Department of Chemistry, D'Iorio Hall, 10 Marie Curie, University of Ottawa , Ottawa, Ontario, Canada, K1N 6N5.
Bioconjug Chem. 2011 Apr 20;22(4):605-16. doi: 10.1021/bc100394k. Epub 2011 Apr 1.
C-Linked antifreeze glycoprotein (C-AFGP) analogues have been shown to have potent ice recrystallization inhibition (IRI) activity. However, the lengthy synthesis of these compounds is not amenable to large-scale preparation for the many commercial, industrial, and medical applications that exist. This paper describes the synthesis of triazole-containing AFGPs using a convergent solid-phase synthesis (SPS) approach in which multiple carbohydrate derivatives are coupled to a resin-bound synthetic peptide in a single step. Modified "Click" conditions using dry DMF as solvent with catalytic Cu(II), sodium ascorbate, and microwave radiation afforded the synthesis of AFGP analogues 9-12 in 16-54% isolated yield. Compound 9 demonstrated no IRI activity, while compounds 10, 11, and 12 were moderate inhibitors of ice recrystallization. These results suggest that, while the triazole group is a structural mimetic of an amide bond, the amide bond in C-AFGP analogue 3 is an essential structural feature necessary for potent IRI activity.
C 型链接抗冻蛋白 (C-AFGP) 类似物已被证明具有很强的冰晶重结晶抑制 (IRI) 活性。然而,这些化合物的合成过程冗长,不适合大规模制备,因为有许多商业、工业和医疗应用需要它们。本文描述了使用收敛固相合成 (SPS) 方法合成含三唑的 AFGP,其中多个碳水化合物衍生物在单个步骤中偶联到树脂结合的合成肽上。使用干燥的 DMF 作为溶剂,并采用改良的“Click”条件,使用催化 Cu(II)、抗坏血酸钠和微波辐射,以 16-54%的分离收率得到了 AFGP 类似物 9-12 的合成。化合物 9 没有 IRI 活性,而化合物 10、11 和 12 是中等强度的冰晶重结晶抑制剂。这些结果表明,虽然三唑基团是酰胺键的结构模拟物,但 C-AFGP 类似物 3 中的酰胺键是具有强 IRI 活性所必需的重要结构特征。