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首页> 外文期刊>The Journal of biological chemistry >Functional Mapping of Interacting Regions of the Photoreceptor Phosphodiesterase (PDE6) γ-Subunit with PDE6 Catalytic Dimer, Transducin, and Regulator of G-protein Signaling9–1 (RGS9–1)
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Functional Mapping of Interacting Regions of the Photoreceptor Phosphodiesterase (PDE6) γ-Subunit with PDE6 Catalytic Dimer, Transducin, and Regulator of G-protein Signaling9–1 (RGS9–1)

机译:用PDE6催化二聚体,转霉素和G-蛋白信号传递的调节剂与PDE6催化剂酶(PDE6)γ-亚基相互作用的功能映射9-1(RGS9-1)

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The cGMP phosphodiesterase (PDE6) involved in visual transduction in photoreceptor cells contains two inhibitory γ-subunits (Pγ) which bind to the catalytic core (Pαβ) to inhibit catalysis and stimulate cGMP binding to the GAF domains of Pαβ. During visual excitation, interaction of activated transducin with Pγ relieves inhibition. Pγ also participates in a complex with RGS9–1 and other proteins to accelerate the GTPase activity of activated transducin. We studied the structural determinants for these important functions of Pγ. First, we identified two important sites in the middle region of Pγ (amino acids 27–38 and 52–54) that significantly stabilize the overall binding affinity of Pγ with Pαβ. The ability of Pγ to stimulate noncatalytic cGMP binding to the GAF domains of PDE6 has been localized to amino acids 27–30 of Pγ. Transducin activation of PDE6 catalysis critically depends on the presence of Ile54 in the glycine-rich region of Pγ in order to relieve inhibition of catalysis. The central glycine-rich region of Pγ is also required for transducin to increase cGMP exchange at the GAF domains. Finally, Thr-65 and/or Val-66 of Pγ are critical residues for Pγ to stimulate GTPase activity of transducin in a complex with RGS9–1. We propose that the glycine-rich region of Pγ is a primary docking site for PDE6-interacting proteins involved in the activation/inactivation pathways of visual transduction. This functional mapping of Pγ with its binding partners demonstrates the remarkable versatility of this multifunctional protein and its central role in regulating the activation and lifetime of visual transduction.
机译:在光感受器细胞中涉及视觉转导的CGMP磷酸二酯酶(PDE6)含有两种抑制γ-亚基(Pγ),其与催化核(Pαβ)结合以抑制催化核(Pαβ),以抑制催化作用并刺激与Pαβ的GAF结构域的CGMP结合。在视觉激发期间,活化转霉素与Pγ的相互作用减轻了抑制作用。 Pγ还参与RGS9-1和其他蛋白质的复合物,以加速活化转霉素的GTP酶活性。我们研究了Pγ的这些重要功能的结构决定因素。首先,我们鉴定了Pγ(氨基酸27-38和52-54)的中间区域中的两个重要部位,其显着稳定了Pγβ与Pαβ的总结合亲和力。 Pγ刺激非催化CGMP与PDE6的GAF结构域结合的能力已经局限于Pγ的氨基酸27-30。转霉素对PDE6催化的激活重视依赖于富含甘氨酸富含甘氨酸区的ILE54的存在,以缓解催化抑制。转霉素还需要富含C甘氨酸的Pγ区域,以增加GAF结构域的CGMP交换。最后,Pγ的Thr-65和/或Val-66是Pγ的关键残基,以刺激旋转琥珀酸的GTP酶活性与RGS9-1的复合物。我们提出富含甘氨酸的Pγ区域是用于PDE6 - 相互作用蛋白的主要对接部位,所述蛋白质参与视觉转导的活化/灭活途径。 Pγ与其结合伙伴的这种功能映射表明了这种多功能蛋白质的显着多功能性及其在调节视觉转导的激活和寿命方面的中心作用。

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