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类似的 cGMP 类似物的结合模式限制了通过环核苷酸结合域调节视网膜 CNG 通道的选择性。

Similar Binding Modes of cGMP Analogues Limit Selectivity in Modulating Retinal CNG Channels via the Cyclic Nucleotide-Binding Domain.

机构信息

Institute for Drug Discovery, Medical Faculty, University of Leipzig, Leipzig 04103, Germany.

Institute of Physiology II, University Hospital Jena, Friedrich Schiller University Jena, Jena 07743, Germany.

出版信息

ACS Chem Neurosci. 2024 Apr 17;15(8):1652-1668. doi: 10.1021/acschemneuro.3c00665. Epub 2024 Apr 5.

Abstract

In treating , a genetic disorder causing progressive vision loss, selective inhibition of rod cyclic nucleotide-gated (CNG) channels holds promise. Blocking the increased Ca-influx in rod photoreceptors through CNG channels can potentially delay disease progression and improve the quality of life for patients. To find inhibitors for rod CNG channels, we investigated the impact of 16 cGMP analogues on both rod and cone CNG channels using the patch-clamp technique. Although modifications at the C8 position of the guanine ring did not change the ligand efficacy, modifications at the N1 and N positions rendered cGMP largely ineffective in activating retinal CNG channels. Notably, PET-cGMP displayed selective potential, favoring rod over cone, whereas Rp-cGMPS showed greater efficiency in activating cone over rod CNG channels. Ligand docking and molecular dynamics simulations on cyclic nucleotide-binding domains showed comparable binding energies and binding modes for cGMP and its analogues in both rod and cone CNG channels (CNGA1 vs CNGA3 subunits). Computational experiments on CNGB1a vs CNGB3 subunits showed similar binding modes albeit with fewer amino acid interactions with cGMP due to an inactivated conformation of their C-helix. In addition, no clear correlation could be observed between the computational scores and the CNG channel efficacy values, suggesting additional factors beyond binding strength determining ligand selectivity and potency. This study highlights the importance of looking beyond the cyclic nucleotide-binding domain and toward the gating mechanism when searching for selective modulators. Future efforts in developing selective modulators for CNG channels should prioritize targeting alternative channel domains.

摘要

在治疗一种导致进行性视力丧失的遗传疾病时,选择性抑制视杆细胞环核苷酸门控(CNG)通道具有很大的潜力。通过 CNG 通道阻断视杆感光细胞中增加的 Ca 内流,可能会延迟疾病进展,提高患者的生活质量。为了寻找 CNG 通道的抑制剂,我们使用膜片钳技术研究了 16 种 cGMP 类似物对视杆和视锥 CNG 通道的影响。尽管嘌呤环 C8 位的修饰没有改变配体的效力,但 N1 和 N 位的修饰使 cGMP 基本不能激活视网膜 CNG 通道。值得注意的是,PET-cGMP 表现出选择性潜力,有利于视杆细胞而非视锥细胞,而 Rp-cGMPS 在激活视锥细胞 CNG 通道方面比视杆细胞更有效。对环核苷酸结合域的配体对接和分子动力学模拟表明,cGMP 及其类似物在视杆和视锥 CNG 通道(CNGA1 与 CNGA3 亚基)中具有相似的结合能和结合模式。在 CNGB1a 与 CNGB3 亚基上的计算实验表明,尽管由于其 C 螺旋处于失活构象,与 cGMP 的氨基酸相互作用较少,但结合模式相似。此外,在计算评分与 CNG 通道效力值之间不能观察到明显的相关性,这表明除了结合强度之外,还有其他因素决定配体的选择性和效力。本研究强调了在寻找选择性调节剂时,不仅要关注环核苷酸结合域,还要关注门控机制的重要性。未来开发 CNG 通道选择性调节剂的工作应优先考虑靶向替代通道域。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d5c8/11027099/c3cfae985452/cn3c00665_0001.jpg

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