Asiaticus 自由杆菌中的 AICAR 转化酶/IMP 环水解酶(ATIC)双功能酶的特性分析

IF 2.5 4区 生物学 Q3 BIOCHEMISTRY & MOLECULAR BIOLOGY Biochimica et biophysica acta. Proteins and proteomics Pub Date : 2024-04-12 DOI:10.1016/j.bbapap.2024.141015
Sapna Lonare , Surabhi Rode , Preeti Verma, Shalja Verma, Harry Kaur, Md Shahid Alam, Padma Wangmo, Pravindra Kumar, Partha Roy, Ashwani Kumar Sharma
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引用次数: 0

摘要

5-aminoimidazole-4-carboxamide ribonucleotide (AICAR) transformylase/inosine monophosphate (IMP) cyclohydrolase (ATIC) 双功能酶参与催化嘌呤从头生物合成途径的倒数第二步和最后一步,对生物体的生存至关重要。本研究报告了亚西亚自由杆菌(CLasATIC)中 ATIC 的特征,以及潜在抑制剂分子的鉴定和细胞增殖活性的评估。CLasATIC 对底物 10-f-THF(Km,146.6 μM,Vmax,0.95 μmol/min/mg)和 AICAR(Km,34.81 μM,Vmax,0.56 μmol/min/mg)具有 AICAR 转化酶(AICAR TFase)活性,对 IMP 环醇酶(IMPCHase)也具有活性(Km,1.81 μM,Vmax,2.87 μmol/min/mg)。此外,还确定了酶活性的最佳 pH 值和温度。通过虚拟筛选和 MD 模拟,进行了体内研究,以确定潜在的抑制剂分子。在众多化合物中,HNBSA、 diosbulbin A 和 lepidine D 成为先导化合物,它们与 CLasATIC 的结合能和稳定性均高于 AICAR。ITC 研究报告显示,与 AICAR(Kd,83.4 μM)相比,HNBSA 和 diosbulbin A 的结合亲和力更高(Kd 分别为 12.3 μM 和 34.2 μM)。同样,DSC 研究表明,在存在抑制剂的情况下,CLasATIC 的热稳定性增强。CD 和荧光研究显示,CLasATIC 在与抑制剂结合后发生了显著的构象变化。通过使用 CHO 细胞进行基于细胞的生物测定,CLasATIC 表现出了强大的细胞增殖、伤口愈合和清除 ROS 的特性。这项研究强调了 CLasATIC 是一个很有前景的药物靶点,它具有潜在的抑制剂来管理 CLas 及其独特的细胞保护和伤口愈合特性,可用于未来的生物技术应用。
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Characterization of AICAR transformylase/IMP cyclohydrolase (ATIC) bifunctional enzyme from Candidatus Liberibacer asiaticus

The bifunctional enzyme, 5-aminoimidazole-4-carboxamide ribonucleotide (AICAR) transformylase/inosine monophosphate (IMP) cyclohydrolase (ATIC) is involved in catalyzing penultimate and final steps of purine de novo biosynthetic pathway crucial for the survival of organisms. The present study reports the characterization of ATIC from Candidatus Liberibacer asiaticus (CLasATIC) along with the identification of potential inhibitor molecules and evaluation of cell proliferative activity. CLasATIC showed both the AICAR Transformylase (AICAR TFase) activity for substrates, 10-f-THF (Km, 146.6 μM and Vmax, 0.95 μmol/min/mg) and AICAR (Km, 34.81 μM and Vmax, 0.56 μmol/min/mg) and IMP cyclohydrolase (IMPCHase) activitiy (Km, 1.81 μM and Vmax, 2.87 μmol/min/mg). The optimum pH and temperature were also identified for the enzyme activity. In-silico study has been conducted to identify potential inhibitor molecules through virtual screening and MD simulations. Out of many compounds, HNBSA, diosbulbin A and lepidine D emerged as lead compounds, exhibiting higher binding energy and stability for CLasATIC than AICAR. ITC study reports higher binding affinities for HNBSA and diosbulbin A (Kd, 12.3 μM and 34.2 μM, respectively) compared to AICAR (Kd, 83.4 μM). Likewise, DSC studies showed enhanced thermal stability for CLasATIC in the presence of inhibitors. CD and Fluorescence studies revealed significant conformational changes in CLasATIC upon binding of the inhibitors. CLasATIC demonstrated potent cell proliferative, wound healing and ROS scavenging properties evaluated by cell-based bioassays using CHO cells. This study highlights CLasATIC as a promising drug target with potential inhibitors for managing CLas and its unique cell protective, wound-healing properties for future biotechnological applications.

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来源期刊
CiteScore
8.00
自引率
0.00%
发文量
55
审稿时长
33 days
期刊介绍: BBA Proteins and Proteomics covers protein structure conformation and dynamics; protein folding; protein-ligand interactions; enzyme mechanisms, models and kinetics; protein physical properties and spectroscopy; and proteomics and bioinformatics analyses of protein structure, protein function, or protein regulation.
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