4.2 Article

Phasertng: directed acyclic graphs for crystallographic phasing

出版社

INT UNION CRYSTALLOGRAPHY
DOI: 10.1107/S2059798320014746

关键词

Phaser; Phasertng; molecular replacement; SAD phasing; directed acyclic graphs; maximum likelihood; machine learning

资金

  1. Wellcome Trust Principal Research Fellowship [209407/Z/17/Z]
  2. NIH [P01GM063210]
  3. European Union's Horizon 2020 research and innovation program under the Marie Sklodowska-Curie grant [790122]
  4. CCP4
  5. Marie Curie Actions (MSCA) [790122] Funding Source: Marie Curie Actions (MSCA)

向作者/读者索取更多资源

Crystallographic phasing strategies now utilize improvements in phasing methods to extract phase information from small fragments of structure, weak experimental phasing signals, or combinations of molecular replacement and experimental phasing information. Describing phasing with directed acyclic graphs allows for the efficient tracking and management of the path to structure solution.
Crystallographic phasing strategies increasingly require the exploration and ranking of many hypotheses about the number, types and positions of atoms, molecules and/or molecular fragments in the unit cell, each with only a small chance of being correct. Accelerating this move has been improvements in phasing methods, which are now able to extract phase information from the placement of very small fragments of structure, from weak experimental phasing signal or from combinations of molecular replacement and experimental phasing information. Describing phasing in terms of a directed acyclic graph allows graph-management software to track and manage the path to structure solution. The crystallographic software supporting the graph data structure must be strictly modular so that nodes in the graph are efficiently generated by the encapsulated functionality. To this end, the development of new software, Phasertng, which uses directed acyclic graphs natively for input/output, has been initiated. In Phasertng, the codebase of Phaser has been rebuilt, with an emphasis on modularity, on scripting, on speed and on continuing algorithm development. As a first application of phasertng, its advantages are demonstrated in the context of phasertng.xtricorder, a tool to analyse and triage merged data in preparation for molecular replacement or experimental phasing. The description of the phasing strategy with directed acyclic graphs is a generalization that extends beyond the functionality of Phasertng, as it can incorporate results from bioinformatics and other crystallographic tools, and will facilitate multifaceted search strategies, dynamic ranking of alternative search pathways and the exploitation of machine learning to further improve phasing strategies.

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