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Showing 1 to 4 of 4 for “"Chloracidobacterium thermophilum"”.

  1. Understanding PilB, The Type IV Pilus (T4P) Assembly ATPase

    … study identified PilB from thermophilic organism Chloracidobacterium thermophilum (Ct) to be a model for in vitro studies. An active CtPilB was successfully expressed and purified as a hexamer. Malachite green phosphate assay was used to examine CtPilB ATPase activity. The examination indicated …

    vt Repository record for Understanding PilB, The Type IV Pilus (T4P) Assembly ATPase (opens in a new tab)

  2. Structure And Function Of The FMO Protein From The Photosynthetic Green Sulfur Bacteria

    … of photosynthetic species - the Candidatus Chloracidobacterium thermophilum: Cab), also contains the FMO protein, which is significantly divergent from the FMO found in green sulfur bacteria: GSB). This FMO has two distinct structural regions different from the FMOs from GSB and also shows …

    wustl Repository record for Structure And Function Of The FMO Protein From The Photosynthetic Green Sulfur Bacteria (opens in a new tab)

  3. Computationally and Experimentally Exploring the Type IV Pilus Assembly ATPase for Antivirulence Drug Discovery

    … assembly ATPase PilB. A computational model of Chloracidobacterium thermophilum PilB was generated by homology modeling and molecular docking was performed to analyze the binding characteristics of six anti-PilB inhibitory compounds identified in previous studies. Computational docking aligns …

    vt Repository record for Computationally and Experimentally Exploring the Type IV Pilus Assembly ATPase for Antivirulence Drug Discovery (opens in a new tab)

  4. The Type IV Pilus Assembly ATPase PilB as a Regulator of Biofilm Formation and an Antivirulence Target

    … binding domain and C-terminal ATPase domain of Chloracidobacterium thermophilum PilB (CtPilB) in vitro. Our results confirm that these two domains bind to their respective ligands specifically, and demonstrate these domains communicate with each other in response to ligand binding. The results …

    vt Repository record for The Type IV Pilus Assembly ATPase PilB as a Regulator of Biofilm Formation and an Antivirulence Target (opens in a new tab)