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Temperature-accelerated molecular dynamics gives insights into globular conformations sampled in the free state of the AC catalytic domain.

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  • معلومة اضافية
    • Contributors:
      Cellule Pasteur UPMC; Université Pierre et Marie Curie - Paris 6 (UPMC)-Institut Pasteur Paris (IP); Bioinformatique structurale - Structural Bioinformatics; Institut Pasteur Paris (IP)-Centre National de la Recherche Scientifique (CNRS); School of Physics; University College Dublin Dublin (UCD); Physics; Università degli Studi di Roma "La Sapienza" = Sapienza University Rome (UNIROMA); Dpt of Neuroscience and Brain Technologies Genova; NeuroEngineering & bio-arTificial Synergic SystemS Laboratory Genova (NetS3 Lab); Italian Institute of Technology = Istituto Italiano di Tecnologia (IIT)-Italian Institute of Technology = Istituto Italiano di Tecnologia (IIT); Bourse de these MRT, Institut Pasteur, CNRSES thanks the Ministère de l’Enseignement Supérieur for PhD support. TM andTH acknowledge CNRS and Institut Pasteur for funding. GC acknowledges finan-cial support from SFI grant no. 08-IN.1-I1869 and from the Istituto Italiano diTecnologia under the SEED project grant no. 259 SIMBEDD - Advanced Computational Methods for Biophysics, Drug Design and Energy Research.
    • بيانات النشر:
      CCSD
      Wiley
    • الموضوع:
      2014
    • Collection:
      Institut Pasteur: HAL
    • نبذة مختصرة :
      International audience ; The catalytic domain of the adenyl cyclase (AC) toxin from Bordetella pertussis is activated by interaction with calmodulin (CaM), resulting in cAMP overproduction in the infected cell. In the X-ray crystallographic structure of the complex between AC and the C terminal lobe of CaM, the toxin displays a markedly elongated shape. As for the structure of the isolated protein, experimental results support the hypothesis that more globular conformations are sampled, but information at atomic resolution is still lacking. Here, we use temperature-accelerated molecular dynamics (TAMD) simulations to generate putative all-atom models of globular conformations sampled by CaM-free AC. As collective variables, we use centers of mass coordinates of groups of residues selected from the analysis of standard molecular dynamics (MD) simulations. Results show that TAMD allows extended conformational sampling and generates AC conformations that are more globular than in the complexed state. These structures are then refined via energy minimization and further unrestrained MD simulations to optimize inter-domain packing interactions, thus resulting in the identification of a set of hydrogen bonds present in the globular conformations.
    • Relation:
      info:eu-repo/semantics/altIdentifier/pmid/24863163; PUBMED: 24863163
    • الرقم المعرف:
      10.1002/prot.24612
    • الدخول الالكتروني :
      https://pasteur.hal.science/pasteur-01107491
      https://pasteur.hal.science/pasteur-01107491v1/document
      https://pasteur.hal.science/pasteur-01107491v1/file/tamd10.pdf
      https://doi.org/10.1002/prot.24612
    • Rights:
      info:eu-repo/semantics/OpenAccess
    • الرقم المعرف:
      edsbas.4FB38EF0