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一种具有增强亲和力和改变特异性的阿拉伯糖结合蛋白突变体(Met108Leu)的糖结合及晶体学研究。

Sugar-binding and crystallographic studies of an arabinose-binding protein mutant (Met108Leu) that exhibits enhanced affinity and altered specificity.

作者信息

Vermersch P S, Lemon D D, Tesmer J J, Quiocho F A

机构信息

Howard Hughes Medical Institute Baylor College of Medicine, Houston, Texas 77030.

出版信息

Biochemistry. 1991 Jul 16;30(28):6861-6.

PMID:2069949
Abstract

In addition to hydrogen bonds, van der Waals forces contribute to the affinity of protein-carbohydrate interactions. Nonpolar van der Waals contacts in the complexes of the L-arabinose-binding protein (ABP) with monosaccharides have been studied by means of site-directed mutagenesis, equilibrium and rapid kinetic binding techniques, and X-ray crystallography. ABP, a periplasmic transport receptor of Escherichia coli, binds L-arabinose, D-galactose, and D-fucose with preferential affinity in the order of Ara greater than Gal much greater than Fuc. Well-refined, high-resolution structures of ABP complexed with the three sugars revealed that the structural differences in the ABP-sugar complexes are localized around C5 of the sugars, where the equatorial H of Ara has been substituted for CH3 (Fuc) or CH2OH (Gal). The side chain of Met108 undergoes a sterically dictated, ligand-specific, conformational change to optimize nonpolar interactions between its methyl group and the sugar. We found that the Met108Leu ABP binds Gal tighter than wild-type ABP binds Ara and exhibits a preference for ligand in the order of Gal much greater than Fuc greater than Ara. The differences in affinity can be attributed to differences in the dissociation rates of the ABP-sugar complexes. We have refined at better than 1.7-A resolution the crystal structures of the Met108Leu ABP complexed with each of the sugars and offer a molecular explanation for the altered binding properties.

摘要

除了氢键之外,范德华力也对蛋白质 - 碳水化合物相互作用的亲和力有贡献。通过定点诱变、平衡和快速动力学结合技术以及X射线晶体学,对L - 阿拉伯糖结合蛋白(ABP)与单糖复合物中的非极性范德华接触进行了研究。ABP是大肠杆菌的一种周质转运受体,它以Ara>Gal>>Fuc的优先亲和力顺序结合L - 阿拉伯糖、D - 半乳糖和D - 岩藻糖。与这三种糖复合的ABP的精细、高分辨率结构表明,ABP - 糖复合物中的结构差异位于糖的C5周围,其中Ara的赤道H被CH3(Fuc)或CH2OH(Gal)取代。Met108的侧链经历了由空间位阻决定的、配体特异性的构象变化以优化其甲基与糖之间的非极性相互作用。我们发现Met108Leu ABP对Gal的结合比野生型ABP对Ara的结合更紧密,并且对配体的偏好顺序为Gal>>Fuc>Ara。亲和力的差异可归因于ABP - 糖复合物解离速率的差异。我们已经将与每种糖复合的Met108Leu ABP的晶体结构精修到优于1.7 Å的分辨率,并对改变的结合特性提供了分子解释。

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