N. Rochel et al., Functional and structural characterization of the insertion region in the ligand binding domain of the vitamin D nuclear receptor, EUR J BIOCH, 268(4), 2001, pp. 971-979
Vitamin D nuclear receptor mediates the genomic actions of the active form
of vitamin D, 1,25(OH)(2)D-3. This hormone is involved in calcium and phosp
hate metabolism and cell differentiation. Compared to other nuclear recepto
rs, VDR presents a large insertion region at the N-terminal part of the lig
and binding domain between helices H-1 and H-3, encoded by an additional ex
on. This region is poorly conserved in VDR in different species and is not
well ordered as observed by secondary structure prediction. We engineered a
VDR ligand binding domain mutant by removing this insertion region. Here w
e report its biochemical and biophysical characterization. The mutant prote
in exhibits the same ligand binding, dimerization with retinoid X receptor
and transactivation properties as the wild-type VDR, suggesting that the in
sertion region does not affect these main functions. Solution studies by sm
all angle X-ray scattering shows that the conformation in solution of the V
DR mutant is similar to that observed in the crystal and that the insertion
region in the VDR wild-type is not well ordered.