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与花生四烯酸复合的脂肪细胞脂质结合蛋白。滴定热分析法和X射线晶体学研究。

Adipocyte lipid-binding protein complexed with arachidonic acid. Titration calorimetry and X-ray crystallographic studies.

作者信息

LaLonde J M, Levenson M A, Roe J J, Bernlohr D A, Banaszak L J

机构信息

Department of Biochemistry, School of Medicine, University of Minnesota, Minneapolis 55455.

出版信息

J Biol Chem. 1994 Oct 14;269(41):25339-47. doi: 10.2210/pdb1adl/pdb.

Abstract

The association of the adipocyte lipid-binding protein (ALBP) with arachidonic acid (all cis, 20:4 delta 5,8,11,14) and oleic acid (cis, 18:1 delta 9) has been examined by titration calorimentry. In addition, the crystal structure of ALBP with bound arachidonic acid has also been obtained. Crystallographic analysis of the arachidonic acid.ALBP complex along with the previously reported oleic acid-ALBP structure (Xu, Z., Bernlohr, D. A., and Banaszak, L. J. (1993) J. Biol. Chem. 268, 7874-7884) provides a framework for the molecular examination of protein-lipid association. Isothermal titration calorimetry revealed high affinity association of both unsaturated fatty acids with the protein. The calorimetric data yielded the following thermodynamic parameters for arachidonic acid: Kd = 4.4 microM, n = 0.8, delta G = -7370 cal/mol, delta H = -6770 cal/mol, and T delta S = +600 cal/mol. For oleic acid, the thermodynamic parameters were Kd = 2.4 microM, n = 0.9, delta G = -7770 cal/mol, delta H = -6050 cal/mol, and T delta S = +1720 cal/mol. The identification of thermodynamically dominating enthalpic factors for both fatty acids are consistent with the crystallographic studies demonstrating the interaction of the fatty acid carboxylate with a combination of Arg106, Arg126, and Tyr128. The crystallographic refinement of the protein-arachidonate complex was carried out to 1.6 A with the resultant R factor of 0.19. Within the cavity of the crystalline binding protein, the arachidonate was found in a hairpin conformation. The conformation of the bound ligand is consistent with acceptable torsional angles and the four cis double bonds in arachidonate. These results demonstrate that arachidonate is a ligand for ALBP. They provide thermodynamic and structural data concerning the physical basis for protein-lipid interaction and suggest that intracellular lipid-binding proteins may mediate the biological effects of polyunsaturated fatty acids in vivo.

摘要

通过滴定热分析法研究了脂肪细胞脂质结合蛋白(ALBP)与花生四烯酸(全顺式,20:4Δ5,8,11,14)和油酸(顺式,18:1Δ9)的结合情况。此外,还获得了结合花生四烯酸的ALBP的晶体结构。对花生四烯酸-ALBP复合物以及先前报道的油酸-ALBP结构(Xu, Z., Bernlohr, D. A., and Banaszak, L. J. (1993) J. Biol. Chem. 268, 7874 - 7884)进行晶体学分析,为蛋白质-脂质结合的分子研究提供了一个框架。等温滴定热分析法显示两种不饱和脂肪酸与该蛋白都有高亲和力结合。热分析数据得出花生四烯酸的以下热力学参数:Kd = 4.4 μM,n = 0.8,ΔG = -7370 cal/mol,ΔH = -6770 cal/mol,TΔS = +600 cal/mol。对于油酸,热力学参数为Kd = 2.4 μM,n = 0.9,ΔG = -7770 cal/mol,ΔH = -6050 cal/mol,TΔS = +1720 cal/mol。两种脂肪酸热力学上占主导的焓因素的确定与晶体学研究一致,晶体学研究表明脂肪酸羧酸盐与Arg106、Arg126和Tyr128结合。蛋白质 - 花生四烯酸盐复合物的晶体学精修至1.6 Å,最终R因子为0.19。在晶体结合蛋白的腔内,发现花生四烯酸盐呈发夹构象。结合配体的构象与可接受的扭转角以及花生四烯酸盐中的四个顺式双键一致。这些结果表明花生四烯酸盐是ALBP的配体。它们提供了有关蛋白质 - 脂质相互作用物理基础的热力学和结构数据,并表明细胞内脂质结合蛋白可能在体内介导多不饱和脂肪酸的生物学效应。

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