Published February 15, 2021 | Version V1

Arresting the Catalytic Arginine in Chlorite Dismutases: Impact on Heme Coordination, Thermal Stability, and Catalysis

  • 1. Department of Chemistry, Institute of Biochemistry, University of Natural Resources and Life Sciences, Vienna, A-1190 Vienna, Austria
  • 2. BIMEF Laboratory, Department of Chemistry, University of Antwerp, 2020 Antwerp, Belgium
  • 3. Department of Structural and Computational Biology, Max Perutz Laboratories, University of Vienna, A-1030 Vienna, Austria; Department of Biochemistry, Faculty of Chemistry and Chemical Technology, University of Ljubljana, SI-1000 Ljubljana, Slovenia

Description

Description of the dataset:

  • Data type: spectroscopic measurements (UV-visible, ECD, EPR), DSC measurements, X-ray crystallography datasets, kinetic measurements, computer simulations and data analysis.
  • Files are in spc, par, m, csv, dsx and mtz format
  • Information on origin of the data:
    • EPR spectroscopic measurements in spc and par formats
    • EPR spectroscopic simulation and analyses in m format
    • UV-vis spectroscopic measurements in csv format
    • ECD measurements in dsx format
    • Enzyme activity data in csv format
    • DSC measurements in csv format
    • X-ray data in mtz format
  • Are the data generated (e.g. by a machine) or collected (e.g. by means of a survey)?
    • UV−vis spectra were recorded using a Cary 60 UV−vis spectrophotometer (Agilent) and a model U-3900 spectrophotometer (Hitachi,Mannheim, Germany)
    • Electronic circular dichroism spectroscopy was performed using Chirascan (Applied Photophysics, Leatherhead, U.K.).
    • X-Band CW-EPR experiments were performed on a Bruker ESP300E spectrometer equipped with a liquid helium cryostat (Oxford Inc.)
    • Enzyme activity was measured polarographically following the release of O2 by using a Clark-type oxygen electrode (Oxygraph Plus; Hansatech Instruments, Norfolk, U.K.).
    • Differential scanning calorimetry experiments were performed on a Micro-Cal PEAQ-DSC Automated instrument (Malvern Panalytical Ltd., Malvern, U.K.) equipped with an autosampler for 96-well plates and controlled by the MicroCal PEAQ-DSC software.
    • Crystallization experiments were performed using the sitting drop vapor diffusion method in SWISSCI MRC three-well crystallization plates (Molecular Dimensions, Newmarket, U.K.). Crystallization drops were set up using a mosquito crystallization robot (TTP Labtech). Commercially available crystallization screens were used for further screening. Crystallization plates were stored in a Formulatrix RI-1000 imaging device at 22 °C. Data were collected at 100 K using a PILATUS 6M detector (25 Hz, 450 μm sensor thickness) at beamline P13 operated by EMBL Hamburg at the PETRA III storage ring (DESY, Hamburg, Germany). Data sets were processed with XDS, and symmetry equivalent reflections merged with XDSCONV.
    • Files in PARACAT_WP3_20210217_01_EPR folder includes EPR spectroscopic measurements and computer simulations/analyses, original data are in spc/par formats; files in m format were used to process the data.
    • Files in PARACAT_WP3_20210217_02_UV-vis folder includes UV-Vis spectroscopic measurements of pH-titration in csv format.
    • Files in PARACAT_WP3_20210217_03_ECD folder includes ECD measurements of the far UV (180–260 nm) and visible (260–500 nm) area, as well as unfolding curves in dsx format.
    • Files in PARACAT_WP3_20210217_04_activity folder includes Clark electrode/activity measurements in csv format.
    • Files in PARACAT_WP3_20210217_05_DSC folder includes DSC measurements in csv format.
    • Files in PARACAT_WP3_20210217_06_Xray folder includes pre-processed (from the beamline pipeline) data sets in mtz format.
    • NB. See the “READ ME” text file in each subfolder for more detailed information on files organization.

    •  

    • Information on:
      • Cld, chlorite dismutase; CCld, chlorite dismutase from Cyanothece sp. PCC7425; CW, continuous wave; D, tetragonal; DSC, differential circular calorimetry; E, rhombic; ECD, electronic circular dichroism; EPR, electron paramagnetic resonance; HS, high-spin; LS, low-spin; NdCld, chlorite dismutase from Candidatus “Nitrospira defluvii”; PDB, Protein Data Bank; ZFS, zero-field splitting.
      • Units of measurement:
        • Concentration: mM (millimolar), µM (micromolar), % w/v (percentage weigth/volume), mg/mL (milligrams per milliliter)
        • Volume: mL (milliliters), µL (microliters)
        • Wavelength: nm (nanometers)
        • Temperature: °C (Celsius degrees), K (Kelvin degrees)
        • Time: min (minutes), h (hours)
        • Ellipticity: millidegrees
        • Frequency: GHz (gigahertz), kHz (kilohertz)
        • Power: mW (milliwatt)

Notes

 EPR data: The spc and par files can be opened on proprietary EPR softwares from Bruker or MatLab (version R2020b, used by the authors) with EasySpin toolbox (version 6.0.0-dev.26, used by the authors). The simulation scripts of EPR measurements can be opened and run on MatLab (version R2020a, used by the authors) with EasySpin toolbox (version 6.0.0-dev.26, used by the authors). MatLab can be purchased/downloaded from: https://www.mathworks.com/products/matlab.html; EasySpin toolbox can be downloaded from: https://easyspin.org/  UV-vis data: The csv files can be opened with programs like Microsoft Excel/Open Office Calc.  ECD data: The dsx files can be opened with Pro-Data Viewer from Applied Photophysics.  Activity data: The csv files can be opened with programs like Microsoft Excel/Open Office Calc.  DSC data: The csv files can be opened with programs like Microsoft Excel/Open Office Calc.  X-ray data: The mtz files can be opened with software suites for the automated determination and refinement of macromolecular structures like PHENIX or CCP4i2.

Files

Files (47.4 MB)

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md5:2414b1288a9cf85cee9d8954c11de0a2
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Additional details

Related works

Is supplement to
Dataset: 10.1021/acs.biochem.0c00910 (DOI)

Funding

European Commission
PARACAT - Paramagnetic Species in Catalysis Research. A Unified Approach Towards Heterogeneous, Homogeneous and Enzyme Catalysis 813209