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基于固相合成的二肽和杂环假二肽作为潜在的一氧化氮合酶抑制剂。

Solid-Phase Synthesis of Substrate-Based Dipeptides and Heterocyclic Pseudo-dipeptides as Potential NO Synthase Inhibitors.

机构信息

Institut des Biomolécules Max Mousseron, Université Montpellier, CNRS, ENSCM, Faculté de Pharmacie, 34000, Montpellier, France.

Avara Pharmaceutical Services, Boucherville, QC, J4B 7 K8, Canada.

出版信息

ChemMedChem. 2020 Mar 18;15(6):517-531. doi: 10.1002/cmdc.201900659. Epub 2020 Feb 27.

Abstract

More than 160 arginine analogues modified on the C-terminus via either an amide bond or a heterocyclic moiety (1,2,4-oxadiazole, 1,3,4-oxadiazole and 1,2,4-triazole) were prepared as potential inhibitors of NO synthases (NOS). A methodology involving formation of a thiocitrulline intermediate linked through its side-chain on a solid support followed by modification of its carboxylate group was developed. Finally, the side-chain thiourea group was either let unchanged, S-alkylated (Me, Et) or guanidinylated (Me, Et) to yield respectively after TFA treatment the corresponding thiocitrulline, S-Me/Et-isothiocitrulline and N-Me/Et-arginine substrate analogues. They all were tested against three recombinant NOS isoforms. Several compounds containing a S-Et- or a S-Me-Itc moiety and mainly belonging to both the dipeptide-like and 1,2,4-oxadiazole series were shown to inhibit nNOS and iNOS with IC in the 1-50 μM range. Spectral studies confirmed that these new compounds interacted at the heme active site. The more active compounds were found to inhibit intra-cellular iNOS expressed in RAW264.7 and INS-1 cells with similar efficiency than the reference compounds L-NIL and SEIT.

摘要

超过 160 种精氨酸类似物通过酰胺键或杂环部分(1,2,4-噁二唑、1,3,4-噁二唑和 1,2,4-三唑)在 C 末端进行修饰,作为潜在的一氧化氮合酶(NOS)抑制剂。开发了一种涉及通过其侧链在固体支持物上形成硫代瓜氨酸中间体,然后修饰其羧酸盐基团的方法。最后,将侧链硫脲基团保持不变、S-烷基化(Me、Et)或胍基化(Me、Et),分别在 TFA 处理后得到相应的硫代瓜氨酸、S-Me/Et-异硫代瓜氨酸和 N-Me/Et-精氨酸底物类似物。它们都针对三种重组 NOS 同工型进行了测试。几种含有 S-Et-或 S-Me-Itc 部分的化合物,主要属于二肽样和 1,2,4-噁二唑系列,被证明能够抑制 nNOS 和 iNOS,IC 在 1-50 μM 范围内。光谱研究证实这些新化合物在血红素活性部位相互作用。发现更活跃的化合物以与参考化合物 L-NIL 和 SEIT 相似的效率抑制 RAW264.7 和 INS-1 细胞中表达的细胞内 iNOS。

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