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在大肠杆菌中产生的大鼠肠脂肪酸结合蛋白的精制载脂蛋白结构。

Refined apoprotein structure of rat intestinal fatty acid binding protein produced in Escherichia coli.

作者信息

Sacchettini J C, Gordon J I, Banaszak L J

机构信息

Department of Biochemistry, Washington University School of Medicine, Saint Louis, MO 63110.

出版信息

Proc Natl Acad Sci U S A. 1989 Oct;86(20):7736-40. doi: 10.1073/pnas.86.20.7736.

Abstract

Rat intestinal fatty acid binding protein (I-FABP) is a member of a family of cytoplasmic hydrophobic ligand-binding proteins. To gain insights about the contribution of bound fatty acid to I-FABP's conformation and mechanism of ligand binding, we have determined the structure of Escherichia coli-derived rat apo-I-FABP to 1.96-A resolution and compared it to the recently refined structure of I-FABP with bound palmitate. Both apo- and holo-I-FABP are composed primarily of anti-parallel beta-strands which form two nearly orthogonal beta-sheets ("beta-clam"). The overall structures of the apo- and holo-I-FABP are nearly identical, with a root mean square (rms) difference of 0.37 A between C alpha atoms, 0.38 A between all main-chain atoms, and 0.94 A between all side-chain atoms. However, rms differences of greater than 1.3 A were noted for the side chains of Ile-23, Lys-27, Arg-56, Leu-72, Ala-73, and Asp-74. The space occupied by bound ligand in the core of the holoprotein is occupied in the apo-protein by ordered solvent molecules. This results in an increase in the total number of internal ordered solvent molecules from 7 in the holoprotein to 13 in apo-I-FABP. This finding, together with observed differences in the side-chain orientations of two residues (Arg-56 and Lys-27) situated over a potential opening to the cores of the apo- and holoproteins, suggests that solvent molecules play a critical role in ligand binding. Moreover, the data indicate that the beta-clam structure is stable even in the absence of bound ligand.

摘要

大鼠肠脂肪酸结合蛋白(I-FABP)是细胞质疏水配体结合蛋白家族的成员。为了深入了解结合脂肪酸对I-FABP构象和配体结合机制的贡献,我们已将源自大肠杆菌的大鼠脱辅基I-FABP的结构解析到1.96埃的分辨率,并将其与最近优化的结合棕榈酸酯的I-FABP结构进行了比较。脱辅基I-FABP和全蛋白I-FABP主要均由反平行β链组成,这些β链形成两个近乎正交的β折叠(“β夹”)。脱辅基I-FABP和全蛋白I-FABP的整体结构几乎相同,Cα原子之间的均方根(rms)差异为0.37埃,所有主链原子之间的差异为0.38埃,所有侧链原子之间的差异为0.94埃。然而,Ile-23、Lys-27、Arg-56、Leu-72、Ala-73和Asp-74的侧链rms差异大于1.3埃。全蛋白核心中结合配体占据的空间在脱辅基蛋白中被有序溶剂分子占据。这导致内部有序溶剂分子总数从全蛋白中的7个增加到脱辅基I-FABP中的13个。这一发现,连同在脱辅基蛋白和全蛋白核心潜在开口上方的两个残基(Arg-56和Lys-27)侧链取向的观察差异,表明溶剂分子在配体结合中起关键作用。此外,数据表明即使在没有结合配体的情况下,β夹结构也是稳定的。

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