Structure and dynamics conspire in the evolution of affinity between intrinsically disordered proteins - Science Advances
Structure and dynamics conspire in the evolution of affinity between intrinsically disordered proteins - Science Advances
Structure and dynamics conspire in the evolution of affinity between intrinsically disordered proteins Science AdvancesIn every established species, protein-protein interactions have evolved such that they are fit for purpose. However, the molecular details of the evolution of new ...
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04-25-2019 05:39 PM
Structure and dynamics conspire in the evolution of affinity between intrinsically disordered proteins - Science Advances
Structure and dynamics conspire in the evolution of affinity between intrinsically disordered proteins - Science Advances
Structure and dynamics conspire in the evolution of affinity between intrinsically disordered proteins Science AdvancesIn every established species, protein-protein interactions have evolved such that they are fit for purpose. However, the molecular details of the evolution of new ...
Read here
nmrlearner
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01-07-2019 05:49 AM
[NMR paper] Structure and dynamics of an intrinsically disordered protein region that partially folds upon binding by chemical-exchange NMR.
Structure and dynamics of an intrinsically disordered protein region that partially folds upon binding by chemical-exchange NMR.
Related Articles Structure and dynamics of an intrinsically disordered protein region that partially folds upon binding by chemical-exchange NMR.
J Am Chem Soc. 2017 Aug 07;:
Authors: Charlier C, Bouvignies G, Pelupessy P, Walrant A, Marquant R, Kozlov M, De Ioannes P, Bolik-Coulon N, Sagan S, Cortes P, Aggarwal AK, Carlier L, Ferrage F
Abstract
Many intrinsically disordered proteins (IDPs) and protein...
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08-07-2017 07:31 PM
Random coil chemical shift for intrinsically disordered proteins: effects of temperature and pH
Random coil chemical shift for intrinsically disordered proteins: effects of temperature and pH
Abstract Secondary chemical shift analysis is the main NMR method for detection of transiently formed secondary structure in intrinsically disordered proteins. The quality of the secondary chemical shifts is dependent on an appropriate choice of random coil chemical shifts. We report random coil chemical shifts and sequence correction factors determined for a GGXGG peptide series following the approach of Schwarzinger et al. (J Am Chem Soc 123(13):2970â??2978, 2001). The chemical shifts are...