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首页> 外文期刊>Revista colombiana de química. >De novo DESIGN AND SYNTHESIS OF AN ICE-BINDING, DENDRIMERIC, POLYPEPTIDE BASED ON INSECT ANTIFREEZE PROTEINS
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De novo DESIGN AND SYNTHESIS OF AN ICE-BINDING, DENDRIMERIC, POLYPEPTIDE BASED ON INSECT ANTIFREEZE PROTEINS

机译:从头开始设计和合成基于昆虫抗冻蛋白的冰蛋白,二聚体,多肽

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A new strategy is presented for the designand synthesis of peptides that exhibitice-binding and antifreeze activity. Apennant-type dendrimer polypeptidescaffold combining an α-helical backbonewith four short β-strand branches wassynthesized in solid phase using Fmocchemistry in a divergent approach. The51-residue dendrimer was characterizedby reverse phase high performance liquidchromatography, mass spectrometry andcircular dichroism. Each β-strand branchcontained three overlapping TXT aminoacid repeats, an ice-binding motif foundin the ice-binding face of the sprucebudworm (Choristoneura fumiferana)and beetle (Tenebrio molitor) antifreezeproteins. Ice crystals in the presence ofthe polypeptide monomer displayed flat,hexagonal plate morphology, similar tothat produced by weakly active antifreezeproteins. An oxidized dimeric form of thedendrimer polypeptide also produced flathexagonal ice crystals and was capableof inhibiting ice crystal growth upontemperature reduction, a phenomenontermed thermal hysteresis, a definingproperty of antifreeze proteins. Linkageof the pennant-type dendrimer to a trifunctionalcascade-type polypeptideproduced a trimeric macromolecule thatgave flat hexagonal ice crystals withhigher thermal hysteresis activity thanthe dimer or monomer and an ice crystal burst pattern similar to that producedby samples containing insect antifreezeproteins. This macromolecule was alsocapable of inhibiting ice recrystallization.
机译:提出了一种新的策略,用于设计和合成具有结合力和抗冻活性的肽。使用Fmocchemistry以发散的方式在固相中合成了结合了α-螺旋骨架和四个短β链分支的双端型树状聚合物多肽支架。通过反相高效液相色谱,质谱和圆二色性表征了51个残基的树枝状大分子。每个β链分支包含三个重叠的TXT氨基酸重复序列,一个在冰云芽孢虫(Choristoneura fumiferana)和甲虫(Tenebrio molitor)抗冻蛋白的冰结合面上发现的冰结合基序。在存在多肽单体的情况下,冰晶显示出平坦的,六边形的板状形态,类似于弱活性抗冻蛋白产生的形态。树枝状大分子多肽的氧化二聚体形式还产生了扁平六方冰晶,并且能够在温度降低时抑制冰晶生长,这种现象称为热滞后现象,是抗冻蛋白的重要特性。信号旗型树状聚合物与三级联反应型多肽的连接产生了三聚体大分子,该分子具有扁平的六角形冰晶,其热滞后活性高于二聚体或单体,并且其冰晶破裂模式与含有昆虫抗冻蛋白的样品相似。该大分子还能够抑制冰的重结晶。

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