Ligand Binding Reveals a Role for Heme in Translationally-Controlled Tumor Protein Dimerization
Author(s) -
Andrew T. Lucas,
Xiangping Fu,
Jingjing Liu,
Mary K. Bran,
Jianhua Yang,
Daniel G. S. Capelluto,
Carla V. Finkielstein
Publication year - 2014
Publication title -
plos one
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.99
H-Index - 332
ISSN - 1932-6203
DOI - 10.1371/journal.pone.0112823
Subject(s) - heme , chemistry , ligand (biochemistry) , plasma protein binding , microbiology and biotechnology , hemeprotein , biochemistry , biophysics , biology , receptor , enzyme
The t ranslationally- c ontrolled t umor p rotein (TCTP) is a highly conserved, ubiquitously expressed, abundant protein that is broadly distributed among eukaryotes. Its biological function spans numerous cellular processes ranging from regulation of the cell cycle and microtubule stabilization to cell growth, transformation, and death processes. In this work, we propose a new function for TCTP as a “buffer protein” controlling cellular homeostasis. We demonstrate that binding of hemin to TCTP is mediated by a conserved His-containing motif (His 76 His 77 ) followed by dimerization, an event that involves ligand-mediated conformational changes and that is necessary to trigger TCTP's cytokine-like activity. Mutation in both His residues to Ala prevents hemin from binding and abrogates oligomerization, suggesting that the ligand site localizes at the interface of the oligomer. Unlike heme, binding of Ca 2+ ligand to TCTP does not alter its monomeric state; although, Ca 2+ is able to destabilize an existing TCTP dimer created by hemin addition. In agreement with TCTP's proposed buffer function, ligand binding occurs at high concentration, allowing the “buffer” condition to be dissociated from TCTP's role as a component of signal transduction mechanisms.
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