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三维(二)氮杂三环十二烯支架的合成及其在手性肽模拟物中的应用。

Synthesis of Three-Dimensional (Di)Azatricyclododecene Scaffold and Its Application to Peptidomimetics.

机构信息

School of Life Science and Technology, Tokyo Institute of Technology, Yokohama, 226-8503, Japan.

Laboratory for Chemistry and Life Science, Institute of Innovative Research, Tokyo Institute of Technology, Yokohama, 226-8503, Japan.

出版信息

Chemistry. 2021 Aug 16;27(46):11888-11894. doi: 10.1002/chem.202101440. Epub 2021 Jun 30.

Abstract

A novel sp carbon-rich tricyclic 3D scaffold-based peptide mimetic compound library was constructed to target protein-protein interactions. Tricyclic framework 7 was synthesized from 9-azabicyclo[3,3,1]nonan-3-one (11) via a gold(I)-catalyzed Conia-ene reaction. The electron-donating group on the pendant alkyne of cyclization precursor 12 b-e was the key to forming 6-endo-dig cyclized product 7 with complete regioselectivity. Using the synthetic strategy for regioselective construction of bridged tricyclic framework 7, a diazatricyclododecene 3D-scaffold 8 a, which enables the introduction of substituents into the scaffold to mimic amino acid side chains, was designed and synthesized. The peptide mimetics 21 a-u were synthesized via step-by-step installation of three substituents on diazatricyclododecene scaffold 8 a. Compounds 21 a-h were synthesized as α-helix peptide mimics of hydrophobic ZZxxZ and ZxxZZ sequences (Z=Leu or Phe) and subjected to cell-based assays: antiproliferative activity, HIF-1 transcriptional activity which is considered to affect cancer malignancy, and antiviral activity against rabies virus. Compound 21 a showed the strongest inhibitory activity of HIF-1 transcriptional activity (IC =4.1±0.8 μM), whereas compounds 21 a-g showed antiviral activity with IC values of 4.2-12.4 μM, suggesting that the 3D-scaffold 8 a has potential as a versatile peptide mimic skeleton.

摘要

构建了一种基于新型 sp^3 碳富三环 3D 支架的肽模拟化合物库,以靶向蛋白质-蛋白质相互作用。三环骨架 7 是由 9-氮杂双环[3.3.1]壬烷-3-酮(11)通过金(I)催化的 Conia-ene 反应合成的。环化前体 12b-e 上的末端炔烃上的给电子基团是形成具有完全区域选择性的 6-endo-dig 环化产物 7 的关键。使用桥联三环骨架 7 的区域选择性构建的合成策略,设计并合成了一个氮杂三环[3.3.1]壬烷 3D 支架 8a,它可以在支架上引入取代基来模拟氨基酸侧链。通过在氮杂三环[3.3.1]壬烷支架 8a 上逐步安装三个取代基,合成了肽模拟物 21a-u。将化合物 21a-h 作为疏水性 ZZxxZ 和 ZxxZZ 序列(Z=Leu 或 Phe)的α-螺旋肽模拟物进行了细胞测定:增殖活性、被认为影响癌症恶性程度的 HIF-1 转录活性和抗狂犬病毒活性。化合物 21a 显示出最强的 HIF-1 转录活性抑制活性(IC=4.1±0.8μM),而化合物 21a-g 显示出 4.2-12.4μM 的抗病毒活性,表明 3D 支架 8a 具有作为多功能肽模拟骨架的潜力。

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