Does dexamethasone inhibit glucose oxidase: an analysis in kinetics and molecular study.

IF 1.1 Q4 BIOCHEMISTRY & MOLECULAR BIOLOGY Hormone Molecular Biology and Clinical Investigation Pub Date : 2023-03-01 DOI:10.1515/hmbci-2022-0030
Edris Majd, Dariush Minai-Tehrani, Hamidreza Mollasalehi
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Abstract

Objectives: Glucose oxidase is an enzyme that is widely used in biosensors, especially kits for measuring blood sugar. Many diabetics use this type of kit to determine their blood sugar level. Aspergillus niger is the most important source of glucose oxidase for use in biosensors. Diabetes causes secondary diseases in patients for which medications are prescribed to improve them. Dexamethasone, a corticosteroid, is one of the drugs prescribed to diabetics to cure some secondary diseases. In this study, the effect of this drug on glucose oxidase was investigated from a kinetic and molecular point of view.

Methods: In this study, the kinetics of drug binding to the enzyme was measured and the type of inhibition was determined by Lineweaver-Burk plot. The Ki value of the drug was determined by drawing the secondary curve. Using fluorescence spectrophotometry and molecular docking, the binding of the drug to the enzyme was confirmed.

Results: The results showed that the drug inhibits the enzyme non-competitively. Determining the kinetics parameters of the drug-enzyme interaction showed that the drug acts as a potent inhibitor. Study at the molecular level by fluorescence spectrophotometer showed that the drug attachment alters the enzyme conformation to more compaction. In silico results showed that the drug is placed between two helices that are outside the active site and binds to the enzyme by three hydrogen bonds.

Conclusions: The result of this study is useful because it suggests that in diabetic patients taking dexamethasone, the amount of glucose declared by the kit may not be real due to the inhibition of glucose oxidase.

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地塞米松抑制葡萄糖氧化酶:动力学和分子研究的分析。
目的:葡萄糖氧化酶是一种广泛应用于生物传感器的酶,特别是用于测量血糖的试剂盒。许多糖尿病患者使用这种试剂盒来测定他们的血糖水平。黑曲霉是生物传感器中葡萄糖氧化酶最重要的来源。糖尿病会导致患者继发性疾病,这些疾病需要药物来改善。地塞米松是一种皮质类固醇,是糖尿病患者治疗一些继发性疾病的药物之一。本研究从动力学和分子的角度研究了该药物对葡萄糖氧化酶的作用。方法:采用Lineweaver-Burk图测定药物与该酶的结合动力学,并测定其抑制类型。通过绘制二次曲线测定药物的Ki值。利用荧光分光光度法和分子对接法,证实了药物与酶的结合。结果:该药物对该酶具有非竞争性抑制作用。测定药物-酶相互作用的动力学参数表明,该药物是一种有效的抑制剂。荧光分光光度计在分子水平上的研究表明,药物的附着改变了酶的构象,使其更紧实。计算机结果表明,药物被置于活性位点外的两个螺旋之间,并通过三个氢键与酶结合。结论:本研究的结果是有用的,因为它表明,在糖尿病患者服用地塞米松,试剂盒所宣布的葡萄糖量可能不是真实的,由于葡萄糖氧化酶的抑制。
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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来源期刊
Hormone Molecular Biology and Clinical Investigation
Hormone Molecular Biology and Clinical Investigation BIOCHEMISTRY & MOLECULAR BIOLOGY-
CiteScore
2.60
自引率
0.00%
发文量
55
期刊介绍: Hormone Molecular Biology and Clinical Investigation (HMBCI) is dedicated to the provision of basic data on molecular aspects of hormones in physiology and pathophysiology. The journal covers the treatment of major diseases, such as endocrine cancers (breast, prostate, endometrium, ovary), renal and lymphoid carcinoma, hypertension, cardiovascular systems, osteoporosis, hormone deficiency in menopause and andropause, obesity, diabetes, brain and related diseases, metabolic syndrome, sexual dysfunction, fetal and pregnancy diseases, as well as the treatment of dysfunctions and deficiencies. HMBCI covers new data on the different steps and factors involved in the mechanism of hormone action. It will equally examine the relation of hormones with the immune system and its environment, as well as new developments in hormone measurements. HMBCI is a blind peer reviewed journal and publishes in English: Original articles, Reviews, Mini Reviews, Short Communications, Case Reports, Letters to the Editor and Opinion papers. Ahead-of-print publishing ensures faster processing of fully proof-read, DOI-citable articles.
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