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Derivatization of Protein Crystals with I3C using Random Microseed Matrix Screening
Published on: January 16, 2021
Improving the efficiency of molecular replacement by utilizing a new iterative transform phasing algorithm
Hongxing He1, Hengrui Fang1, Mitchell D Miller2
1Department of Physics and Texas Center for Superconductivity, University of Houston, Houston, Texas 77204, USA.
Abstract:
An iterative transform method proposed previously for direct phasing of high-solvent-content protein crystals is employed for enhancing the molecular-replacement (MR) algorithm in protein crystallography. Target structures that are resistant to conventional MR due to insufficient similarity between the template and target structures might be tractable with this modified phasing method. Trial calculations involving three different structures are described to test and illustrate the methodology. The relationship of the approach to PHENIX Phaser-MR and MR-Rosetta is discussed.

