Phenolic compounds as histone deacetylase inhibitors: binding propensity and interaction insights from molecular docking and dynamics simulations

被引:0
作者
Abdullahi Ibrahim Uba
Gokhan Zengin
机构
[1] Istanbul AREL University,Department of Molecular Biology and Genetics
[2] Selcuk University,Department of Biology, Science Faculty
来源
Amino Acids | 2023年 / 55卷
关键词
HDACs; Phenolic compounds; Molecular docking; Zn; ion binding;
D O I
暂无
中图分类号
学科分类号
摘要
Histone deacetylases are well-established target enzymes involved in the pathology of different diseases including cancer and neurodegenerative disorders. The approved HDAC inhibitor drugs are associated with cellular toxicities. Different phenolic compounds have been shown to possess inhibitory activities against HDACs and are, therefore, considered safer alternatives to synthetic compounds. Here, we elucidated the binding mode and calculated the binding propensity of some of the top phenolic compounds against different isoforms representing different classes of Zn2+ ion-containing HDACs using the molecular docking approach. Our data reaffirmed the activity of the studied phenolic compounds against HDACs. Binding interaction analysis suggested that these compounds can block the activity of HDACs with or without binding to the active site zinc metal ion. Furthermore, molecular dynamics (MD) simulations were carried out on the selected crystal and docking complexes of each selected HDAC isoform. Analysis of root-mean-square displacement (RMSD) showed that the phenolic compounds demonstrated a stable binding mode over 50 ns in a way that is comparable to the cocrystal ligands. Together, these findings can aid future efforts in the search for natural inhibitors of HDACs.
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页码:579 / 593
页数:14
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[1]  
Alseksek RK(2022)The role of HDACs in the response of cancer cells to cellular stress and the potential for therapeutic intervention Int J Mol Sci 24 977-985
[2]  
Ramadan WS(2013)Kaempferol, a new nutrition-derived pan-inhibitor of human histone deacetylases J Nutr Biochem 2018 1-14
[3]  
Saleh E(2018)Evaluation of novel 3-hydroxyflavone analogues as HDAC inhibitors against colorectal cancer Adv Pharmacol Sci 87 4577-4597
[4]  
El-Awady R(2021)Recent developments of HDAC inhibitors: emerging indications and novel molecules Br J Clin Pharmacol 17 5219-5228
[5]  
Berger A(2009)Molecular modifications on carboxylic acid derivatives as potent histone deacetylase inhibitors: activity and docking studies Bioorg Med Chem 71 56-72.e54
[6]  
Venturelli S(2018)The nucleosome remodeling and deacetylation complex modulates chromatin structure at sites of active transcription to fine-tune gene expression Mol Cell 283 26694-26704
[7]  
Kallnischkies M(2008)Structural and functional analysis of the human HDAC4 catalytic domain reveals a regulatory structural zinc-binding domain J Biol Chem 83 993-1002
[8]  
Böcker A(2022)Rutin increases alpha-tubulin acetylation via histone deacetylase 6 inhibition Drug Dev Res 101 427-433
[9]  
Busch C(2007)Curcumin, both histone deacetylase and p300/CBP-specific inhibitor, represses the activity of nuclear factor kappa B and notch 1 in Raji cells Basic Clin Pharmacol Toxicol 58 231-238
[10]  
Weiland T(2020)Resveratrol inhibits ACHN cells via regulation of histone acetylation Pharm Biol 2 265-275