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菊芋凝集素揭示了甘露糖结合凝集素广泛存在的支架结构。

Helianthus tuberosus lectin reveals a widespread scaffold for mannose-binding lectins.

作者信息

Bourne Y, Zamboni V, Barre A, Peumans W J, Van Damme E J, Rougé P

机构信息

AFMB-CNRS, Marseille, France.

出版信息

Structure. 1999 Dec 15;7(12):1473-82. doi: 10.1016/s0969-2126(00)88338-0.

Abstract

BACKGROUND

Heltuba, a tuber lectin from the Jerusalem artichoke Helianthus tuberosus, belongs to the mannose-binding subgroup of the family of jacalin-related plant lectins. Heltuba is highly specific for the disaccharides Man alpha 1-3Man or Man alpha 1-2Man, two carbohydrates that are particularly abundant in the glycoconjugates exposed on the surface of viruses, bacteria and fungi, and on the epithelial cells along the gastrointestinal tract of lower animals. Heltuba is therefore a good candidate as a defense protein against plant pathogens or predators.

RESULTS

The 2.0 A resolution structure of Heltuba exhibits a threefold symmetric beta-prism fold made up of three four-stranded beta sheets. The crystal structures of Heltuba in complex with Man alpha 1-3Man and Man alpha 1-2Man, solved at 2.35 A and 2.45 A resolution respectively, reveal the carbohydrate-binding site and the residues required for the specificity towards alpha 1-3 or alpha 1-2 mannose linkages. In addition, the crystal packing reveals a remarkable, donut-shaped, octahedral assembly of subunits with the mannose moieties at the periphery, suggesting possible cross-linking interactions with branched oligomannosides.

CONCLUSIONS

The structure of Heltuba, which is the prototype for an extended family of mannose-binding agglutinins, shares the carbohydrate-binding site and beta-prism topology of its galactose-binding counterparts jacalin and Maclura pomifera lectin. However, the beta-prism elements recruited to form the octameric interface of Heltuba, and the strategy used to forge the mannose-binding site, are unique and markedly dissimilar to those described for jacalin. The present structure highlights a hitherto unrecognized adaptability of the beta-prism building block in the evolution of plant proteins.

摘要

背景

Heltuba是来自菊芋(Helianthus tuberosus)的一种块茎凝集素,属于jacalin相关植物凝集素家族的甘露糖结合亚组。Heltuba对二糖Manα1-3Man或Manα1-2Man具有高度特异性,这两种碳水化合物在病毒、细菌和真菌表面以及低等动物胃肠道上皮细胞表面暴露的糖缀合物中特别丰富。因此,Heltuba是作为抵御植物病原体或捕食者的防御蛋白的良好候选者。

结果

Heltuba的2.0 Å分辨率结构呈现出由三个四链β片层组成的三重对称β棱柱折叠。分别以2.35 Å和2.45 Å分辨率解析的与Manα1-3Man和Manα1-2Man复合的Heltuba晶体结构,揭示了碳水化合物结合位点以及对α1-3或α1-2甘露糖连接特异性所需的残基。此外,晶体堆积显示出亚基的一种显著的、甜甜圈形状的八面体组装,甘露糖部分位于外围,这表明与分支低聚甘露糖苷可能存在交联相互作用。

结论

Heltuba的结构是甘露糖结合凝集素扩展家族的原型,与其半乳糖结合对应物jacalin和桑科柘树凝集素共享碳水化合物结合位点和β棱柱拓扑结构。然而,用于形成Heltuba八聚体界面的β棱柱元件以及用于构建甘露糖结合位点的策略是独特的,并且与jacalin所描述的明显不同。目前的结构突出了β棱柱结构单元在植物蛋白进化中迄今未被认识到的适应性。

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