In silico studies of alkaloids and their derivatives against N-acetyltransferase EIS protein from Mycobacterium tuberculosis

被引:4
|
作者
Swain, Supriya P. [1 ]
Ahamad, Shahzaib [2 ]
Samarth, Nikhil [3 ]
Singh, Shailza [3 ]
Gupta, Dinesh [2 ]
Kumar, Shailesh [1 ]
机构
[1] Natl Inst Plant Genome Res NIPGR, Bioinformat Lab, Aruna Asaf Ali Marg, New Delhi 110067, India
[2] Int Ctr Genet Engn & Biotechnol, Translat Bioinformat Grp, New Delhi, India
[3] Natl Ctr Cell Sci, NCCS Complex, Pune, India
来源
关键词
Mycobacterium tuberculosis; enhanced intracellular survival; alkaloids; molecular docking; structure-based virtual screening; molecular dynamics simulation; density functional theory; phytochemicals; antibiotics resistance; MOLECULAR-DYNAMICS SIMULATION; DRUG; DOCKING; IDENTIFICATION; PREDICTION; RESISTANCE; INHIBITORS; DESCRIPTORS; CHEMISTRY; DISCOVERY;
D O I
10.1080/07391102.2023.2259487
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
Antibiotic resistance against Mycobacterium tuberculosis (M.tb.) has been a significant cause of death worldwide. The Enhanced intracellular survival (EIS) protein of the bacteria is an acetyltransferase that multiacetylates aminoglycoside antibiotics, preventing them from binding to the bacterial ribosome. To overcome the EIS-mediated antibiotics resistance of M.tb., we compiled 888 alkaloids and derivatives from five different databases and virtually screened them against the EIS receptor. The compound library was filtered down to 87 compounds, which underwent additional analysis and filtration. Moreover, the top 15 most prominent phytocompounds were obtained after the drug-likeness prediction and ADMET screening. Out of 15, nine compounds confirmed the maximum number of hydrogen bond interactions and reliable binding energies during molecular docking. Additionally, the Molecular dynamics (MD) simulation of nine compounds showed the three most stable complexes, further verified by re-docking with mutated protein. The density functional theory (DFT) calculation was performed to identify the HOMO-LUMO energy gaps of the selected three potential compounds. Finally, our selected top lead compounds i.e., Alkaloid AQC2 (PubChem85634496), Nobilisitine A (ChEbi68116), and N-methylcheilanthifoline (ChEbi140673) demonstrated more favourable outcomes when compared with reference compounds (i.e., 39b and 2i) in all parameters used in this study. Therefore, we anticipate that our findings will help to explore and develop natural compound therapy against multi and extensively drug-resistant strains of M.tb.Communicated by Ramaswamy H. Sarma
引用
收藏
页码:10950 / 10964
页数:15
相关论文
共 50 条
  • [31] The mode of binding of isoniazid, an anti-tubercular drug, to arylamine n-acetyltransferase from mycobacterium smegmatis
    Sandy, J.
    Holton, S.
    Noble, M. E. M.
    Sim, E.
    ACTA CRYSTALLOGRAPHICA A-FOUNDATION AND ADVANCES, 2004, 60 : S141 - S141
  • [32] Biochemical, structural, and functional studies reveal that MAB_4324c from Mycobacterium abscessus is an active tandem repeat N-acetyltransferase
    Alsarraf, Husam M. A. B.
    Ung, Kien Lam
    Johansen, Matt D.
    Dimon, Juliette
    Olieric, Vincent
    Kremer, Laurent
    Blaise, Mickael
    FEBS LETTERS, 2022, 596 (12) : 1516 - 1532
  • [33] Targeting Aminoglycoside Acetyltransferase Activity of Mycobacterium tuberculosis (H37Rv) Derived Eis (Enhanced Intracellular Survival) Protein with Quercetin
    Radhakrishnan, Logesh
    Dani, Rahul
    Navabshan, Irfan
    Jamal, Shazia
    Ahmed, Neesar
    PROTEIN JOURNAL, 2024, 43 (01): : 12 - 23
  • [34] Targeting Aminoglycoside Acetyltransferase Activity of Mycobacterium tuberculosis (H37Rv) Derived Eis (Enhanced Intracellular Survival) Protein with Quercetin
    Logesh Radhakrishnan
    Rahul Dani
    Irfan Navabshan
    Shazia Jamal
    Neesar Ahmed
    The Protein Journal, 2024, 43 : 12 - 23
  • [35] Improvement of the expression and purification of Mycobacterium tuberculosis arylamine N-acetyltransferase (TBNAT) a potential target for novel anti-tubercular agents
    Abuhammad, Areej
    Lack, Nathan
    Schweichler, Judith
    Staunton, David
    Sim, Robert B.
    Sim, Edith
    PROTEIN EXPRESSION AND PURIFICATION, 2011, 80 (02) : 246 - 252
  • [36] MOLECULAR STUDIES OF THE GENETIC POLYMORPHISM IN ARYLAMINE N-ACETYLTRANSFERASE FROM MOUSE-LIVER
    BURGESS, AP
    WANG, P
    SIM, E
    FASEB JOURNAL, 1988, 2 (04): : A801 - A801
  • [37] Synthesis of 1,2-Disubstituted Imidazole Derivatives as Potent Inhibitors of Mycobacterium tuberculosis and Their In Silico Studies
    Nadaf, AfraQuasar A.
    Bulbule, Sarojini R.
    Yaseen, Mohammed
    Najare, Mahesh S.
    Mantur, Shivaraj
    Khazi, Imtiyaz Ahmed M.
    CHEMISTRYSELECT, 2021, 6 (01): : 9 - 15
  • [38] Novel thiourea derivatives against Mycobacterium tuberculosis: synthesis, characterization and molecular docking studies
    Kutlu, Emine
    Emen, Fatih Mehmet
    Yildirim, Kuebra
    Atas, Cemilenur
    Demirdogen, Ruken Esra
    Yesilkaynak, Tuncay
    Kinayturk, Neslihan Kaya
    Simsek, Ece
    Coban, Ahmet Yilmaz
    PHOSPHORUS SULFUR AND SILICON AND THE RELATED ELEMENTS, 2023, 198 (10) : 844 - 853
  • [39] Molecular modeling studies and in vitro screening of dihydrorugosaflavonoid and its derivatives against Mycobacterium tuberculosis
    Puranik, Ninad V.
    Srivastava, Pratibha
    Swami, Sagar
    Choudhari, Amit
    Sarkar, Dhiman
    RSC ADVANCES, 2018, 8 (19): : 10634 - 10643
  • [40] Antimycobacterial Metabolites from Plectranthus: Royleanone Derivatives against Mycobacterium tuberculosis Strains
    Rijo, Patricia
    Simoes, M. Fatima
    Francisco, A. Paula
    Rojas, Rosario
    Gilman, Robert H.
    Vaisberg, Abraham J.
    Rodriguez, Benjamin
    Moiteiro, Cristina
    CHEMISTRY & BIODIVERSITY, 2010, 7 (04) : 922 - 932