Mechanism of kappa B DNA binding by Rel/NF-kappa B dimers

Citation
Cb. Phelps et al., Mechanism of kappa B DNA binding by Rel/NF-kappa B dimers, J BIOL CHEM, 275(32), 2000, pp. 24392-24399
Citations number
25
Categorie Soggetti
Biochemistry & Biophysics
Journal title
JOURNAL OF BIOLOGICAL CHEMISTRY
ISSN journal
00219258 → ACNP
Volume
275
Issue
32
Year of publication
2000
Pages
24392 - 24399
Database
ISI
SICI code
0021-9258(20000811)275:32<24392:MOKBDB>2.0.ZU;2-V
Abstract
The DNA binding of three different NF-KB dimers, the p50 and p65 homodimers and the p50/p65 heterodimer, has been examined using a combination of gel mobility shift and fluorescence anisotropy assays. The NF-KB p50/p65 hetero dimer is shown here to bind the KB DNA target site of the immunoglobulin ka ppa enhancer (Ig-KB) with an affinity of approximately 10 nM. The p50 and p 65 homodimers bind to the same site with roughly 5- and 15-fold lower affin ity, respectively. The nature of the binding isotherms indicates a cooperat ive mode of binding for all three dimers to the DNA targets. We have furthe r characterized the role of pH, salt, and temperature on the formation of t he p50/p65 heterodimer-Ig-KB complex. The heterodimer binds to the Ig-KB DN A target in a pH-dependent manner, with the highest affinity between pH 7.0 and 7.5. A strong salt-dependent interaction between Ig-KB and the p50/p65 heterodimer is observed, with optimum binding occurring at monovalent salt concentrations below 75 mM, with binding becoming virtually nonspecific at a salt concentration of 200 mM. Binding of the heterodimer to DNA was unch anged across a temperature range between 4 degrees C and 42 degrees C. The sensitivity to ionic environment and insensitivity to temperature indicate that NF-KB p50/p65 heterodimers form complexes with specific DNA in an entr opically driven manner.