Gaining ligand selectivity in thyroid hormone receptors via entropy

  • MARTINEZ, Leandro
  • NASCIMENTO, Alessandro S.
  • NUNES, Fabio M.
  • PHILLIPS, Kevin
  • APARICIO, Ricardo
  • DIAS, Sandra Martha G.
  • FIGUEIRA, Ana Carolina M.
  • LIN, Jean H.
  • NGUYEN, Phuong
  • APRILETTI, James W.
  • NEVES, Francisco A. R.
  • BAXTER, John D.
  • WEBB, Paul
  • SKAF, Munir S.
  • POLIKARPOV, Igor
Publication date
January 2009
Publisher
NATL ACAD SCIENCES
ISSN
0027-8424
Citation count (estimate)
45

Abstract

Nuclear receptors are important targets for pharmaceuticals, but similarities between family members cause difficulties in obtaining highly selective compounds. Synthetic ligands that are selective for thyroid hormone (TH) receptor beta (TR beta) vs. TR alpha reduce cholesterol and fat without effects on heart rate; thus, it is important to understand TR beta-selective binding. Binding of 3 selective ligands (GC-1, KB141, and GC-24) is characterized at the atomic level; preferential binding depends on a nonconserved residue (Asn-331 beta) in the TR beta ligand-binding cavity (LBC), and GC-24 gains extra selectivity from insertion of a bulky side group into an extension of the LBC that only opens up with this ligand. Here we report that the ...

Extracted data

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