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10.1002/pro.2624

http://scihub22266oqcxt.onion/10.1002/pro.2624
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C4353354!4353354!25516491
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suck abstract from ncbi


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pmid25516491      Protein+Sci 2015 ; 24 (3): 267-76
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  • Emerging applications of small angle solution scattering in structural biology #MMPMID25516491
  • Chaudhuri BN
  • Protein Sci 2015[Mar]; 24 (3): 267-76 PMID25516491show ga
  • Small angle solution X-ray and neutron scattering recently resurfaced as powerful tools to address an array of biological problems including folding, intrinsic disorder, conformational transitions, macromolecular crowding, and self or hetero-assembling of biomacromolecules. In addition, small angle solution scattering complements crystallography, nuclear magnetic resonance spectroscopy, and other structural methods to aid in the structure determinations of multidomain or multicomponent proteins or nucleoprotein assemblies. Neutron scattering with hydrogen/deuterium contrast variation, or X-ray scattering with sucrose contrast variation to a certain extent, is a convenient tool for characterizing the organizations of two-component systems such as a nucleoprotein or a lipid-protein assembly. Time-resolved small and wide-angle solution scattering to study biological processes in real time, and the use of localized heavy-atom labeling and anomalous solution scattering for applications as FRET-like molecular rulers, are amongst promising newer developments. Despite the challenges in data analysis and interpretation, these X-ray/neutron solution scattering based approaches hold great promise for understanding a wide variety of complex processes prevalent in the biological milieu.
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