Coupled energetics of lambda cro repressor self-assembly and site-specificDNA operator binding I: Analysis of cro dimerization from nanomolar to micromolar concentrations
Pj. Darling et al., Coupled energetics of lambda cro repressor self-assembly and site-specificDNA operator binding I: Analysis of cro dimerization from nanomolar to micromolar concentrations, BIOCHEM, 39(37), 2000, pp. 11500-11507
The cro repressor from bacteriophage lambda is an important and classical t
ranscription regulatory protein that binds DNA operator sites as a dimer. T
herefore, a complete understanding of gene regulation by cro requires knowl
edge of the coupled energetics of its protein dimerization and site-specifi
c DNA binding. A method is described by which cro repressor can be labeled
in vivo with [S-35]methionine to a specific activity of 2 x 10(15) cpm/mol.
As a prelude to binding, studies, the association equilibrium of cro was d
etermined over the range 10(-9)-10(-3) M using large-zone analytical gel ch
romatography with radiolabeled repressor. The data are best described by a
monomer-dimer stoichiometry with an equilibrium constant of 3.07 (+/-1.08)
x 10(6) M-1 total cro monomer. Stokes radii for monomers and dimers were ev
aluated from the resolved gel partition coefficients. Under the conditions
employed in this study (10 mM Bis-Tris, 200 mM KCI, 2.5 mM MgCl2, 1 mM CaCl
2, 100 mu g/mL BSA, pH 7.0, 20 degrees C), self-association of cro to speci
es with assembly states greater than dimers is not observed.