Comparative molecular field analysis and molecular dynamics studies of α/β hydrolase domain containing 6 (ABHD6) inhibitors

被引:0
|
作者
Agnieszka A. Kaczor
Katarzyna M. Targowska-Duda
Jayendra Z. Patel
Tuomo Laitinen
Teija Parkkari
Yahaya Adams
Tapio J. Nevalainen
Antti Poso
机构
[1] Medical University of Lublin,Department of Synthesis and Chemical Technology of Pharmaceutical Substances with Molecular Modeling Laboratory, Faculty of Pharmacy with Division of Medical Analytics
[2] University of Eastern Finland,School of Pharmacy
[3] Medical University of Lublin,Department of Biopharmacy, Faculty of Pharmacy with Division of Medical Analytics
来源
关键词
ABHD6; ABHD6 inhibitors; CoMFA; The endocannabinoid system; Homology modeling; Molecular docking; Molecular dynamics;
D O I
暂无
中图分类号
学科分类号
摘要
The endocannabinoid system remains an attractive molecular target for pharmacological intervention due to its roles in the central nervous system in learning, thinking, emotional function, regulation of food intake or pain sensation, as well as in the peripheral nervous system, where it modulates the action of cardiovascular, immune, metabolic or reproductive function. α/β hydrolase domain containing 6 (ABHD6)—an enzyme forming part of the endocannabinoid system—is a newly discovered post-genomic protein acting as a 2-AG (2-arachidonoylglycerol) serine hydrolase. We have recently reported a series of 1,2,5-thiadiazole carbamates as potent and selective ABHD6 inhibitors. Here, we present comparative molecular field analysis (CoMFA) and molecular dynamics studies of these compounds. First, we performed a homology modeling study of ABHD6 based on the assumption that the catalytic triad of ABHD6 comprises Ser148–His306–Asp 278 and the oxyanion hole is formed by Met149 and Phe80. A total of 42 compounds was docked to the homology model using the Glide module from the Schrödinger suite of software and the selected docking poses were used for CoMFA alignment. A model with the following statistics was obtained: R2 = 0.98, Q2 = 0.55. In order to study the molecular interactions of the inhibitors with ABHD6 in detail, molecular dynamics was performed with the Desmond program. It was found that, during the simulations, the hydrogen bond between the inhibitor carbonyl group and the main chain of Phe80 is weakened, whereas a new hydrogen bond with the side chain of Ser148 is formed, facilitating the possible formation of a covalent bond.
引用
收藏
相关论文
共 50 条
  • [1] Comparative molecular field analysis and molecular dynamics studies of α/β hydrolase domain containing 6 (ABHD6) inhibitors
    Kaczor, Agnieszka A.
    Targowska-Duda, Katarzyna M.
    Patel, Jayendra Z.
    Laitinen, Tuomo
    Parkkari, Teija
    Adams, Yahaya
    Nevalainen, Tapio J.
    Poso, Antti
    JOURNAL OF MOLECULAR MODELING, 2015, 21 (10)
  • [2] α/β-Hydrolase Domain-Containing 6 (ABHD6)-A Multifunctional Lipid Hydrolase
    Pusch, Lisa-Maria
    Riegler-Berket, Lina
    Oberer, Monika
    Zimmermann, Robert
    Taschler, Ulrike
    METABOLITES, 2022, 12 (08)
  • [3] Therapeutic potential of targeting α/β-Hydrolase domain-containing 6 (ABHD6)
    Deng, Hui
    Li, Weimin
    EUROPEAN JOURNAL OF MEDICINAL CHEMISTRY, 2020, 198
  • [4] Biochemical and pharmacological characterization of human α/β-hydrolase domain containing 6 (ABHD6) and 12 (ABHD12)
    Navia-Paldanius, Dina
    Savinainen, Juha R.
    Laitinen, Jarmo T.
    JOURNAL OF LIPID RESEARCH, 2012, 53 (11) : 2413 - 2424
  • [5] High expression of the evolutionarily conserved α/β hydrolase domain containing 6 (ABHD6) in Ewing tumors
    Max, Daniela
    Hesse, Manuela
    Volkmer, Ines
    Staege, Martin S.
    CANCER SCIENCE, 2009, 100 (12) : 2383 - 2389
  • [6] α/β Hydrolase Domain-containing 6 (ABHD6) Degrades the Late Endosomal/Lysosomal Lipid Bis(monoacylglycero)phosphate
    Pribasnig, Maria A.
    Mrak, Irina
    Grabner, Gernot F.
    Taschler, Ulrike
    Knittelfelder, Oskar
    Scherz, Barbara
    Eichmann, Thomas O.
    Heier, Christoph
    Grumet, Lukas
    Kowaliuk, Jakob
    Romauch, Matthias
    Holler, Stefan
    Anderl, Felix
    Wolinski, Heimo
    Lass, Achim
    Breinbauer, Rolf
    Marsche, Gunther
    Brown, J. Mark
    Zimmermann, Robert
    JOURNAL OF BIOLOGICAL CHEMISTRY, 2015, 290 (50) : 29869 - 29881
  • [7] α/β HYDROLASE DOMAIN-CONTAINING 6 (ABHD6) DEGRADES THE LATE ENDOSOMAL/LYSOSOMAL LIPID BIS(MONOACYLGLYCERO)PHOSPHATE
    Zimmermann, R.
    ATHEROSCLEROSIS, 2016, 252 : E258 - E258
  • [8] α/β-Hydrolase domain-containing 6 (ABHD6) negatively regulates the surface delivery and synaptic function of AMPA receptors
    Wei, Mengping
    Zhang, Jian
    Jia, Moye
    Yang, Chaojuan
    Pan, Yunlong
    Li, Shuaiqi
    Luo, Yiwen
    Zheng, Junyuan
    Ji, Jianguo
    Chen, Jianguo
    Hu, Xinli
    Xiong, Jingwei
    Shi, Yun
    Zhang, Chen
    PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2016, 113 (19) : E2695 - E2704
  • [9] Combined comparative molecular field analysis, comparative molecular similarity indices analysis, molecular docking and molecular dynamics studies of histone deacetylase 6 inhibitors
    Sharma, Monika
    Jha, Prakash
    Verma, Priyanka
    Chopra, Madhu
    CHEMICAL BIOLOGY & DRUG DESIGN, 2019, 93 (05) : 910 - 925
  • [10] Discovery and Optimization of Piperidyl-1,2,3-Triazole Ureas as Potent, Selective, and in Vivo-Active Inhibitors of α/β-Hydrolase Domain Containing 6 (ABHD6)
    Hsu, Ku-Lung
    Tsuboi, Katsunori
    Chang, Jae Won
    Whitby, Landon R.
    Speers, Anna E.
    Pugh, Holly
    Cravatt, Benjamin F.
    JOURNAL OF MEDICINAL CHEMISTRY, 2013, 56 (21) : 8270 - 8279