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1
Metabolic inhibition of sialyl-Lewis X biosynthesis by 5-thiofucose remodels the cell surface and impairs selectin-mediated cell adhesion.5-硫代岩藻糖通过抑制唾液酸化 Lewis X 的生物合成来重塑细胞表面并损害选择素介导的细胞黏附。
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2
The alpha (1,3)-fucosyltransferase Fuc-TIV, but not Fuc-TVII, generates sialyl Lewis X-like epitopes preferentially on glycolipids.α(1,3)岩藻糖基转移酶Fuc-TIV而非Fuc-TVII,优先在糖脂上产生类似唾液酸化路易斯X的表位。
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3
Molecular cloning of a cDNA encoding a novel human leukocyte alpha-1,3-fucosyltransferase capable of synthesizing the sialyl Lewis x determinant.一种能够合成唾液酸化路易斯x决定簇的新型人类白细胞α-1,3-岩藻糖基转移酶的cDNA的分子克隆。
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4
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6
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The biosynthesis of the selectin-ligand sialyl Lewis x in colorectal cancer tissues is regulated by fucosyltransferase VI and can be inhibited by an RNA interference-based approach.黏附分子 selectin-ligand sialyl Lewis x 在结直肠癌细胞中的生物合成受岩藻糖基转移酶 VI 调控,可通过基于 RNA 干扰的方法进行抑制。
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9
Complementary acceptor and site specificities of Fuc-TIV and Fuc-TVII allow effective biosynthesis of sialyl-TriLex and related polylactosamines present on glycoprotein counterreceptors of selectins.岩藻糖基转移酶IV(Fuc-TIV)和岩藻糖基转移酶VII(Fuc-TVII)的互补受体及位点特异性使得唾液酸三岩藻糖基乳糖(sialyl-TriLex)及存在于选择素糖蛋白反受体上的相关多乳糖胺能够有效生物合成。
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2,2-Difluoro Derivatives of Fucose Can Inhibit Cell Surface Fucosylation without Causing Slow Transfer to Acceptors.岩藻糖的2,2-二氟衍生物可抑制细胞表面岩藻糖基化,而不会导致向受体的缓慢转移。
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本文引用的文献

1
Global metabolic inhibitors of sialyl- and fucosyltransferases remodel the glycome.全球唾液酸和岩藻糖基转移酶的代谢抑制剂重塑聚糖组。
Nat Chem Biol. 2012 Jul;8(7):661-8. doi: 10.1038/nchembio.999. Epub 2012 Jun 10.
2
5-thiomannosides block the biosynthesis of dolichol-linked oligosaccharides and mimic class I congenital disorders of glycosylation.5-硫代甘露糖苷类似物可阻断多萜醇连接寡糖的生物合成,并模拟 I 型糖基化先天性疾病。
Chembiochem. 2012 Feb 13;13(3):392-401. doi: 10.1002/cbic.201100647. Epub 2012 Jan 19.
3
High-throughput screening for inhibitors of sialyl- and fucosyltransferases.高通量筛选唾液酸和岩藻糖基转移酶抑制剂。
Angew Chem Int Ed Engl. 2011 Dec 23;50(52):12534-7. doi: 10.1002/anie.201105065. Epub 2011 Nov 9.
4
Human sperm binding is mediated by the sialyl-Lewis(x) oligosaccharide on the zona pellucida.人类精子的结合是由透明带糖蛋白上的唾液酸-Lewis(x)寡糖介导的。
Science. 2011 Sep 23;333(6050):1761-4. doi: 10.1126/science.1207438. Epub 2011 Aug 18.
5
Peracetylated 4-fluoro-glucosamine reduces the content and repertoire of N- and O-glycans without direct incorporation.乙酰化 4-氟-葡糖胺在不直接掺入的情况下降低 N-和 O-聚糖的含量和种类。
J Biol Chem. 2011 Jun 17;286(24):21717-31. doi: 10.1074/jbc.M110.194597. Epub 2011 Apr 14.
6
C2-O-sLeX glycoproteins are E-selectin ligands that regulate invasion of human colon and hepatic carcinoma cells.C2-O-sLeX 糖蛋白是 E-选择素配体,可调节人结肠和肝癌细胞的侵袭。
PLoS One. 2011 Jan 19;6(1):e16281. doi: 10.1371/journal.pone.0016281.
7
Hijacking a biosynthetic pathway yields a glycosyltransferase inhibitor within cells.在细胞内,劫持一个生物合成途径可以得到一个糖基转移酶抑制剂。
Nat Chem Biol. 2011 Mar;7(3):174-81. doi: 10.1038/nchembio.520. Epub 2011 Jan 23.
8
The biosynthesis of the selectin-ligand sialyl Lewis x in colorectal cancer tissues is regulated by fucosyltransferase VI and can be inhibited by an RNA interference-based approach.黏附分子 selectin-ligand sialyl Lewis x 在结直肠癌细胞中的生物合成受岩藻糖基转移酶 VI 调控,可通过基于 RNA 干扰的方法进行抑制。
Int J Biochem Cell Biol. 2011 Jan;43(1):130-9. doi: 10.1016/j.biocel.2010.10.004. Epub 2010 Oct 19.
9
Enzymatic route to preparative-scale synthesis of UDP-GlcNAc/GalNAc, their analogues and GDP-fucose.酶法制备 UDP-GlcNAc/GalNAc、其类似物和 GDP-Fuc 的大规模合成。
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10
Fluorinated per-acetylated GalNAc metabolically alters glycan structures on leukocyte PSGL-1 and reduces cell binding to selectins.氟代乙酰化半乳糖胺代谢改变白细胞 PSGL-1 上的聚糖结构,并降低细胞与选择素的结合。
Blood. 2010 Feb 11;115(6):1303-12. doi: 10.1182/blood-2009-07-231480. Epub 2009 Dec 8.

5-硫代岩藻糖通过抑制唾液酸化 Lewis X 的生物合成来重塑细胞表面并损害选择素介导的细胞黏附。

Metabolic inhibition of sialyl-Lewis X biosynthesis by 5-thiofucose remodels the cell surface and impairs selectin-mediated cell adhesion.

机构信息

Department of Chemistry, Simon Fraser University, 8888 University Dr., Burnaby V5A 1S6, Canada.

出版信息

J Biol Chem. 2012 Nov 16;287(47):40021-30. doi: 10.1074/jbc.M112.403568. Epub 2012 Sep 27.

DOI:10.1074/jbc.M112.403568
PMID:23019334
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3501042/
Abstract

Sialyl-Lewis X (sLe(X)) is a tetrasaccharide that serves as a ligand for the set of cell adhesion proteins known as selectins. This interaction enables adhesion of leukocytes and cancer cells to endothelial cells within capillaries, resulting in their extravasation into tissues. The last step in sLe(X) biosynthesis is the α1,3-fucosyltrasferase (FUT)-catalyzed transfer of an L-fucose residue to carbohydrate acceptors. Impairing FUT activity compromises leukocyte homing to sites of inflammation and renders cancer cells less malignant. Inhibition of FUTs is, consequently, of great interest, but efforts to generate glycosyltransferase inhibitors, including FUT inhibitors, has proven challenging. Here we describe a metabolic engineering strategy to inhibit the biosynthesis of sLe(X) in cancer cells using peracetylated 5-thio-L-fucose (5T-Fuc). We show that 5T-Fuc is taken up by cancer cells and then converted into a sugar nucleotide analog, GDP-5T-Fuc, that blocks FUT activity and limits sLe(X) presentation on HepG2 cells with an EC(50) in the low micromolar range. GDP-5T-Fuc itself does not get transferred by either FUT3 or FUT7 at a measurable rate. We further demonstrate that treatment of cells with 5T-Fuc impaired their adhesive properties to immobilized adhesion molecules and human endothelial cells. 5T-Fuc, therefore, is a useful probe that can be used to modulate sLe(X) levels in cells to evaluate the consequences of inhibiting FUT-mediated sLe(X) formation. These data also reveal the utility of using sugar analogues that lead to formation of donor substrate analogues within cells as a general approach to blocking glycosyltransferases in cells.

摘要

唾液酸化路易斯 X(sLe(X))是一种四糖,作为一组称为选择素的细胞粘附蛋白的配体。这种相互作用使白细胞和癌细胞与毛细血管内皮细胞粘附,导致它们渗出到组织中。sLe(X)生物合成的最后一步是α1,3-岩藻糖基转移酶(FUT)催化的将 L-岩藻糖残基转移到碳水化合物受体上。FUT 活性的损害会损害白细胞向炎症部位的归巢,并使癌细胞的恶性程度降低。因此,抑制 FUT 具有重要意义,但生成糖基转移酶抑制剂(包括 FUT 抑制剂)的努力一直具有挑战性。在这里,我们描述了一种使用乙酰化 5-硫代-L-岩藻糖(5T-Fuc)抑制癌细胞中 sLe(X)生物合成的代谢工程策略。我们表明,5T-Fuc 被癌细胞摄取,然后转化为糖核苷酸类似物 GDP-5T-Fuc,该类似物可阻断 FUT 活性并将 HepG2 细胞上的 sLe(X)呈现限制在低微摩尔范围内的 EC50。GDP-5T-Fuc 本身不会以可测量的速率被 FUT3 或 FUT7 转移。我们进一步证明,用 5T-Fuc 处理细胞会损害其与固定化粘附分子和人内皮细胞的粘附特性。因此,5T-Fuc 是一种有用的探针,可用于调节细胞中 sLe(X)的水平,以评估抑制 FUT 介导的 sLe(X)形成的后果。这些数据还揭示了使用导致细胞内形成供体底物类似物的糖类似物作为阻断细胞中糖基转移酶的一般方法的实用性。