结合硅/体外方法鉴定与Leigh综合征早发病例相关的p.Tyr110Cys肉碱o -乙酰转移酶(CRAT)变异活性调节剂

IF 6.9 1区 医学 Q1 CHEMISTRY, MULTIDISCIPLINARY
Lucas Cafferati Beltrame, Maria Noemi Sgobba, Luna Laera, Valeria Scaglione, Sabino Todisco, Serena Barile, Anna Lucia Francavilla, Danila Imperia De Luca, Michele Montaruli, Vito Porcelli, Lorenzo Guerra, Anna De Grassi, Mariateresa Volpicella, Ciro Leonardo Pierri
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引用次数: 0

摘要

肉碱o -乙酰转移酶(CRAT)是参与线粒体能量代谢的重要酶。CRAT活性的改变已成为Leigh综合征和相关线粒体疾病发病机制的重要因素。在这项研究中,我们采用了一种综合的方法,将硅对接分析和化学文库的虚拟筛选与随后的体外验证相结合,以鉴定野生型(WT) CRAT和p.Tyr110Cys (Y110C)变异活性的小分子调节剂与Leigh综合征早发病例相关。通过三维分子建模、对接模拟和化学文库的虚拟筛选,根据预测的结合亲和力和与WT-CRAT和p.Tyr110Cys-CRAT突变体3D模型的相互作用,对潜在的CRAT调节剂进行了优先级排序。通过体外分析纯化的重组CRAT蛋白和对照成纤维细胞的细胞裂解物,以及基因诊断为CRAT缺陷的患者的成纤维细胞,验证了所进行的硅质分析,这些成纤维细胞携带CRAT基因的复合杂合错义变体,即p.Tyr110Cys和p.Val569Met。在上述筛选的基础上,通过应用指定的过滤策略和上述标准,对3种市售批准药物(也以其可能与线粒体相互作用而闻名),即格列美脲、青蒿素和多唑胺,以及苏拉明(已以其与线粒体蛋白相互作用的能力而闻名)进行体外试验。我们发现苏拉明(1-1000 μM)剂量依赖性地抑制WT-CRAT和p.Tyr110Cys_CRAT变体的活性。青蒿素(0.1 ~ 200 μM)剂量依赖性地刺激了重组p.t tyr110cys CRAT突变体的活性,而格列美脲和多唑胺对乙酰辅酶a的活性没有影响。这项研究证明了这种联合方法在识别调节CRAT酶活性的新化合物方面的有效性,为针对CRAT相关疾病的潜在治疗干预提供了有价值的见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Combined in silico/in vitro approaches for identifying modulators of the activity of the p.Tyr110Cys Carnitine O-Acetyltransferase (CRAT) variant associated to an early onset case of Leigh syndrome.

Carnitine O-acetyltransferase (CRAT) is a crucial enzyme involved in mitochondrial energy metabolism. Alterations in CRAT activity have emerged as significant contributors to the pathogenesis of Leigh syndrome and related mitochondrial disorders. In this study we employed an integrated approach combining in silico docking analysis and virtual screening of chemical libraries with subsequent in vitro validation to identify small molecule modulators of the activity of the wild type (WT) CRAT and the p.Tyr110Cys (Y110C) variant associated to an early onset case of Leigh syndrome. Through 3D molecular modeling, docking simulations, and virtual screening of chemical libraries, potential CRAT modulators were prioritized based on their predicted binding affinities and interactions with the 3D models of the WT-CRAT and of the p.Tyr110Cys-CRAT mutant. The performed in silico analyses were validated through in vitro assays on the purified recombinant CRAT proteins and cell-lysates from control fibroblasts and the fibroblasts of a patient with genetic diagnosis of CRAT-deficiency, carrying the compound heterozygous missense variants in the CRAT gene, namely p.Tyr110Cys and p.Val569Met. Based on the above screening by applying the indicated filtering strategy and mentioned criteria, 3 commercially available approved drugs (also known for their possible interactions with mitochondria) namely glimepiride, artemisinin and dorzolamide, as well as suramin (already known for its ability to interact with mitochondrial proteins) were tested in in vitro assays. We found that suramin (1-1000 μM) dose-dependently inhibited the activity of both WT-CRAT and p.Tyr110Cys_CRAT variant. Artemisinin (0.1-200 μM) dose-dependently stimulated the activity of the recombinant p.Tyr110Cys CRAT mutant, whereas glimepiride and dorzolamide did not change the activity of these proteins towards acetyl-CoA. This study demonstrates the effectiveness of this combined approach in identifying novel compounds for modulating CRAT enzyme activity, providing valuable insights for potential therapeutic interventions targeting CRAT-related disorders.

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来源期刊
Acta Pharmacologica Sinica
Acta Pharmacologica Sinica 医学-化学综合
CiteScore
15.10
自引率
2.40%
发文量
4365
审稿时长
2 months
期刊介绍: APS (Acta Pharmacologica Sinica) welcomes submissions from diverse areas of pharmacology and the life sciences. While we encourage contributions across a broad spectrum, topics of particular interest include, but are not limited to: anticancer pharmacology, cardiovascular and pulmonary pharmacology, clinical pharmacology, drug discovery, gastrointestinal and hepatic pharmacology, genitourinary, renal, and endocrine pharmacology, immunopharmacology and inflammation, molecular and cellular pharmacology, neuropharmacology, pharmaceutics, and pharmacokinetics. Join us in sharing your research and insights in pharmacology and the life sciences.
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