Ragona L, Fogolari F, Zetta L, Pérez D M, Puyol P, De Kruif K, Löhr F, Rüterjans H, Molinari H
Laboratorio NMR, ICM, Milano, Italy.
Protein Sci. 2000 Jul;9(7):1347-56. doi: 10.1110/ps.9.7.1347.
Bovine beta-lactoglobulin (BLG) in vivo has been found complexed with fatty acids, especially palmitic and oleic acid. To elucidate the still unknown structure-function relationship in this protein, the interactions between 13C enriched palmitic acid (PA) and BLG were investigated by means of one-, two-, and three-dimensional NMR spectroscopy in the pH range 8.4-2.1. The NMR spectra revealed that at neutral pH the ligand is bound within the central cavity of BLG, with the methyl end deeply buried within the protein. The analysis of 13C spectra of the holo protein revealed the presence of conformational variability of bound PA carboxyl end in the pH range 8.4-5.9, related to the Tanford transition. The release of PA starts at pH lower than 6.0, and it is nearly complete at acidic pH. This finding is relevant in relation to the widely reported hypothesis that this protein can act as a transporter through the acidic gastric tract. Ligand binding and release is shown to be completely reversible over the entire pH range examined, differently from other fatty acid binding proteins whose behavior is analyzed throughout the paper. The mode of interaction of BLG is compatible with the proposed function of facilitating the digestion of milk fat during the neonatal period of calves.
已发现牛β-乳球蛋白(BLG)在体内与脂肪酸结合,尤其是棕榈酸和油酸。为了阐明这种蛋白质中仍未知的结构-功能关系,通过一维、二维和三维核磁共振光谱研究了13C富集的棕榈酸(PA)与BLG在pH值8.4 - 2.1范围内的相互作用。核磁共振光谱显示,在中性pH值下,配体结合在BLG的中央腔内,甲基末端深埋在蛋白质内部。对全蛋白的13C光谱分析表明,在pH值8.4 - 5.9范围内,结合的PA羧基末端存在构象变异性,这与坦福德转变有关。PA的释放始于pH值低于6.0时,在酸性pH值下几乎完全释放。这一发现与广泛报道的该蛋白质可作为穿过酸性胃肠道的转运蛋白的假设相关。与本文分析的其他脂肪酸结合蛋白不同,在整个检测的pH范围内,配体的结合和释放显示出完全可逆。BLG的相互作用模式与在犊牛新生期促进乳脂肪消化的 proposed 功能相符。 (注:“proposed”此处按原文翻译,可能需要结合更多背景信息准确理解其含义)