Computational Biology and Molecular Simulations Laboratory, Department of Biophysics, School of Medicine, Bahçeşehir University, Istanbul, Turkey.
Computational Biology and Molecular Simulations Laboratory, Department of Biophysics, School of Medicine, Bahçeşehir University, Istanbul, Turkey; Molecular Therapy Laboratory, Department of Pharmaceutical Chemistry, School of Pharmacy, Bahçeşehir University, Istanbul, Turkey; Computational Drug Design Center (HITMER), Bahçeşehir University, Istanbul, Turkey.
J Mol Graph Model. 2023 Dec;125:108575. doi: 10.1016/j.jmgm.2023.108575. Epub 2023 Jul 26.
The complex nature of Alzheimer's disease (AD) makes it difficult to understand the exact molecular processes leading to neuron death. However, two molecular factors - the production of amyloid-beta plaques and tau tangles - are considered to be linked to AD. A genetic marker for brain atrophy, FAM222A, has been identified by the unique cross-phenotype meta-analysis of genetics imaging and the molecular features show an interaction between the protein aggregatin encoded by FAM222A and amyloid beta (Aβ)-peptide (1-42) via its N-terminal Aβ binding domain, thus increasing Aβ aggregation. Function of Aggregatin protein is unclear, and its 3D structure has not been investigated in experimental analysis, so far. Hence, in the present study, first time in literature, 3D models of FAM222A-encoded Aggregatin were systematically constructed by applying diverse homology modeling approaches and they were used as target structures at the virtual screening of FDA-approved drugs and drugs currently under research in clinical trials. Then, the identified hit molecules were chosen for further molecular dynamics (MD) simulations and post-MD analyses. Our integrated ligand-based and protein-driven-based virtual screening results show that Cefpiramide, Diniprofylline, Fostriecin, and Droperidol may target Aggregatin.
阿尔茨海默病(AD)的复杂性使得难以理解导致神经元死亡的确切分子过程。然而,两种分子因素——淀粉样β斑块的产生和tau 缠结——被认为与 AD 有关。通过对遗传成像的独特跨表型荟萃分析,鉴定了脑萎缩的遗传标志物 FAM222A,其分子特征显示 FAM222A 编码的蛋白聚集物与淀粉样β(Aβ)-肽(1-42)之间存在相互作用通过其 N 端 Aβ 结合结构域,从而增加 Aβ 聚集。聚集蛋白的功能尚不清楚,其 3D 结构尚未在实验分析中进行研究,到目前为止。因此,在本研究中,首次在文献中,通过应用多种同源建模方法,系统构建了 FAM222A 编码的 Aggregatin 的 3D 模型,并将其用作虚拟筛选 FDA 批准药物和临床试验中正在研究的药物的靶标结构。然后,选择鉴定出的命中分子进行进一步的分子动力学(MD)模拟和 MD 后分析。我们的基于配体和基于蛋白质的综合虚拟筛选结果表明,头孢匹罗、二丙非林、福司提林和氟哌利多可能是 Aggregatin 的靶点。