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使用环鸟苷酸(cGMP)类似物研究青蛙光感受器磷酸二酯酶非催化性cGMP结合位点的结构特征

Structural features of the noncatalytic cGMP binding sites of frog photoreceptor phosphodiesterase using cGMP analogs.

作者信息

Hebert M C, Schwede F, Jastorff B, Cote R H

机构信息

Department of Biochemistry and Molecular Biology, University of New Hampshire, Durham, New Hampshire 03824, USA.

出版信息

J Biol Chem. 1998 Mar 6;273(10):5557-65. doi: 10.1074/jbc.273.10.5557.

Abstract

The cGMP-specific phosphodiesterase (PDE) of retinal photoreceptors is a central regulatory enzyme in the visual transduction pathway of vertebrate vision. Although the mechanism of activation of PDE by transducin is well understood, the role of the noncatalytic cGMP binding sites located on the catalytic subunits of PDE remains obscure. We report here for the first time the molecular basis of the noncovalent interactions between cGMP and the high affinity, noncatalytic cGMP binding sites of frog photoreceptor PDE. None of the tested cGMP analogs were able to bind with greater affinity than cGMP itself, and the noncatalytic sites were unable to bind cAMP. The major determinant for discrimination of cGMP over cAMP is in the N-1/C-6 region of the purine ring of cGMP where hydrogen bonding probably stabilizes the selective binding of cGMP. Substitutions at the C-2 position demonstrate that this region of the molecule plays a secondary but significant role in stabilizing cGMP binding to PDE through hydrogen bond interactions. The unaltered hydrogen at the C-8 position is also important for high affinity binding. A significant interaction between the binding pocket and the ribose ring of cGMP occurs at the 2'-hydroxyl position. Steric constraints were greatest in the C-8 and possibly the C-6/N-1 regions, whereas the C-2/N-3 and C-2' regions tolerated bulky substituents better. Several lines of evidence indicate that the noncatalytic site binds cGMP in the anti-conformation. The numerous noncovalent interactions between cGMP and the noncatalytic binding pocket of the photoreceptor PDE described in this study account for both the high affinity for cGMP and the high level of discrimination of cGMP from other cyclic nucleotides at the noncatalytic site.

摘要

视网膜光感受器的cGMP特异性磷酸二酯酶(PDE)是脊椎动物视觉转导途径中的一种核心调节酶。尽管转导素激活PDE的机制已为人熟知,但位于PDE催化亚基上的非催化性cGMP结合位点的作用仍不清楚。我们在此首次报道了cGMP与青蛙光感受器PDE的高亲和力非催化性cGMP结合位点之间非共价相互作用的分子基础。所测试的cGMP类似物中,没有一种能比cGMP本身结合得更紧密,且非催化位点不能结合cAMP。cGMP与cAMP区分的主要决定因素在于cGMP嘌呤环的N-1/C-6区域,氢键可能在此稳定了cGMP的选择性结合。C-2位的取代表明,该分子区域通过氢键相互作用在稳定cGMP与PDE的结合中起次要但重要的作用。C-8位未改变的氢对于高亲和力结合也很重要。结合口袋与cGMP核糖环在2'-羟基位置发生显著相互作用。空间限制在C-8位可能还有C-6/N-1区域最大,而C-2/N-3和C-2'区域对较大取代基的耐受性更好。几条证据表明非催化位点以反式构象结合cGMP。本研究中描述的cGMP与光感受器PDE非催化结合口袋之间众多的非共价相互作用,既解释了对cGMP的高亲和力,也解释了在非催化位点cGMP与其他环核苷酸之间的高度区分。

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