School of Chemistry, University of Nottingham , University Park, Nottingham NG7 2RD, United Kingdom.
Biochemistry. 2013 Jul 9;52(27):4723-33. doi: 10.1021/bi400192w. Epub 2013 Jun 25.
The ileal lipid binding protein (ILBP or I-BABP) binds bile salts with positive cooperativity and has unusual site selectivity, whereby cholic acid binds preferentially in one site and chenodeoxycholic in another, despite both sites having an affinity for both ligands and the ligands only differing by a single hydroxyl group. Previous studies of the human variant have assumed that the ligand/protein binding ratio is 2:1, but we show, using electrospray ionization mass spectroscopy, that human ILBP binds bile acids with a 3:1 ratio, even at low protein and ligand concentrations. Docking calculations and molecular dynamics (MD) simulations identify an allosterically active binding site on the protein exterior that induces a change from a closed conformation to an open one, characterized by a movement of one of the α-helices by ~10° with respect to the β-clam shell. Additional independent MD simulations of several hundred nanoseconds implicate the change between conformations in the mechanisms of both cooperativity and ligand site selectivity.
回肠脂质结合蛋白(ILBP 或 I-BABP)与胆汁盐具有正协同性结合,并具有异常的位点选择性,尽管两个位点都对两种配体具有亲和力,并且配体仅相差一个羟基,但胆酸优先结合在一个位点上,鹅脱氧胆酸结合在另一个位点上。先前对人类变异体的研究假设配体/蛋白质结合比为 2:1,但我们使用电喷雾电离质谱法表明,即使在低蛋白和配体浓度下,人 ILBP 也以 3:1 的比例结合胆汁酸。对接计算和分子动力学(MD)模拟确定了蛋白质外部的一个变构活性结合位点,该位点诱导从封闭构象到开放构象的变化,其特征是一个α-螺旋相对于β-夹壳移动约 10°。数百纳秒的其他独立 MD 模拟表明,构象之间的变化与协同作用和配体位点选择性的机制有关。