2 and recoverin nor the Ca2+-sensitivity of GCAP2. Intrinsic fluorescence, circular dichroism, biochemical studies and hydrophobic dye probing revealed Ca2+-dependent conformational transition of the C-terminal segment of GCAP2 occurring in the molecular environment of both proteins. In Ca2+-GCAP2, the C-terminal segment was constrained and its replacement provided the protein with approximately two-fold inhibitory activity towards RK, suggesting that the segment contributes to specific target recognition by interfering with RK-binding. Upon Ca2+-release, it became less constrained and more available for phosphorylation by cyclic nucleotide-dependent protein kinase. The transition from the Ca2+-bound to the apo-state exposed hydrophobic sites in GCAP2, and was associated with its activating function without affecting its dimerization. The released C-terminal segment participated further in photoreceptor membrane binding making it sensitive to phosphorylation. Thus, the C-terminal segment in GCAP2 confers target selectivity, facilitates membrane binding and provides sensitivity of the membrane localization of the protein to phosphorylation by signaling kinases. (C) 2015 Elsevier B.V. All rights reserved.
机译:EF手型神经元Ca2 +传感器(NCS)蛋白提供了对Ca2 +信号的神经元响应,它们具有相似的包含Ca2 +结合和靶标识别位点的核心域。 NCS蛋白的功能特异性可能有所不同,这可能取决于其非保守C末端片段的结构和构象。在这里,我们调查了鸟苷酸环化酶激活蛋白2(GCAP2)中的C末端片段的作用,GCAP2是一种NCS蛋白,控制Ca2 +依赖的感光鸟苷酸环化酶的调控。我们通过在GCAP2及其感光受体同源恢复蛋白(控制视紫红质激酶(RK)活性的Ca2 +-传感器)之间交换C末端片段来获得两种嵌合蛋白。该交换既不影响GCAP2和recoverin的结构完整性,也不影响GCAP2的Ca2 +敏感性。内在荧光,圆二色性,生化研究和疏水性染料探测揭示了两种蛋白的分子环境中发生的GCAP2 C末端片段的Ca2 +依赖的构象转变。在Ca2 + -GCAP2中,C末端片段受到限制,其替换为蛋白质提供了对RK​​大约两倍的抑制活性,这表明该片段通过干扰RK结合而有助于特异性靶标识别。 Ca2 +释放后,它的约束变得更少,并且可用于环状核苷酸依赖性蛋白激酶进行磷酸化。从Ca2 +结合到apo态的转变暴露了GCAP2中的疏水位点,并且与其激活功能相关,而不会影响其二聚化。释放的C末端片段进一步参与了感光膜的结合,使其对磷酸化敏感。因此,GCAP2中的C末端片段赋予目标选择性,促进膜结合,并通过信号激酶提供蛋白质的膜定位对磷酸化的敏感性。 (C)2015 Elsevier B.V.保留所有权利。

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