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来自三崎多囊海鞘的被囊动物C型凝集素与D-半乳糖复合后的结构。

The structure of a tunicate C-type lectin from Polyandrocarpa misakiensis complexed with D -galactose.

作者信息

Poget S F, Legge G B, Proctor M R, Butler P J, Bycroft M, Williams R L

机构信息

Cambridge Centre for Protein Engineering, Department of Chemistry, University of Cambridge, Lensfield Road, Cambridge, CB2 1EW, UK.

出版信息

J Mol Biol. 1999 Jul 23;290(4):867-79. doi: 10.1006/jmbi.1999.2910.

Abstract

C-type lectins are calcium-dependent carbohydrate-recognising proteins. Isothermal titration calorimetry of the C-type Polyandrocarpa lectin (TC14) from the tunicate Polyandrocarpa misakiensis revealed the presence of a single calcium atom per monomer with a dissociation constant of 2.6 microM, and confirmed the specificity of TC14 for D -galactose and related monosaccharides. We have determined the 2.2 A X-ray crystal structure of Polyandrocarpa lectin complexed with D -galactose. Analytical ultracentrifugation revealed that TC14 behaves as a dimer in solution. This is reflected by the presence of two molecules in the asymmetric unit with the dimeric interface formed by antiparallel pairing of the two N-terminal beta-strands and hydrophobic interactions. TC14 adopts a typical C-type lectin fold with differences in structure from other C-type lectins mainly in the diverse loop regions and in the second alpha-helix, which is involved in the formation of the dimeric interface. The D -galactose is bound through coordination of the 3 and 4-hydroxyl oxygen atoms with a bound calcium atom. Additional hydrogen bonds are formed directly between serine, aspartate and glutamate side-chains of the protein and the sugar 3 and 4-hydroxyl groups. Comparison of the galactose binding by TC14 with the mannose binding by rat mannose-binding protein reveals how monosaccharide specificity is achieved in this lectin. A tryptophan side-chain close to the binding site and the distribution of hydrogen-bond acceptors and donors around the 3 and 4-hydroxyl groups of the sugar are essential determinants of specificity. These elements are, however, arranged in a very different way than in an engineered galactose-specific mutant of MBPA. Possible biological functions can more easily be understood from the fact that TC14 is a dimer under physiological conditions.

摘要

C型凝集素是一类依赖钙的碳水化合物识别蛋白。对来自海鞘三宅坂多雄果海鞘的C型多雄果海鞘凝集素(TC14)进行等温滴定量热法分析,结果显示每个单体含有一个钙原子,解离常数为2.6微摩尔,证实了TC14对D -半乳糖及相关单糖具有特异性。我们已确定了与D -半乳糖复合的多雄果海鞘凝集素的2.2埃X射线晶体结构。分析超速离心表明,TC14在溶液中表现为二聚体。这体现在不对称单元中有两个分子,其通过两条N端β链的反平行配对和疏水相互作用形成二聚体界面。TC14具有典型的C型凝集素折叠结构,与其他C型凝集素在结构上的差异主要体现在不同的环区和参与二聚体界面形成的第二个α螺旋。D -半乳糖通过其3位和4位羟基氧原子与结合的钙原子配位结合。蛋白质的丝氨酸、天冬氨酸和谷氨酸侧链与糖的3位和4位羟基直接形成额外的氢键。将TC14对半乳糖的结合与大鼠甘露糖结合蛋白对甘露糖的结合进行比较,揭示了该凝集素中如何实现单糖特异性。靠近结合位点的色氨酸侧链以及糖的3位和4位羟基周围氢键受体和供体的分布是特异性的关键决定因素。然而,这些元素的排列方式与MBPA工程化半乳糖特异性突变体中的排列方式有很大不同。从TC14在生理条件下是二聚体这一事实可以更容易理解其可能的生物学功能。

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