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首页> 外文期刊>Chembiochem: A European journal of chemical biology >Synthesis and Proinflammatory Properties of Muramyl Tripeptides Containing Lysine and Diaminopimelic Acid Moieties
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Synthesis and Proinflammatory Properties of Muramyl Tripeptides Containing Lysine and Diaminopimelic Acid Moieties

机译:含赖氨酸和二氨基庚二酸部分的穆拉米三肽的合成和促炎特性

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The unusual amino acid diaminopimelic acid (DAP) was prepared by cross metathesis of appropriately protected vinyl glycine and allyl glycine derivatives.Catalytic hydrogenation of the cross-coupling product resulted in reduction of the double bond and the removal of protecting groups.The resulting compounds were appropriately protected for the polymer-supported and solution-phase synthesis of muramyl tripeptides 2 and 3,which differ in the amidation of the alpha-carboxylic acids of the isoglutamine and DAP moieties.Muramyl dipeptide (1,MDP),the DAP-containing muramyl tripeptide 3,and the lysine-containing muramyl tripeptides 4 and 5 induced TNF-alpha gene expression without TNF-alpha protein production in a human monocytic cell line.The observed block in translation could be removed by co-incubation with LPS,resulting in an apparent synergistic effect.Compound 2 did not induce TNF-alpha gene expression,neither did it exhibit a synergistic effect with LPS;this indicates that amidation of the alpha-carboxylic acids of the isoglutamine and DAP moieties results in a loss of biological activity.It is proposed that amidation of alpha-carboxylic acids is a strategy that may be used by pathogens to avoid detection by the innate immune system.Furthermore,the pattern recognition receptors Nod1 and Nod2 have been implicated in the possible induction of a synergistic effect of muropeptides with LPS.
机译:通过适当保护的乙烯基甘氨酸和烯丙基甘氨酸衍生物的交叉复分解反应,制得不寻常的氨基酸二氨基庚二酸(DAP),交叉偶联产物的催化加氢反应导致双键的还原和保护基的去除,得到的化合物为适当保护以保护聚合物支持的固溶体和固溶体合成三聚体三肽2和3,它们在异谷氨酰胺和DAP部分的α-羧酸酰胺化方面有所不同。三聚体二肽(1,MDP),含DAP的三聚体三肽3和含赖氨酸的鼠基三肽4和5诱导人单核细胞系中的TNF-α基因表达而没有TNF-α蛋白质的产生。观察到的翻译阻滞可以通过与LPS共同孵育来去除,从而导致化合物2没有诱导TNF-α基因表达,也没有与LPS协同作用;这表明酰胺化由于异戊二烯和DAP部分的α-羧酸会导致生物活性的丧失。有人提出,α-羧酸的酰胺化是病原体可以使用的一种策略,以避免先天免疫系统对其进行检测。模式识别受体Nod1和Nod2与可能诱导的脂肽与LPS的协同作用有关。

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