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猪嗅觉受体结合蛋白与属于不同化学类别的气味分子的复合物。

Complexes of porcine odorant binding protein with odorant molecules belonging to different chemical classes.

作者信息

Vincent F, Spinelli S, Ramoni R, Grolli S, Pelosi P, Cambillau C, Tegoni M

机构信息

Architecture et Fonction des Macromolécules Biologiques, URA 9039, CNRS, IFR1, 31 Chemin Joseph Aiguier, Marseille, Cedex 20, 13402, France.

出版信息

J Mol Biol. 2000 Jun 30;300(1):127-39. doi: 10.1006/jmbi.2000.3820.

Abstract

Porcine odorant binding protein (pOBP) is a monomer of 157 amino acid residues, purified in abundance from pig nasal mucosa. In contrast to the observation on lipocalins as retinol binding protein (RBP), major urinary protein (MUP) or bovine odorant binding protein (bOBP), no naturally occurring ligand was found in the beta-barrel cavity of pOBP. Porcine OBP was therefore chosen as a simple model for structure/function studies with odorant molecules. In competition experiments with tritiated pyrazine, the affinity of pOBP towards several odorant molecules belonging to different chemical classes has been found to be of the micromolar order, with a 1:1 stoichiometry. The X-ray structures of pOBP complexed to these molecules were determined at resolution between 2.15 and 1.4 A. As expected, the electron density of the odorant molecules was observed into the hydrophobic beta-barrel of the lipocalin. Inside this cavity, very few specific interactions were established between the odorant molecule and the amino acid side-chains, which did not undergo significant conformational change. The high B-factors observed for the odorant molecules as well as the existence of alternative conformations reveal a non-specific mode of binding of the odorant molecules in the cavity.

摘要

猪嗅觉受体结合蛋白(pOBP)是一种由157个氨基酸残基组成的单体,可从猪鼻黏膜中大量纯化得到。与视黄醇结合蛋白(RBP)、主要尿蛋白(MUP)或牛嗅觉受体结合蛋白(bOBP)等脂质运载蛋白的情况不同,在pOBP的β-桶状腔内未发现天然存在的配体。因此,猪OBP被选为与气味分子进行结构/功能研究的简单模型。在与氚化吡嗪的竞争实验中,发现pOBP对几种属于不同化学类别的气味分子的亲和力处于微摩尔级别,化学计量比为1:1。测定了与这些分子复合的pOBP的X射线结构,分辨率在2.15至1.4埃之间。正如预期的那样,在脂质运载蛋白的疏水β-桶状结构中观察到了气味分子的电子密度。在这个腔内,气味分子与氨基酸侧链之间几乎没有建立特定的相互作用,氨基酸侧链也没有发生明显的构象变化。观察到的气味分子的高B因子以及替代构象的存在揭示了气味分子在腔内的非特异性结合模式。

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