S. Sechi et al., A CONFORMATIONAL REARRANGEMENT UPON BINDING OF IGE TO ITS HIGH-AFFINITY RECEPTOR, The Journal of biological chemistry, 271(32), 1996, pp. 19256-19263
One of the critical steps in the allergic reaction is the binding of i
mmunoglobulin E (IgE) to its high affinity receptor (Fc epsilon RI), F
c epsilon RI is a tetrameric complex composed of an a chain, a beta-ch
ain, and a dimeric gamma-chain. The extracellular paction of the alpha
-chain (alpha-t) is sufficient for the binding of IgE. The Fe portion
of IgE contains two copies of the Fc epsilon RI binding sites, In cont
rast, the binding stoichiometry is 1:1, Previously, it was hypothesize
d that the binding of Fc epsilon EI to IgE results in a conformational
change ill IgE that precludes the binding of a second molecule (Prest
a, L., Shields, R., O'Connel, L., Lahr, S., Porter, J., German, C., an
d Jardieu, P. (1994) J. Biol. Chem. 269, 26568-26313), Here we charact
erize the secondary structure of IgE and alpha-t and analyze their int
eraction by circular dichroism spectroscopy, Binding experiments show
that when IgE interacts with alpha-t there is a 15-26% decrease of the
negative ellipticity at 217 nm, Together, the absence of all alpha-he
lix element in alpha-t and the small contribution of alpha-t to the sp
ectra of the complex indicate that upon binding, a major conformationa
l rearrangement must occur oil IgE, In addition, we analyze the therma
l unfolding of alpha-t, IgE, and their complex. Despite the several do
mains that constitute IgE and alpha-t. these molecules unfold cooperat
ively with two-state kinetics.