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大鼠附睾视黄酸结合蛋白的表达、特性及工程化特异性

Expression, characterization and engineered specificity of rat epididymal retinoic acid-binding protein.

作者信息

Sundaram M, Sivaprasadarao A, Aalten D M, Findlay J B

机构信息

School of Biochemistry and Molecular Biology, University of Leeds, Leeds LS2 9JT, U.K.

出版信息

Biochem J. 1998 Aug 15;334 ( Pt 1)(Pt 1):155-60. doi: 10.1042/bj3340155.

Abstract

Epididymal retinoic acid-binding protein (ERABP) is the major androgen-dependent protein present in the lumen of the epididymis and is thought to be involved in sperm maturation. It displays a high degree of three-dimensional structural similarity to serum retinol-binding protein (RBP). Although both proteins interact with retinoids, RBP exhibits a broad specificity, binding retinol, retinoic acid and retinaldehyde with roughly equal affinities, whereas ERABP is specific for all-trans- and 9-cis-retinoic acids. Consistent with this, the binding pockets of the two proteins are different: in RBP it is predominantly hydrophobic, whereas that for ERABP is amphipathic, with a network of charged residues at the open end of the binding pocket. In order to investigate the roles of these charged residues, Arg-80 and Glu-63 have been mutated to isoleucine. The resultant double mutant, Glu-63-->Ile/Arg-80-->Ile, as well as the wild-type protein, were subsequently expressed in Escherichia coli as fusion proteins, with the streptavidin recognition sequence (Strep) tagged to their C-termini. The expressed proteins were purified in a single step by streptavidin-affinity chromatography and their ligand-binding properties were examined using fluorimetric titrations. Whereas the wild-type ERABP binds only retinoic acid, the double mutant is capable of binding retinol, retinoic acid and retinaldehyde with similar affinities. These observations provide experimental support for the proposition that the charged residues near the open end of the binding pocket are responsible for restricting the specificity of ERABP for retinoic acid. These studies demonstrate that changes in specificity can be engineered into lipocalins.

摘要

附睾视黄酸结合蛋白(ERABP)是附睾管腔中存在的主要雄激素依赖性蛋白,被认为参与精子成熟过程。它与血清视黄醇结合蛋白(RBP)在三维结构上具有高度相似性。尽管这两种蛋白都与视黄酸相互作用,但RBP表现出广泛的特异性,以大致相同的亲和力结合视黄醇、视黄酸和视黄醛,而ERABP则对全反式和9-顺式视黄酸具有特异性。与此一致的是,这两种蛋白的结合口袋不同:RBP的结合口袋主要是疏水的,而ERABP的结合口袋是两亲性的,在结合口袋的开口端有一个带电荷残基网络。为了研究这些带电荷残基的作用,已将精氨酸-80和谷氨酸-63突变为异亮氨酸。随后,所得的双突变体Glu-63→Ile/Arg-80→Ile以及野生型蛋白在大肠杆菌中作为融合蛋白表达,其C末端带有链霉亲和素识别序列(Strep)。通过链霉亲和素亲和色谱法一步纯化表达的蛋白,并使用荧光滴定法检测其配体结合特性。野生型ERABP仅结合视黄酸,而双突变体能够以相似的亲和力结合视黄醇、视黄酸和视黄醛。这些观察结果为以下观点提供了实验支持,即结合口袋开口端附近的带电荷残基负责限制ERABP对视黄酸的特异性。这些研究表明,可以通过工程改造将特异性变化引入脂质运载蛋白中。

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