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首页> 外文期刊>Nature chemical biology >Global metabolic inhibitors of sialyl- and fucosyltransferases remodel the glycome
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Global metabolic inhibitors of sialyl- and fucosyltransferases remodel the glycome

机译:唾液酸和岩藻糖基转移酶的整体代谢抑制剂重塑糖组

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摘要

Despite the fundamental roles of sialyl- and fucosyltransferases in mammalian physiology, there are few pharmacological tools to manipulate their function in a cellular setting. Although fluorinated analogs of the donor substrates are well-established transition state inhibitors of these enzymes, they are not membrane permeable. By exploiting promiscuous monosaccharide salvage pathways, we show that fluorinated analogs of sialic acid and fucose can be taken up and metabolized to the desired donor substrate-based inhibitors inside the cell. Because of the existence of metabolic feedback loops, they also act to prevent the de novo synthesis of the natural substrates, resulting in a global, family-wide shutdown of sialyl- and/or fucosyltransferases and remodeling of cell-surface glycans. As an example of the functional consequences, the inhibitors substantially reduce expression of the sialylated and fucosylated ligand sialyl Lewis X on myeloid cells, resulting in loss of selectin binding and impaired leukocyte rolling.
机译:尽管唾液酸基和岩藻糖基转移酶在哺乳动物生理中起着基本作用,但很少有药理学工具可以在细胞环境中操纵其功能。尽管供体底物的氟化类似物是这些酶的成熟过渡态抑制剂,但它们不是膜可渗透的。通过利用混杂的单糖挽救途径,我们表明,唾液酸和岩藻糖的氟化类似物可以被吸收并代谢为细胞内所需的基于供体底物的抑制剂。由于存在代谢反馈回路,它们还起到阻止天然底物从头合成的作用,导致唾液酸和/或岩藻糖基转移酶在全球范围内全面关闭,并重塑细胞表面聚糖。作为功​​能性后果的一个例子,抑制剂显着降低了髓样细胞上唾液酸化和岩藻糖基化的配体唾液酸化的路易斯X的表达,导致选择蛋白结合丧失和白细胞滚动受损。

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