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Cytotoxic protein from the mushroom Coprinus comatus possesses a unique mode for glycan binding and specificity

机译:蘑菇鸡腿菇的细胞毒性蛋白具有聚糖结合和特异性的独特模式

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摘要

Glycans possess significant chemical diversity; glycan binding proteins (GBPs) recognize specific glycans to translate their structures to functions in various physiological and pathological processes. Therefore, the discovery and characterization of novel GBPs and characterization of glycan–GBP interactions are significant to provide potential targets for therapeutic intervention of many diseases. Here, we report the biochemical, functional, and structural characterization of a 130-amino-acid protein, Y3, from the mushroom Coprinus comatus. Biochemical studies of recombinant Y3 from a yeast expression system demonstrated the protein is a unique GBP. Additionally, we show that Y3 exhibits selective and potent cytotoxicity toward human T-cell leukemia Jurkat cells compared with a panel of cancer cell lines via inducing caspase-dependent apoptosis. Screening of a glycan array demonstrated GalNAcβ1–4(Fucα1–3)GlcNAc (LDNF) as a specific Y3-binding ligand. To provide a structural basis for function, the crystal structure was solved to a resolution of 1.2 Å, revealing a single-domain αβα-sandwich motif. Two monomers were dimerized to form a large 10-stranded, antiparallel β-sheet flanked by α-helices on each side, representing a unique oligomerization mode among GBPs. A large glycan binding pocket extends into the dimeric interface, and docking of LDNF identified key residues for glycan interactions. Disruption of residues predicted to be involved in LDNF/Y3 interactions resulted in the significant loss of binding to Jurkat T-cells and severely impaired their cytotoxicity. Collectively, these results demonstrate Y3 to be a GBP with selective cytotoxicity toward human T-cell leukemia cells and indicate its potential use in cancer diagnosis and treatment.
机译:聚糖具有重要的化学多样性;聚糖结合蛋白(GBP)识别特定的聚糖,将其结构转化为各种生理和病理过程的功能。因此,新型GBPs的发现和表征以及聚糖-GBP相互作用的表征对于为多种疾病的治疗干预提供潜在的靶标具有重要意义。在这里,我们报告了蘑菇鸡腿菇中130个氨基酸的蛋白质Y3的生化,功能和结构特征。来自酵母表达系统的重组Y3的生化研究表明,该蛋白是独特的GBP。此外,我们显示Y3对人类T细胞白血病Jurkat细胞表现出选择性和强力的细胞毒性,与一组癌细胞通过诱导caspase依赖性凋亡相关。聚糖阵列的筛选表明,GalNAcβ1-4(Fucα1-3)GlcNAc(LDNF)是一种特定的Y3结合配体。为提供功能的结构基础,将晶体结构解析为1.2Å的分辨率,揭示了单域αβα三明治基序。两种单体被二聚形成一个大的10链,反平行的β-折叠,两侧是α-螺旋,代表了GBPs中独特的低聚模式。一个大的聚糖结合口袋延伸到二聚体界面中,LDNF​​的对接确定了聚糖相互作用的关键残基。预计与LDNF / Y3相互作用有关的残基的破坏导致与Jurkat T细胞结合的明显丧失,并严重损害了其细胞毒性。总的来说,这些结果证明Y3是对人T细胞白血病细胞具有选择性细胞毒性的GBP,并表明其在癌症诊断和治疗中的潜在用途。

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