Structural dynamics of native and V260E mutant C-terminal domain of HIV-1 integrase

被引:5
|
作者
Sangeetha, Balasubramanian [1 ]
Muthukumaran, Rajagopalan [1 ]
Amutha, Ramaswamy [1 ]
机构
[1] Pondicherry Univ, Sch Life Sci, Ctr Bioinformat, Pondicherry 605014, India
关键词
Integrase; C-terminal domain; Hydrophobic; V260E; SH3; Unfolding; IMMUNODEFICIENCY-VIRUS TYPE-1; DNA-BINDING DOMAIN; LENGTH RETROVIRAL INTEGRASE; MOLECULAR-DYNAMICS; VIRAL-DNA; REVERSE TRANSCRIPTION; GENETIC-ANALYSIS; ACTIVE-SITE; IN-VITRO; PROTEIN;
D O I
10.1007/s10822-015-9830-y
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
The C-terminal domain (CTD) of HIV-1 integrase is a five stranded beta-barrel resembling an SH3 fold. Mutational studies on isolated CTD and full-length IN have reported V260E mutant as either homo-dimerization defective or affecting the stability and folding of CTD. In this study, molecular dynamics simulation techniques were used to unveil the effect of V260E mutation on isolated CTD monomer and dimer. Both monomeric and dimeric forms of wild type and V260E mutant are highly stable during the simulated period. However, the stabilizing pi-stacking interaction between Trp243 and Trp243' at the dimer interface is highly disturbed in CTD-V260E (> 6 apart). The loss in entropy for dimerization is -30 and -25 kcal/mol for CTD-wt and CTD-V260E respectively signifying a weak hydrophobic interaction and its perturbation in CTD-V260E. The mutant Glu260 exhibits strong attraction/repulsion with all the basic/acidic residues of CTD. In addition to this, the dynamics of CTD-wild type and V260E monomers at 498 K was analyzed to elucidate the effect of V260E mutation on CTD folding. Increase in SASA and reduction in the number of contacts in CTD-V260E during simulation highlights the instability caused by the mutation. In general, V260E mutation affects both multimerization and protein folding with a pronounced effect on protein folding rather than multimerization. This study emphasizes the importance of the hydrophobic nature and SH3 fold of CTD in proper functioning of HIV integrase and perturbing this nature would be a rational approach toward designing more selective and potent allosteric anti-HIV inhibitors.
引用
收藏
页码:371 / 385
页数:15
相关论文
共 50 条
  • [41] Unique Functional Properties of Conserved Arginine Residues in the Lentivirus Lytic Peptide Domains of the C-terminal Tail of HIV-1 gp41
    Kuhlmann, Anne-Sophie
    Steckbeck, Jonathan D.
    Sturgeon, Timothy J.
    Craigo, Jodi K.
    Montelaro, Ronald C.
    JOURNAL OF BIOLOGICAL CHEMISTRY, 2014, 289 (11) : 7630 - 7640
  • [42] Synthetic peptides derived from an N-terminal domain of the E2 protein of GB virus C in the study of GBV-C/HIV-1 co-infection
    Fernandez, Leticia
    Chan, Weng C.
    Egido, Meritxell
    Gomara, Maria J.
    Haro, Isabel
    JOURNAL OF PEPTIDE SCIENCE, 2012, 18 (05) : 326 - 335
  • [43] 1H, 13C and 15N backbone and partial side-chain resonance assignments of the C-terminal domain of HIV-1 Pr55Gag encompassed in NCp15
    Larue, Valery
    Catala, Marjorie
    Belfetmi, Anissa
    Zargarian, Loussine
    Mauffret, Olivier
    Tisne, Carine
    BIOMOLECULAR NMR ASSIGNMENTS, 2018, 12 (01) : 139 - 143
  • [44] Comparative molecular dynamics simulations of HIV-1 integrase and the T66I/M154I mutant: Binding modes and drug resistance to a diketo acid inhibitor
    Brigo, A
    Lee, KW
    Fogolari, F
    Mustata, GL
    Briggs, JM
    PROTEINS-STRUCTURE FUNCTION AND BIOINFORMATICS, 2005, 59 (04) : 723 - 741
  • [45] Subunit-specific protein footprinting reveals significant structural Rearrangements and a role for N-terminal Lys-14 of HIV-1 integrase during viral DNA binding
    Zhao, Zhuojun
    McKee, Christopher J.
    Kessl, Jacques J.
    Santos, Webster L.
    Daigle, Janet E.
    Engelman, Alan
    Verdine, Gregory
    Kvaratskhelia, Mamuka
    JOURNAL OF BIOLOGICAL CHEMISTRY, 2008, 283 (09) : 5632 - 5641
  • [46] Structural and Energetic Analysis on the Complexes of Clinically Isolated Subtype C HIV-1 Proteases and Approved Inhibitors by Molecular Dynamics Simulation
    Matsuyama, Shou
    Aydan, Ay
    Ode, Hirotaka
    Hata, Masayuki
    Sugiura, Wataru
    Hoshino, Tyuji
    JOURNAL OF PHYSICAL CHEMISTRY B, 2010, 114 (01) : 521 - 530
  • [47] Secondary and tertiary structural changes in gamma delta resolvase: Comparison of the wild-type enzyme, the I110R mutant, and the C-terminal DNA binding domain in solution
    Pan, B
    Deng, ZW
    Liu, DJ
    Ghosh, S
    Mullen, GP
    PROTEIN SCIENCE, 1997, 6 (06) : 1237 - 1247
  • [48] Structural insights into the South African HIV-1 subtype C protease: impact of hinge region dynamics and flap flexibility in drug resistance
    Naicker, Previn
    Achilonu, Ikechukwu
    Fanucchi, Sylvia
    Fernandes, Manuel
    Ibrahim, Mahmoud A. A.
    Dirr, Heini W.
    Soliman, Mahmoud E. S.
    Sayed, Yasien
    JOURNAL OF BIOMOLECULAR STRUCTURE & DYNAMICS, 2013, 31 (12) : 1370 - 1380
  • [49] 1H and 15N resonance assignment, secondary structure and dynamic behaviour of the C-terminal domain of human papillomavirus oncoprotein E6
    Yves Nominé
    Sebastian Charbonnier
    Laurent Miguet
    Noelle Potier
    Alain Van Dorsselaer
    R. Andrew Atkinson
    Gilles Travé
    Bruno Kieffer
    Journal of Biomolecular NMR, 2005, 31 : 129 - 141
  • [50] 1H and 15N resonance assignment, secondary structure and dynamic behaviour of the C-terminal domain of human papillomavirus oncoprotein E6
    Nominé, Y
    Charbonnier, S
    Miguet, L
    Potier, N
    Van Dorsselaer, A
    Atkinson, R
    Travé, G
    Kieffer, B
    JOURNAL OF BIOMOLECULAR NMR, 2005, 31 (02) : 129 - 141