4.4 Article

Statistical allosteric coupling to the active site indole ring flip equilibria in the FK506-binding domain

Journal

BIOPHYSICAL CHEMISTRY
Volume 192, Issue -, Pages 41-48

Publisher

ELSEVIER SCIENCE BV
DOI: 10.1016/j.bpc.2014.06.004

Keywords

FKBP12; NMR; Allostery; Molecular simulation; Statistical coupling; Concerted transition

Funding

  1. National Institutes of Health [GM 088214]

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In solution, the Trp 59 indole ring at the base of the active site cleft in the FKBP domain protein FKBP12 is rotated by similar to 90 degrees at a population level of 20%, relative to its canonical crystallographic orientation. NMR measurements on the homologous FK1 domains of human FKBP51 and FKBP52 indicate no observable indole ring flip conformation, while the V101I variant of FKBP12 decreases the population having a perpendicular indole orientation by 10-fold. A set of three parallel 400 ns CHARMM27 molecular simulations for both wild type FKBP12 and the V101I variant examined how this ring flip might be energetically coupled to a transition of the Glu 60 sidechain which interacts with the backbone of the 50's loop located similar to 12 angstrom from the indole nitrogen. Analysis of the transition matrix for the local dynamics of the Glu 60 sidechain, the Trp 59 sidechain, and of the structurally interposed alpha-helix hydrogen bonding pattern yielded a statistical allosteric coupling of 10 kJ/mol with negligible concerted dynamical coupling for the transitions of the two sidechains. (C) 2014 Published by Elsevier B.V.

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