Organic and Bioorganic Chemistry, Bielefeld University, Germany.
Chemistry. 2012 Oct 1;18(40):12783-93. doi: 10.1002/chem.201202119. Epub 2012 Aug 28.
Certain Arctic and Antarctic ectotherm species have developed strategies for survival under low temperature conditions that, among others, consist of antifreeze glycopeptides (AFGP). AFGP form a class of biological antifreeze agents that exhibit the ability to inhibit ice growth in vitro and in vivo and, hence, enable life at temperatures below the freezing point. AFGP usually consist of a varying number of (Ala-Ala-Thr)(n) units (n=4-55) with the disaccharide β-D-galactosyl-(1→3)-α-N-acetyl-D-galactosamine glycosidically attached to every threonine side chain hydroxyl group. AFGP have been shown to adopt polyproline II helical conformation. Although this pattern is highly conserved among different species, microheterogeneity concerning the amino acid composition usually occurs; for example, alanine is occasionally replaced by proline in smaller AFGP. The influence of minor and major sequence mutations on conformation and antifreeze activity of AFGP analogues was investigated by replacement of alanine by proline and glycosylated threonine by glycosylated hydroxyproline. The target compounds were prepared by using microwave-enhanced solid phase peptide synthesis. Furthermore, artificial analogues were obtained by copper-catalyzed azide-alkyne cycloaddition (CuAAC): propargyl glycosides were treated with polyproline helix II-forming peptides comprising (Pro-Azp-Pro)(n) units (n=2-4) that contained 4-azidoproline (Azp). The conformations of all analogues were examined by circular dichroism (CD). In addition, microphysical analysis was performed to provide information on their inhibitory effect on ice recrystallization.
某些北极和南极的变温动物已经发展出了在低温条件下生存的策略,其中包括抗冻糖肽 (AFGP)。AFGP 形成了一类生物抗冻剂,具有在体外和体内抑制冰晶生长的能力,因此能够在冰点以下的温度下生存。AFGP 通常由(Ala-Ala-Thr)(n) 个单位组成(n=4-55),其中每个苏氨酸侧链的羟基都通过糖苷键连接上了二糖β-D-半乳糖基-(1→3)-α-N-乙酰-D-半乳糖胺。AFGP 已被证明采用多脯氨酸 II 螺旋构象。尽管这种模式在不同物种中高度保守,但通常会发生氨基酸组成的微异质性;例如,较小的 AFGP 中偶尔会用脯氨酸代替丙氨酸。通过用脯氨酸替代丙氨酸和糖基化苏氨酸替代糖基化羟脯氨酸,研究了微小和主要序列突变对 AFGP 类似物构象和抗冻活性的影响。目标化合物是通过微波增强固相肽合成制备的。此外,通过铜催化的叠氮-炔环加成(CuAAC)获得了人工类似物:炔基糖苷与包含(Pro-Azp-Pro)(n) 个单位的多脯氨酸螺旋 II 形成肽(n=2-4)反应,其中包含 4-叠氮脯氨酸 (Azp)。通过圆二色性 (CD) 检查了所有类似物的构象。此外,还进行了微观物理分析,以提供有关它们抑制冰晶重结晶的信息。