IIBBA   05544
INSTITUTO DE INVESTIGACIONES BIOQUIMICAS DE BUENOS AIRES
Unidad Ejecutora - UE
artículos
Título:
S-SAD phasing of monoclinic histidine kinase from Brucella abortus combining data from multiple crystals and orientations: an example of data collection strategy and a posteriori analysis of different data combinations
Autor/es:
SEBASTIÁN KLINKE; NICOLAS FOOS; JIMENA RINALDI; GASTÓN PARIS; FERNANDO A. GOLDBAUM; PIERRE LEGRAND; BEATRIZ G. GUIMARÃES; ANDREW THOMPSON
Revista:
ACTA CRYSTALLOGRAPHICA SECTION D-BIOLOGICAL CRYSTALLOGRAPHY
Editorial:
WILEY-BLACKWELL PUBLISHING, INC
Referencias:
Lugar: Londres; Año: 2015 vol. 71 p. 1433 - 1443
ISSN:
0907-4449
Resumen:
The histidine kinase (HK) domain belonging to the light-oxygen-voltage histidine kinase (LOV-HK) from Brucella abortus is a member of the HWE family, for which no structural information is available and with low sequence identity (20%) to the closest HK present in the PDB. The "off edge" S-SAD method in macromolecular X-ray crystallography was used to solve the structure of the HK domain from LOV-HK at low resolution from crystals in a low symmetry space group (P21) and with four copies in the asymmetric unit (ca. 108 kDa). Data were collected both from multiple crystals (diffraction limit varying from 2.90 to 3.25 Å) and from multiple orientations of the same crystal, using the kappa geometry goniostat on SOLEIL beamline PROXIMA 1, to obtain "true redundancy". Data from three different crystals were combined for structure determination. An optimized HK construct, bearing a shorter cloning artifact, yielded crystals that diffracted X-rays to 2.51 Å and that were used for the final refinement of the model. Moreover, a thorough a posteriori analysis using several different combinations of datasets allowed us to investigate the impact of the data collection strategy on the success of the structure determination.