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紫藤凝集素识别癌症糖生物标志物LacdiNAc(GalNAc[β1→4]GlcNAc)的分子基础。

Molecular Basis for Recognition of the Cancer Glycobiomarker, LacdiNAc (GalNAc[β1→4]GlcNAc), by Wisteria floribunda Agglutinin.

作者信息

Haji-Ghassemi Omid, Gilbert Michel, Spence Jenifer, Schur Melissa J, Parker Matthew J, Jenkins Meredith L, Burke John E, van Faassen Henk, Young N Martin, Evans Stephen V

机构信息

From the Department of Biochemistry and Microbiology, University of Victoria, Victoria, British Columbia V8P 3P6, Canada and.

Human Health Therapeutics, National Research Council of Canada, Ottawa, Ontario K1A 0R6, Canada.

出版信息

J Biol Chem. 2016 Nov 11;291(46):24085-24095. doi: 10.1074/jbc.M116.750463. Epub 2016 Sep 6.

Abstract

Aberrant glycosylation and the overexpression of specific carbohydrate epitopes is a hallmark of many cancers, and tumor-associated oligosaccharides are actively investigated as targets for immunotherapy and diagnostics. Wisteria floribunda agglutinin (WFA) is a legume lectin that recognizes terminal N-acetylgalactosaminides with high affinity. WFA preferentially binds the disaccharide LacdiNAc (β-d-GalNAc-[1→4]-d-GlcNAc), which is associated with tumor malignancy in leukemia, prostate, pancreatic, ovarian, and liver cancers and has shown promise in cancer glycobiomarker detection. The mechanism of specificity for WFA recognition of LacdiNAc is not fully understood. To address this problem, we have determined affinities and structure of WFA in complex with GalNAc and LacdiNAc. Affinities toward Gal, GalNAc, and LacdiNAc were measured via surface plasmon resonance, yielding K values of 4.67 × 10 m, 9.24 × 10 m, and 5.45 × 10 m, respectively. Structures of WFA in complex with LacdiNAc and GalNAc have been determined to 1.80-2.32 Å resolution. These high resolution structures revealed a hydrophobic groove complementary to the GalNAc and, to a minor extent, to the back-face of the GlcNAc sugar ring. Remarkably, the contribution of this small hydrophobic surface significantly increases the observed affinity for LacdiNAc over GalNAc. Tandem MS sequencing confirmed the presence of two isolectin forms in commercially available WFA differing only in the identities of two amino acids. Finally, the WFA carbohydrate binding site is similar to a homologous lectin isolated from Vatairea macrocarpa in complex with GalNAc, which, unlike WFA, binds not only αGalNAc but also terminal Ser/Thr O-linked αGalNAc (Tn antigen).

摘要

异常糖基化和特定碳水化合物表位的过表达是许多癌症的一个标志,肿瘤相关寡糖作为免疫治疗和诊断的靶点正在被积极研究。紫藤凝集素(WFA)是一种豆科凝集素,能高亲和力识别末端N - 乙酰半乳糖胺。WFA优先结合二糖LacdiNAc(β - d - 半乳糖胺 - [1→4] - d - 葡萄糖胺),它与白血病、前列腺癌、胰腺癌、卵巢癌和肝癌中的肿瘤恶性程度相关,并且在癌症糖生物标志物检测中显示出前景。WFA识别LacdiNAc的特异性机制尚未完全了解。为了解决这个问题,我们已经确定了WFA与GalNAc和LacdiNAc复合物的亲和力和结构。通过表面等离子体共振测量了对Gal、GalNAc和LacdiNAc的亲和力,分别得到K值为4.67×10⁻⁶M、9.24×10⁻⁷M和5.45×10⁻⁷M。已确定WFA与LacdiNAc和GalNAc复合物的结构分辨率为1.80 - 2.32 Å。这些高分辨率结构揭示了一个与GalNAc互补的疏水凹槽,在较小程度上也与葡萄糖胺糖环的背面互补。值得注意的是,这个小疏水表面的贡献显著增加了对LacdiNAc相对于GalNAc的观察到的亲和力。串联质谱测序证实市售WFA中存在两种异凝集素形式,仅在两个氨基酸的身份上有所不同。最后,WFA碳水化合物结合位点与从大果瓦泰豆中分离出的一种同源凝集素与GalNAc复合物相似,与WFA不同的是,它不仅结合α - GalNAc,还结合末端丝氨酸/苏氨酸O - 连接的α - GalNAc(Tn抗原)。

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