Valacyclovir and Acyclovir Are Substrates of the Guanine Deaminase Cytosolic PSD-95 Interactor (Cypin).

IF 4.3 3区 材料科学 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC ACS Applied Electronic Materials Pub Date : 2024-08-29 DOI:10.1002/prot.26740
Keith R Lange, Noor Rasheed, Xiaoyang Su, M Elena Diaz-Rubio, Bonnie L Firestein
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Abstract

Valacyclovir, enzymatically hydrolyzed in the body to acyclovir, is a guanine-based nucleoside analog commonly prescribed as an antiviral therapy. Previous reports suggest that guanosine analogs bind to guanine deaminase; however, it is unclear whether they act as inhibitors or substrates. Data from our laboratory suggest that inhibition of guanine deaminase by small molecules attenuates spinal cord injury-induced neuropathic pain. Here, we examine whether the guanosine analogs valacyclovir and acyclovir are deaminated by cypin (cytosolic PSD-95 interactor), the major guanine deaminase in the body, or if they act as cypin inhibitors. Using purified Rattus norvegicus cypin, we use NADH-coupled assay to confirm deamination of valacyclovir and determined Michaelis-Menten constants. Subsequently, we use tryptophan fluorescence quenching assay to calculate dissociation constants for valacyclovir and acyclovir and find that inclusion of the valine motif in valacyclovir increases affinity for cypin compared to acyclovir. To our knowledge, neither Km nor KD values for cypin has been previously reported for either compound. We use Amplex Red assay and demonstrate that both valacyclovir and acyclovir are cypin substrates and that their metabolites are further processed by xanthine oxidase and uricase. Using molecular dynamics simulations, we demonstrate that an alpha helix near the active site is displaced when valacyclovir binds to cypin. Furthermore, we used LC-MS-based assay to directly confirm deamination of valacyclovir by cypin. Taken together, our results demonstrate a novel role for cypin in deamination of valacyclovir and acyclovir and suggest that therapeutics based on purine structures may be inactivated by cypin, decreasing inhibitory efficacy.

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伐昔洛韦和阿昔洛韦是鸟嘌呤脱氨酶细胞质 PSD-95 互作因子 (Cypin) 的底物
伐昔洛韦在体内经酶水解后生成阿昔洛韦,是一种鸟嘌呤核苷类似物,常用于抗病毒治疗。以前的报告表明,鸟苷类似物与鸟嘌呤脱氨酶结合,但还不清楚它们是作为抑制剂还是底物。我们实验室的数据表明,小分子抑制鸟嘌呤脱氨酶可减轻脊髓损伤引起的神经性疼痛。在这里,我们研究了鸟苷类似物伐昔洛韦和阿昔洛韦是否会被体内主要的鸟嘌呤脱氨酶--细胞蛋白(细胞质 PSD-95 交互因子)脱氨,或者它们是否会作为细胞蛋白抑制剂发挥作用。我们利用纯化的诺瓦克鼠细胞蛋白酶,使用 NADH 耦合分析法确认了伐昔洛韦的脱氨基作用,并测定了 Michaelis-Menten 常量。随后,我们使用色氨酸荧光淬灭试验计算了伐昔洛韦和阿昔洛韦的解离常数,发现与阿昔洛韦相比,伐昔洛韦中含有的缬氨酸基团增加了对赛平素的亲和力。据我们所知,以前从未报道过这两种化合物与环吡酮胺的 Km 或 KD 值。我们使用 Amplex Red 检测法证明,伐昔洛韦和阿昔洛韦都是环戊二烯苷底物,它们的代谢物会被黄嘌呤氧化酶和尿酸酶进一步处理。通过分子动力学模拟,我们证明了当伐昔洛韦与环丁砜结合时,活性位点附近的α螺旋会发生位移。此外,我们还使用基于 LC-MS 的检测方法直接确认了环丁对伐昔洛韦的脱氨作用。综上所述,我们的研究结果表明了cypin在伐昔洛韦和阿昔洛韦脱氨过程中的新作用,并表明基于嘌呤结构的治疗药物可能会被cypin灭活,从而降低抑制疗效。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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CiteScore
7.20
自引率
4.30%
发文量
567
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