Elucidating the binding mechanisms of GABA and Muscimol as an avenue to discover novel GABA-mimetic small molecules

被引:1
作者
Issahaku, Abdul Rashid [1 ,2 ]
Wilhelm, Anke [1 ]
Schutte-Smith, Marietjie [1 ]
Erasmus, Elizabeth [1 ]
Visser, Hendrik [1 ]
机构
[1] Univ Free State, Dept Chem, Bloemfontein, South Africa
[2] Univ Free State, Dept Chem, 205 Nelson Mandela Ave, ZA-9301 Bloemfontein, South Africa
关键词
GABA; Muscimol; GABA(A)-R; molecular dynamics simulation; pharmacophore modelling; ENTHALPY-ENTROPY COMPENSATION; RECEPTOR SUBUNIT GENES; FREE-ENERGY; DYNAMICS; ASSOCIATION; INHIBITORS; MODULATORS; SOFTWARE; ACCURACY; MUTATION;
D O I
10.1080/07391102.2024.2331088
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Gamma-aminobutyric acid (GABA) signaling is the principal inhibitory pathway in the central nervous system. It is critical in neuronal cell proliferation and fate determination. Any aberration in GABA inhibition results in psychiatric and neurological diseases. Thus, modulating GABAergic neurotransmission has become the basis of drug therapy for psychiatric and several neurological diseases. Though GABA and muscimol are classical inhibitors of GABA receptors, the search for novel inhibitors continues unabated. In this study, the binding mechanism of GABA and muscimol was elucidated and applied in the search for small molecule GABAergic inhibitors using comprehensive computational techniques. It was revealed that a high-affinity binding of GABA and muscimol was mediated by a water molecule involving alpha(1)Thr129 and then stabilized by strong interactions including salt bridges with beta(2)Glu155 and alpha(1)Arg66 amidst hydrogen bonds, pi-pi stacking, and pi -cation interactions with other residues. The binding of GABA and muscimol was also characterized by stability and deeper penetration into the hydrophobic core of the protein which resulted in conformational changes of the binding pocket and domain, by inducing correlated motions of the residues. Thermodynamics analysis showed GABA and muscimol exhibited total binding free energies of -19.85 +/- 8.83 Kcal/mol and -26.55 +/- 3.42 Kcal/mol, respectively. A pharmacophore model search, based on the energy contributions of implicating binding residues, resulted in the identification of ZINC68604167, ZINC19735138, ZINC04202466, ZINC00901626, and ZINC01532854 as potential GABA-mimetic compounds from metabolites and natural products libraries. This study has elucidated the binding mechanisms of GABA and muscimol and successfully applied in the identification of GABA-mimetic compounds.
引用
收藏
页数:16
相关论文
共 69 条
  • [21] Hammond J B, 1998, Am J Ther, V5, P33, DOI 10.1097/00045391-199801000-00006
  • [22] Avogadro: an advanced semantic chemical editor, visualization, and analysis platform
    Hanwell, Marcus D.
    Curtis, Donald E.
    Lonie, David C.
    Vandermeersch, Tim
    Zurek, Eva
    Hutchison, Geoffrey R.
    [J]. JOURNAL OF CHEMINFORMATICS, 2012, 4
  • [23] Molecular dynamics and free energy studies on the wild-type and double mutant HIV-1 protease complexed with amprenavir and two amprenavir-related inhibitors: Mechanism for binding and drug resistance
    Hou, Tingjun
    Yu, Ron
    [J]. JOURNAL OF MEDICINAL CHEMISTRY, 2007, 50 (06) : 1177 - 1188
  • [24] Issahaku Abdul Rashid, 2022, Informatics in Medicine Unlocked, DOI 10.1016/j.imu.2022.100952
  • [25] Characterization of the binding of MRTX1133 as an avenue for the discovery of potential KRASG12D inhibitors for cancer therapy
    Issahaku, Abdul Rashid
    Mukelabai, Namutula
    Agoni, Clement
    Rudrapal, Mithun
    Aldosari, Sahar M.
    Almalki, Sami G.
    Khan, Johra
    [J]. SCIENTIFIC REPORTS, 2022, 12 (01)
  • [26] Inside the cracked kernel: establishing the molecular basis of AMG510 and MRTX849 in destabilising KRASG12C mutant switch I and II in cancer treatment
    Issahaku, Abdul Rashid
    Salifu, Elliasu Y.
    Soliman, Mahmoud E. S.
    [J]. JOURNAL OF BIOMOLECULAR STRUCTURE & DYNAMICS, 2023, 41 (11) : 4890 - 4902
  • [27] Pharmacophore Modeling in drug discovery and development: An overview
    Khedkar, Santosh A.
    Malde, Alpeshkumar K.
    Coutinho, Evans C.
    Srivastava, Sudha
    [J]. MEDICINAL CHEMISTRY, 2007, 3 (02) : 187 - 197
  • [28] Shared structural mechanisms of general anaesthetics and benzodiazepines
    Kim, Jeong Joo
    Gharpure, Anant
    Teng, Jinfeng
    Zhuang, Yuxuan
    Howard, Rebecca J.
    Zhu, Shaotong
    Noviello, Colleen M.
    Walsh, Richard M., Jr.
    Lindahl, Erik
    Hibbs, Ryan E.
    [J]. NATURE, 2020, 585 (7824) : 303 - +
  • [29] The Top 5 Neurotransmitters from a Clinical Neurologist's Perspective
    Kondziella, Daniel
    [J]. NEUROCHEMICAL RESEARCH, 2017, 42 (06) : 1767 - 1771
  • [30] Importance of protein flexibility in ranking inhibitor affinities: modeling the binding mechanisms of piperidine carboxamides as Type I1/2 ALK inhibitors
    Kong, Xiaotian
    Pan, Peichen
    Li, Dan
    Tian, Sheng
    Li, Youyong
    Hou, Tingjun
    [J]. PHYSICAL CHEMISTRY CHEMICAL PHYSICS, 2015, 17 (08) : 6098 - 6113