Abstract
Crystal diffraction of three membrane proteins (cytochrome bc 1 complex, sarcoplasmic reticulum Ca2+ ATPase, ADP-ATP carrier) and of one nucleoprotein complex (leucyl tRNA synthetase bound to tRNAleu, leuRS:tRNAleu) was tested at wavelengths near the X-ray K-absorption edge of phosphorus using a new set-up for soft X-ray diffraction at the beamline ID01 of the ESRF. The best result was obtained from crystals of Ca2+ ATPase [adenosin-5′-(Β,-methylene) triphosphate complex] which diffracted out to 7 Å resolution. Data were recorded at a wavelength at which the real resonant scattering factor of phosphorus reaches the extreme value of -20 electron units. The positions of the four triphosphates of the monoclinic unit cell of the ATPase have been obtained from a difference Fourier synthesis based on a limited set of anomalous diffraction data. © 2009 International Union of Crystallography.
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Boesecke, P., Bois, J. M., Crépin, T., Hunte, C., Kahn, R., Kao, W. C., … Stuhrmann, H. (2009). A first low-resolution difference Fourier map of phosphorus in a membrane protein from near-edge anomalous diffraction. Journal of Synchrotron Radiation, 16(5), 658–665. https://doi.org/10.1107/S0909049509025692
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