Encyclopedia

  • How B-DNA Dynamics Decipher Sequence-Selective Protein Recognition
  • Add time:09/05/2019         Source:sciencedirect.com

    The rules governing sequence-specific DNA–protein recognition are under a long-standing debate regarding the prevalence of base versus shape readout mechanisms to explain sequence specificity and of the conformational selection versus induced fit binding paradigms to explain binding-related conformational changes in DNA. Using a combination of atomistic simulations on a subset of representative sequences and mesoscopic simulations at the protein–DNA interactome level, we demonstrate the prevalence of the shape readout model in determining sequence-specificity and of the conformational selection paradigm in defining the general mechanism for binding-related conformational changes in DNA. Our results suggest that the DNA uses a double mechanism to adapt its structure to the protein: it moves along the easiest deformation modes to approach the bioactive conformation, while final adjustments require localized rearrangements at the base-pair step and backbone level. Our study highlights the large impact of B-DNA dynamics in modulating DNA–protein binding.

    We also recommend Trading Suppliers and Manufacturers of M-twist protein (cas 136253-27-5). Pls Click Website Link as below: cas 136253-27-5 suppliers


    Prev:Fate of the fluorescent state of p-amido analogue of green fluorescence protein chromophore
    Next: Thiol-activated fluorescent probe for sensitive detection and imaging of proteins)

About|Contact|Cas|Product Name|Molecular|Country|Encyclopedia

Message|New Cas|MSDS|Service|Advertisement|CAS DataBase|Article Data|Manufacturers | Chemical Catalog

©2008 LookChem.com,License: ICP

NO.:Zhejiang16009103

complaints:service@lookchem.com Desktop View