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Unprecedented Glycosidase Activity at a Lectin Carbohydrate- Binding Site Exemplified by the Cyanobacterial Lectin MVL

机译:蓝藻凝集素MVL代表的凝集素碳水化合物结合位点空前的糖苷酶活性

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摘要

Carbohydrate binding proteins, or lectins, are engendered with the ability to bind specific carbohydrate structures, thereby mediating cell-cell and cell-pathogen interactions. Lectins are distinct from carbohydrate modifying enzymes and antibodies, respectively, as they do not carry out glycosidase or glycosyl transferase reactions, and they are of nonimmune origin. Cyanobacterial and algal lectins have become prominent in recent years due to their unique biophysical traits, such as exhibiting novel protein folds and unusually high carbohydrate affinity, and ability to potently inhibit HIV-1 entry through high affinity carbohydrate-mediated interactions with the HIV envelope glycoprotein gp120. The antiviral cyanobacterial lectin Microcystis viridis lectin (MVL), which contains two high affinity oligomannose binding sites, is one such example. Here we used glycan microarray profiling, NMR spectroscopy, and mutagenesis to show that one of the two oligomannose binding sites of MVL can catalyze the cleavage of chitin fragments (such as chitotriose) to GlcNAc, to determine the mode of MVL binding to and cleavage of chitotriose, to identify Asp75 as the primary catalytic residue involved in this cleavage, and to solve the solution structure of an inactive mutant of MVL in complex with this unexpected substrate. These studies represent the first demonstration of dual catalytic activity and carbohydrate recognition for discrete oligosaccharide& at the same carbohydrate-binding site in a lectin. Sequence comparisons between the N- and C-domains of MVL, together with the sequences of new MVL homologues identified through bioinformatics, provide insight into the evolving roles of carbohydrate recognition.
机译:使碳水化合物结合蛋白或凝集素具有结合特定碳水化合物结构的能力,从而介导细胞-细胞和细胞-病原体的相互作用。凝集素分别不同于碳水化合物修饰酶和抗体,因为它们不进行糖苷酶或糖基转移酶反应,并且它们是非免疫起源的。近年来,蓝藻和藻类凝集素因其独特的生物物理特性(例如表现出新的蛋白质折叠和异常高的碳水化合物亲和力)以及通过与碳水化合物包膜糖蛋白的高亲和力碳水化合物介导的相互作用而有效抑制HIV-1进入的能力而变得日益重要。 gp120。一种抗病毒的蓝藻凝集素微囊藻凝集素(MVL),其包含两个高亲和力的低聚甘露糖结合位点,就是这样的一个例子。在这里,我们使用聚糖微阵列分析,核磁共振波谱和诱变表明,MVL的两个寡甘露糖结合位点之一可以催化几丁质片段(例如壳三糖)裂解为GlcNAc,从而确定MVL结合和裂解MVL的方式壳三糖,以鉴定Asp75是参与该裂解的主要催化残基,并解决与该意外底物复合的MVL失活突变体的溶液结构。这些研究代表了在凝集素中相同碳水化合物结合位点的离散寡糖具有双重催化活性和碳水化合物识别的首次证明。 MVL的N和C结构域之间的序列比较,以及通过生物信息学鉴定的新MVL同源序列,可以深入了解碳水化合物识别的作用。

著录项

  • 来源
    《Journal of the American Chemical Society》 |2009年第45期|16500-16508|共9页
  • 作者单位

    Laboratories of Bioorganic Chemistry and Chemical Physics, National Institute of Diabetes;

    Digestive and Kidney Diseases, National Institutes of Health, Bethesda, Maryland 20892;

    Laboratories of Bioorganic Chemistry and Chemical Physics, National Institute of Diabetes;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-18 03:17:29

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