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进一步探讨 Muramyl Dipeptides 的结构修饰以研究人类 NOD2 刺激活性。

Further Insights on Structural Modifications of Muramyl Dipeptides to Study the Human NOD2 Stimulating Activity.

机构信息

Genomics Research Center, Academia Sinica, No. 128, Academia Road Sec. 2, Nangang District, Taipei, 115, Taiwan.

Department of Chemistry, National Cheng-Kung University, No.1, University Road, Tainan, 701, Taiwan.

出版信息

Chem Asian J. 2020 Nov 16;15(22):3836-3844. doi: 10.1002/asia.202001003. Epub 2020 Oct 20.

Abstract

A series of muramyl dipeptide (MDP) analogues with structural modifications at the C4 position of MurNAc and on the d-iso-glutamine (isoGln) residue of the peptide part were synthesized. The C4-diversification of MurNAc was conveniently achieved by using CuAAC click strategy to conjugate an azido muramyl dipeptide precursor with structurally diverse alkynes. d-Glutamic acid (Glu), replaced with isoGln, was applied for the structural diversity through esterification or amidation of the carboxylic acid. In total, 26 MDP analogues were synthesized and bio-evaluated for the study of human NOD2 stimulation activity in the innate immune response. Interestingly, MDP derivatives with an ester moiety are found to be more potent than reference compound MDP itself or MDP analogues containing an amide moiety. Among the varied lengths of the alkyl chain in ester derivatives, the MDP analogue bearing the d-glutamate dodecyl (C12) ester moiety showed the best NOD2 stimulation potency.

摘要

合成了一系列在 MurNAc 的 C4 位和肽部分的 d-异谷氨酰胺(isoGln)残基上进行结构修饰的 muramyl dipeptide(MDP)类似物。MurNAc 的 C4-多样化通过使用 CuAAC 点击策略将叠氮 muramyl dipeptide 前体与结构多样的炔烃偶联来方便地实现。取代 isoGln 的 d-谷氨酸(Glu)通过羧酸的酯化或酰胺化被应用于结构多样性。总共合成了 26 种 MDP 类似物,并对其在先天免疫反应中人类 NOD2 刺激活性的研究进行了生物评估。有趣的是,含有酯基的 MDP 衍生物比参考化合物 MDP 本身或含有酰胺基的 MDP 类似物具有更强的活性。在酯衍生物的不同长度的烷基链中,含有 d-谷氨酸十二烷基(C12)酯基的 MDP 类似物表现出最好的 NOD2 刺激活性。

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