具有非天然β-D-氨基葡萄糖-(1→6)-肌醇基团的糖基磷脂酰肌醇类似物的合成

IF 1.2 4区 化学 Q4 BIOCHEMISTRY & MOLECULAR BIOLOGY Journal of Carbohydrate Chemistry Pub Date : 2024-02-12 DOI:10.1080/07328303.2024.2343004
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引用次数: 0

摘要

糖基磷脂酰肌醇(GPI)锚在其保守的核心结构中含有独特的α-D-葡萄糖胺-(1→6)-肌醇[αGlcN(1,6)Ins]基团。为了便于研究这一结构基团的功能作用,我们设计并合成了两种 GPI 类似物,它们含有非天然的 βGlcN(1,6)Ins 而不是 αGlcN(1,6)Ins ,并在 GPI 核心的不同位置含有一个炔基。为此,我们通过[3 + 2]糖基化技术聚合构建了具有βGlcN(1,6)Ins结构的GPI的正交保护假五糖衍生物,并以此为共同中间体,通过简化的合成方案制备了这两种GPI类似物。假五糖中间体和所开发的方案可广泛应用于获得各种具有βGlcN(1,6)Ins基序的GPI类似物。目标 GPI 类似物含有一个炔烃,这使得它们可以通过点击化学进一步修饰以引入各种分子标签,从而成为研究 GPI 锚定的有用探针。这两种 GPI 类似物在反应活性和核磁共振行为上的差异,以及这些类似物与之前报道的含有 αGlcN(1,6)Ins 主题的类似结构 GPI 衍生物的差异,表明甘露糖-I 上的 2-O 磷乙醇胺分子和 GPI 中 GlcN 的连接形式会对结构产生决定性的影响,这很可能与生物学有关。
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Synthesis of glycosylphosphatidylinositol analogues with an unnatural β-D-glucosamine-(1→6)-myo-inositol motif

Glycosylphosphatidylinositol (GPI) anchors contain a unique α-D-glucosamine-(1→6)-myo-inositol [αGlcN(1,6)Ins] motif in their conserved core structure. To facilitate investigations of the functional roles of this structural motif, two GPI analogues containing unnatural βGlcN(1,6)Ins, instead of αGlcN(1,6)Ins, and an alkyne group at different positions of the GPI core were designed and synthesized. To this end, an orthogonally protected pseudopentasaccharide derivative of GPIs with the βGlcN(1,6)Ins motif was convergently constructed via [3 + 2] glycosylation and used as the common intermediate to prepare both GPI analogues by streamlined synthetic protocols. The pseudopentasaccharide intermediate and developed protocols can be widely applicable to access various GPI analogues with the βGlcN(1,6)Ins motif. The target GPI analogues contain an alkyne, which allows their further modification to introduce various molecular labels via click chemistry, making them useful probes for the study of GPI anchorage. The differences in reactivity and NMR behavior of the two GPI analogues, as well as the differences of these analogues from previously reported GPI derivatives of similar structure containing an αGlcN(1,6)Ins motif, suggest that the 2-O-phosphoethanolamine moiety on mannose-I and the linkage form of GlcN in GPIs can have a decisive impact on the structure, which is likely relevant to biology.

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来源期刊
Journal of Carbohydrate Chemistry
Journal of Carbohydrate Chemistry 化学-生化与分子生物学
CiteScore
2.10
自引率
0.00%
发文量
20
审稿时长
1 months
期刊介绍: The Journal of Carbohydrate Chemistry serves as an international forum for research advances involving the chemistry and biology of carbohydrates. The following aspects are considered to fall within the scope of this journal: -novel synthetic methods involving carbohydrates, oligosaccharides, and glycoconjugates- the use of chemical methods to address aspects of glycobiology- spectroscopic and crystallographic structure studies of carbohydrates- computational and molecular modeling studies- physicochemical studies involving carbohydrates and the chemistry and biochemistry of carbohydrate polymers.
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