Groove binding of indole-3-butyric acid to calf thymus DNA: Spectroscopic and in silico approaches

被引:12
|
作者
Zhang, Dan [1 ]
Pan, Junhui [1 ]
Gong, Deming [1 ]
Zhang, Guowen [1 ]
机构
[1] Nanchang Univ, State Key Lab Food Sci & Technol, Nanchang 330047, Jiangxi, Peoples R China
基金
中国国家自然科学基金;
关键词
Calf thymus DNA; Indole-3-butyric acid; Groove binding; Spectroscopic techniques; Molecular dynamics simulation; PLANT-GROWTH REGULATORS; MOLECULAR DOCKING; SERUM-ALBUMIN; DRUG; CTDNA; THERMODYNAMICS; FLUORESCENCE; ANALOG;
D O I
10.1016/j.molliq.2021.118323
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Indole-3-butyric acid (IBA) is a broad-spectrum efficient plant growth regulator. It has been widely used in crop production, but may have a potential security risk due to its residual accumulation in agricultural products. Herein, the binding mode between IBA and calf thymus DNA (ctDNA) and influence of IBA on the structure of ctDNA were explored by using spectroscopic methods, viscosity measurement, melting temperature studies coupled with computational approaches. Fluorescence titration results indicated that ctDNA induced IBA fluorescence quenching in a static manner. The measured thermodynamic parameters demonstrated that the structure of IBA-ctDNA complex was primarily stabilized by hydrogen bonds and van der Waals forces. Fluorescence experiments, viscosity analyses and circular dichroism (CD) measurements confirmed that IBA interacted with ctDNA in terms of groove mode with no significant conformational change of ctDNA. Furthermore, molecular docking showed that IBA was preferentially bound to the minor groove of ctDNA rich in A-T bases. Molecular dynamics simulation further revealed IBA and DNA forming a stable complex and IBA could slightly increase the flexibility of ctDNA base pairs. In addition, IBA did not cause significant damage to the structure of DNA. These findings may supply conducive insights into the toxicity mechanisms of IBA at the molecular level. (C) 2021 Elsevier B.V. All rights reserved.
引用
收藏
页数:10
相关论文
共 50 条
  • [21] Transport of the two natural auxins, indole-3-butyric acid and indole-3-acetic acid, in Arabidopsis
    Rashotte, AM
    Poupart, J
    Waddell, CS
    Muday, GK
    PLANT PHYSIOLOGY, 2003, 133 (02) : 761 - 772
  • [22] ROOTING, QUANTIFICATION OF INDOLE-3-ACETIC ACID AND INDOLE-3-BUTYRIC ACID, AND IBA TRANSPORT IN GREVILLEA
    Krisantini, Santi
    Johnston, Margaret
    Beveridge, Christine Anne
    Ross, John
    Williams, Richard
    PROPAGATION OF ORNAMENTAL PLANTS, 2009, 9 (02): : 90 - 96
  • [23] Multi-spectroscopic and in silico investigation of gambogic acid-calf thymus DNA interactions
    Bhardwaj, Boddapati Kalyani
    James, Arsha
    Tomy, Jiya
    Shalini, K. B.
    Suresh, Padmanaban S.
    JOURNAL OF BIOMOLECULAR STRUCTURE & DYNAMICS, 2024,
  • [24] Mossbauer spectroscopic evidence for iron(III) complexation and reduction in acidic aqueous solutions of indole-3-butyric acid
    Kovács, K
    Kamnev, AA
    Shchelochkov, AG
    Kuzmann, E
    Medzihradszky-Schweiger, H
    Mink, J
    Vértes, A
    JOURNAL OF RADIOANALYTICAL AND NUCLEAR CHEMISTRY, 2004, 262 (01) : 151 - 156
  • [25] INDOLE-3-ACETIC-ACID AND INDOLE-3-BUTYRIC ACID IN TISSUES OF CARROT INOCULATED WITH AGROBACTERIUM-RHIZOGENES
    EPSTEIN, E
    NISSEN, SJ
    SUTTER, EG
    JOURNAL OF PLANT GROWTH REGULATION, 1991, 10 (02) : 97 - 100
  • [26] Effect of Indole-3-Butyric Acid on Root Formation in Alnus glutinosa Microcuttings
    Carmen San Jose, M.
    Romero, Lourdes
    Janeiro, Laura V.
    SILVA FENNICA, 2012, 46 (05) : 643 - 654
  • [27] Effect of indole-3-butyric acid on the recovery of phytoplasma-infected grapevine
    Kozina, Andrijana
    Jezic, Marin
    Tkalec, Mirta
    Kozina, Bernard
    Osrecak, Mirela
    Curkovic-Perica, Mirna
    BULLETIN OF INSECTOLOGY, 2011, 64 : S195 - S196
  • [28] Discovery of indole-3-butyric acid derivatives as potent histone deacetylase inhibitors
    Chen, Yiming
    Zhang, Lihui
    Zhang, Lin
    Jiang, Qixiao
    Zhang, Lei
    JOURNAL OF ENZYME INHIBITION AND MEDICINAL CHEMISTRY, 2021, 36 (01) : 425 - 436
  • [29] Alanine conjugate of indole-3-butyric acid improves rooting of highbush blueberries
    Mihaljevic, S.
    Salopek-Sondi, B.
    PLANT SOIL AND ENVIRONMENT, 2012, 58 (05) : 236 - 241
  • [30] Indole-3-butyric Acid Improves Root System Quality in Guarana Cuttings
    Dutra Pinto, Karla Gabrielle
    Figueiredo Albertino, Sonia Maria
    Leite, Bruna Nogueira
    Pereira Soares, Daniel Oscar
    de Castro, Francisco Martins
    de Gama, Las Alves
    Clivati, Debora
    Atroch, Andre Luiz
    HORTSCIENCE, 2020, 55 (10) : 1670 - 1675