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2-脱氧-D-葡萄糖通过抑制 N 连接糖基化防止 NKG2D 配体的细胞表面表达。

2-deoxy D-glucose prevents cell surface expression of NKG2D ligands through inhibition of N-linked glycosylation.

机构信息

Laboratory of Immunology, Faculty of Life Sciences, University of Copenhagen, 1870 Frederiksberg C, Denmark.

出版信息

J Immunol. 2012 Feb 15;188(4):1847-55. doi: 10.4049/jimmunol.1004085. Epub 2012 Jan 6.

Abstract

NKG2D ligand surface expression is important for immune recognition of stressed and neotransformed cells. In this study, we show that surface expression of MICA/B and other NKG2D ligands is dependent on N-linked glycosylation. The inhibitor of glycolysis and N-linked glycosylation, 2-deoxy-D-glucose (2DG), potently inhibited surface expression of MICA/B after histone deacetylase inhibitor treatment; the inhibition occurred posttranscriptionally without affecting MICA promoter activity. Transient overexpression of MICA surface expression was also inhibited by 2DG. 2DG blocks N-linked glycosylation of MICA/B by a reversible mechanism that can be alleviated by addition of d-mannose; this does not, however, affect the inhibition of glycolysis. Addition of d-mannose restored MICA/B surface expression after 2DG treatment. In addition, specific pharmacological or small interfering RNA-mediated targeting of glycolytic enzymes did not affect MICA/B surface expression, strongly suggesting that N-linked glycosylation, and not glycolysis, is essential for MICA/B surface expression. Corroborating this, tunicamycin, a selective inhibitor of N-linked glycosylation, abolished MICA/B surface expression without compromising activation of MICA promoter activity. NK cell-mediated killing assay and staining with a recombinant NKG2D-Fc fusion protein showed that all functional NKG2D ligands induced by histone deacetylase inhibitor treatment were abolished by 2DG treatment and fully reconstituted by further addition of d-mannose. Our data suggest that posttranslational N-linked glycosylation is strictly required for NKG2D ligand surface expression. Cancer and infection often result in aberrant glycosylation, which could likely be involved in modulation of NKG2D ligand expression. Our data further imply that chemotherapeutic use of 2DG may restrict NKG2D ligand surface expression and inhibit secretion of immunoinhibitory soluble NKG2D ligands.

摘要

NKG2D 配体的表面表达对于应激和新转化细胞的免疫识别很重要。在这项研究中,我们表明,MICA/B 和其他 NKG2D 配体的表面表达依赖于 N 连接糖基化。糖酵解和 N 连接糖基化抑制剂 2-脱氧-D-葡萄糖(2DG)强烈抑制组蛋白去乙酰化抑制剂处理后 MICA/B 的表面表达;这种抑制发生在转录后,而不影响 MICA 启动子活性。2DG 还抑制了 MICA 表面表达的瞬时过表达。2DG 通过可逆机制阻断 MICA/B 的 N 连接糖基化,该机制可通过添加 D-甘露糖缓解;然而,这并不影响糖酵解的抑制。添加 D-甘露糖可在 2DG 处理后恢复 MICA/B 的表面表达。此外,糖酵解酶的特定药理学或小干扰 RNA 靶向作用并不影响 MICA/B 的表面表达,这强烈表明 N 连接糖基化而不是糖酵解对于 MICA/B 的表面表达至关重要。证实了这一点,衣霉素,一种 N 连接糖基化的选择性抑制剂,在不损害 MICA 启动子活性激活的情况下消除了 MICA/B 的表面表达。NK 细胞介导的杀伤测定和重组 NKG2D-Fc 融合蛋白染色表明,组蛋白去乙酰化抑制剂处理诱导的所有功能性 NKG2D 配体均被 2DG 处理消除,并通过进一步添加 D-甘露糖完全重建。我们的数据表明,翻译后 N 连接糖基化严格需要 NKG2D 配体的表面表达。癌症和感染通常导致异常糖基化,这可能涉及 NKG2D 配体表达的调节。我们的数据进一步表明,2DG 的化学治疗用途可能会限制 NKG2D 配体的表面表达并抑制免疫抑制性可溶性 NKG2D 配体的分泌。

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