| Literature DB >> 35806154 |
Lu Fan1, Athanasia Warnecke2, Julia Weder3, Matthias Preller3,4, Carsten Zeilinger1.
Abstract
Microarray-based experiments revealed that thyroid hormone triiodothyronine (T3) enhanced the binding of Cy5-labeled ATP on heat shock protein 90 (Hsp90). By molecular docking experiments with T3 on Hsp90, we identified a T3 binding site (TBS) near the ATP binding site on Hsp90. A synthetic peptide encoding HHHHHHRIKEIVKKHSQFIGYPITLFVEKE derived from the TBS on Hsp90 showed, in MST experiments, the binding of T3 at an EC50 of 50 μM. The binding motif can influence the activity of Hsp90 by hindering ATP accessibility or the release of ADP.Entities:
Keywords: Hsp90; molecular docking; protein microarray; thermophoresis; triiodothyronine
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Year: 2022 PMID: 35806154 PMCID: PMC9266618 DOI: 10.3390/ijms23137150
Source DB: PubMed Journal: Int J Mol Sci ISSN: 1422-0067 Impact factor: 6.208
Figure 1(A) Microarray-based analysis of T3 influence on Cy5-ATP binding on Hsp90. Monitoring of bound Cy5-ATP on Hsp90 without and with T3 (left) and corresponding dose-responsive binding activity (right). (B) Hsp90 N-terminal domain as binding target of T3: (a) overview of the Hsp90 N-terminal domain with identified binding pockets (colored meshes); (b) interactions of T3 to the residues of the binding pocket; (c) dose-responsive activity of T3 interaction on Tyr1 peptide by microscale thermophoresis analysis (MST). The dose-responsive fittings were performed with function y = A1 + (A2 − A1)/(1 + 10(LOGx0 − x) × p) between the top and bottom asymptotes, with hill slope p and LOGx0 as center at indicated concentration x (inset). MST-traces of Cy5-labeled Tyr1 with increasing concentrations of T3 are displayed in the mode of thermophoresis + T-jump. Different concentrations of T3 are indicated by different colors of traces. Laser-induced temperature changes for Fcold were applied from −1 to 0 s, and for Fhot, from 4 to 5 s. A control experiment with a bacterial HtpG from from Xanthomonas campestris [19] with a minor homology in the T3 binding site had no affinity for T3 (Figure S1) (C) Amino acid alignment with Tyr1 and Hsp90, Deiodinase, and TTR.