Department of Chemical and Biological Engineering, State University of New York, 906 Furnas Hall, Buffalo, NY 14260, USA.
TumorEnd LLC, Louisiana Emerging Technology Center, 340 East Parker Drive, Suite 246, Baton Rouge, LA 70803, USA.
Cell Chem Biol. 2018 Dec 20;25(12):1519-1532.e5. doi: 10.1016/j.chembiol.2018.09.012. Epub 2018 Oct 18.
Metabolic decoys are synthetic analogs of naturally occurring biosynthetic acceptors. These compounds divert cellular biosynthetic pathways by acting as artificial substrates that usurp the activity of natural enzymes. While O-linked glycosides are common, they are only partially effective even at millimolar concentrations. In contrast, we report that N-acetylglucosamine (GlcNAc) incorporated into various thioglycosides robustly truncate cell surface N- and O-linked glycan biosynthesis at 10-100 μM concentrations. The >10-fold greater inhibition is in part due to the resistance of thioglycosides to hydrolysis by intracellular hexosaminidases. The thioglycosides reduce β-galactose incorporation into lactosamine chains, cell surface sialyl Lewis-X expression, and leukocyte rolling on selectin substrates including inflamed endothelial cells under fluid shear. Treatment of granulocytes with thioglycosides prior to infusion into mouse inhibited neutrophil homing to sites of acute inflammation and bone marrow by ∼80%-90%. Overall, thioglycosides represent an easy to synthesize class of efficient metabolic inhibitors or decoys. They reduce N-/O-linked glycan biosynthesis and inflammatory leukocyte accumulation.
代谢诱饵是天然生物合成受体的合成类似物。这些化合物通过充当篡夺天然酶活性的人工底物来改变细胞生物合成途径。虽然 O-连接糖基化是常见的,但即使在毫摩尔浓度下,它们的效果也只是部分有效。相比之下,我们报告说,N-乙酰葡萄糖胺(GlcNAc)掺入各种硫代糖苷中,可在 10-100 μM 浓度下强烈截断细胞表面 N-和 O-连接聚糖的生物合成。抑制作用高出 10 倍,部分原因是硫代糖苷对细胞内己糖胺酶水解的抵抗力。硫代糖苷降低β-半乳糖掺入乳糖胺链、细胞表面唾液酸化路易斯-X 表达以及包括在流体剪切下的炎症内皮细胞在内的选择素底物上的白细胞滚动。在输注到小鼠之前,用硫代糖苷处理粒细胞可抑制中性粒细胞向急性炎症和骨髓部位的归巢,抑制率约为 80%-90%。总体而言,硫代糖苷代表一类易于合成的高效代谢抑制剂或诱饵。它们可减少 N-/O-连接聚糖的生物合成和炎症性白细胞的积累。