Abstract
Rabbit muscle aldolase (RMA) was crystallized in complex with the low-complexity domain (LC4) of sorting nexin 9. Monoclinic crystals were obtained at room temperature that displayed large mosaicity and poor X-ray diffraction. However, orthorhombic RMA-LC4 crystals grown at 277 K under similar conditions exhibited low mosaicity, allowing data collection to 2.2 Å Bragg spacing and structure determination. It was concluded that the improvement of crystal quality as indicated by the higher resolution of the new RMA-LC4 complex crystals was a consequence of the introduction of new lattice contacts at lower temperature. The lattice contacts corresponded to an increased number of interactions between high-entropy side chains that mitigate the lattice strain incurred upon cryocooling and accompanying mosaic spread increases. The thermodynamically unfavorable immobilization of high-entropy side chains used in lattice formation was compensated by an entropic increase in the bulk-solvent content owing to the greater solvent content of the crystal lattice. © 2010 International Union of Crystallography All rights reserved.
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Park, H., Rangarajan, E. S., Sygusch, J., & Izard, T. (2010). Dramatic improvement of crystal quality for low - Temperature-grown rabbit muscle aldolase. Acta Crystallographica Section F: Structural Biology and Crystallization Communications, 66(5), 595–600. https://doi.org/10.1107/S1744309110011875
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