Institute of Microbiology, Department of Biology, Eidgenössische Technische Hochschule (ETH) Zürich, 8093, Zürich, Switzerland.
Univ. Grenoble Alpes, CNRS, CERMAV, 38000, Grenoble, France.
Glycobiology. 2022 Jun 13;32(7):600-615. doi: 10.1093/glycob/cwac020.
Lectins are non-immunoglobulin-type proteins that bind to specific carbohydrate epitopes and play important roles in intra- and inter-organismic interactions. Here, we describe a novel fucose-specific lectin, termed CML1, which we identified from fruiting body extracts of Coprinopsis cinerea. For further characterization, the coding sequence for CML1 was cloned and heterologously expressed in Escherichia coli. Feeding of CML1-producing bacteria inhibited larval development of the bacterivorous nematode Caenorhabditis tropicalis, but not of C. elegans. The crystal structure of the recombinant protein in its apo-form and in complex with H type I or Lewis A blood group antigens was determined by X-ray crystallography. The protein folds as a sandwich of 2 antiparallel β-sheets and forms hexamers resulting from a trimer of dimers. The hexameric arrangement was confirmed by small-angle X-ray scattering (SAXS). One carbohydrate-binding site per protomer was found at the dimer interface with both protomers contributing to ligand binding, resulting in a hexavalent lectin. In terms of lectin activity of recombinant CML1, substitution of the carbohydrate-interacting residues His54, Asn55, Trp94, and Arg114 by Ala abolished carbohydrate-binding and nematotoxicity. Although no similarities to any characterized lectin were found, sequence alignments identified many non-characterized agaricomycete proteins. These results suggest that CML1 is the founding member of a novel family of fucoside-binding lectins involved in the defense of agaricomycete fruiting bodies against predation by fungivorous nematodes.
凝集素是非免疫球蛋白型蛋白,它们与特定的碳水化合物表位结合,在细胞内和细胞间相互作用中发挥重要作用。在这里,我们描述了一种从毛头鬼伞(Coprinopsis cinerea)子实体提取物中鉴定出的新型岩藻糖特异性凝集素,称为 CML1。为了进一步进行表征,我们克隆了 CML1 的编码序列并在大肠杆菌中异源表达。喂食产生 CML1 的细菌会抑制食细菌线虫 Caenorhabditis tropicalis 的幼虫发育,但不会抑制 C. elegans 的幼虫发育。通过 X 射线晶体学确定了重组蛋白在apo 形式和与 H 型 I 或 Lewis A 血型抗原复合物中的晶体结构。该蛋白折叠为 2 个反平行 β-折叠的夹心结构,并形成由三聚体二聚体组成的六聚体。通过小角度 X 射线散射(SAXS)证实了六聚体的排列。在每个原体的二聚体界面上发现了一个碳水化合物结合位点,两个原体都参与配体结合,形成六价凝集素。就重组 CML1 的凝集素活性而言,通过丙氨酸取代碳水化合物相互作用残基 His54、Asn55、Trp94 和 Arg114 可破坏碳水化合物结合和线虫毒性。尽管没有发现与任何已鉴定的凝集素相似的序列,但序列比对确定了许多未鉴定的伞菌蛋白质。这些结果表明,CML1 是参与抵御食真菌线虫捕食的担子菌子实体防御的新型岩藻糖苷结合凝集素家族的创始成员。