海洋天然产物作为潜在的针对SIK2蛋白激酶结构域的抗糖尿病药物的计算见解。

IF 2.3 3区 环境科学与生态学 Q3 CHEMISTRY, MULTIDISCIPLINARY
K Heyram, J Manikandan, D Prabhu, J Jeyakanthan
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引用次数: 0

摘要

在印度,糖尿病(DM)影响着7700多万成年人,预计到2045年将达到1.34亿例。目前的治疗方法,包括磺脲类药物和噻唑烷二酮类药物,是不够的,强调需要新的治疗策略。本研究研究了海洋天然产物(MNPs)作为针对糖尿病关键酶SIK2的替代治疗剂。使用计算方法验证了预测的SIK2模型的结构稳定性,并随后用于超过38,000个MNPs的基于结构的虚拟筛选(SBVS)。该方法确定了五个有希望的候选者:来自综合海洋天然产物数据库的CMNPD21753和CMNPD13370,来自海洋天然产物数据库的MNPD10685,以及来自海藻代谢物数据库的SWMDRR053和SWMDRR052。所鉴定的化合物的对接分数在-7.64至-11.95 kcal/mol之间,MMGBSA结合分数在-33.29至-68.29 kcal/mol之间,具有良好的预测药代动力学和毒性谱。分子动力学模拟(MDS)显示,与已知的SIK2抑制剂ARN-3236相比,这些化合物的预测结合亲和力更强。基于主成分(PC)的自由能图(FEL)分析进一步支持了这些化合物与SIK2的稳定结合。这些计算结果突出了这些先导物作为新型SIK2抑制剂的潜力,保证了未来在体外和体内的验证。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Computational insights into marine natural products as potential antidiabetic agents targeting the SIK2 protein kinase domain.

Diabetes mellitus (DM) affects over 77 million adults in India, with cases expected to reach 134 million by 2045. Current treatments, including sulfonylureas and thiazolidinediones, are inadequate, underscoring the need for novel therapeutic strategies. This study investigates marine natural products (MNPs) as alternative therapeutic agents targeting SIK2, a key enzyme involved in DM. The structural stability of the predicted SIK2 model was validated using computational methods and subsequently employed for structure-based virtual screening (SBVS) of over 38,000 MNPs. This approach identified five promising candidates: CMNPD21753 and CMNPD13370 from the Comprehensive Marine Natural Product Database, MNPD10685 from the Marine Natural Products Database, and SWMDRR053 and SWMDRR052 from the Seaweed Metabolite Database. The identified compounds demonstrated docking scores ranging from -7.64 to -11.95 kcal/mol and MMGBSA binding scores between -33.29 and -68.29 kcal/mol, with favourable predicted pharmacokinetic and toxicity profiles. Molecular dynamics simulations (MDS) revealed stronger predicted binding affinity for these compounds compared to ARN-3236, a known SIK2 inhibitor. Principal component (PC)-based free energy landscape (FEL) analysis further supported the stable binding of these compounds to SIK2. These computational findings highlight the potential of these leads as novel SIK2 inhibitors, warranting future in vitro and in vivo validation.

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来源期刊
CiteScore
5.20
自引率
20.00%
发文量
78
审稿时长
>24 weeks
期刊介绍: SAR and QSAR in Environmental Research is an international journal welcoming papers on the fundamental and practical aspects of the structure-activity and structure-property relationships in the fields of environmental science, agrochemistry, toxicology, pharmacology and applied chemistry. A unique aspect of the journal is the focus on emerging techniques for the building of SAR and QSAR models in these widely varying fields. The scope of the journal includes, but is not limited to, the topics of topological and physicochemical descriptors, mathematical, statistical and graphical methods for data analysis, computer methods and programs, original applications and comparative studies. In addition to primary scientific papers, the journal contains reviews of books and software and news of conferences. Special issues on topics of current and widespread interest to the SAR and QSAR community will be published from time to time.
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