首页> 外文期刊>Biopolymers: Original Research on Biomolecules and Biomolecular Assemblies >Temperature-Sensitive Elastin-Mimetic Dendrimers: Effect of Peptide Length and Dendrimer Generation to Temperature Sensitivity
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Temperature-Sensitive Elastin-Mimetic Dendrimers: Effect of Peptide Length and Dendrimer Generation to Temperature Sensitivity

机译:温度敏感的弹性蛋白模拟树状聚合物:肽长度和树状聚合物的生成对温度敏感性的影响。

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摘要

Dendrimers are synthetic macromolecules with unique structure, which are a potential scaffold for peptides. Elastin is one of the main components of extracellular matrix and a temperature-sensitive biomacromolecule. Previously, Val-Pro-Gly-Val-Gly peptides have been conjugated to a dendrimer for designing an elastin-mimetic dendrimer. In this study, various elastin-mimetic dendrimers using different length peptides and different dendrimer generations were synthesized to control the temperature dependency. The elastin-mimetic dendrimers formed b-turn structure by heating, which was similar to the elastin-like peptides. The elastin-mimetic dendrimers exhibited an inverse phase transition, largely depending on the peptide length and slightly depending on the dendrimer generation. The elastin-mimetic dendrimers formed aggregates after the phase transition. The endothermal peak was observed in elastin-mimetic dendrimers with long peptides, but not with short ones. The peptide length and the dendrimer generation are important factors to tune the temperature dependency on the elastin-mimetic dendrimer.
机译:树枝状大分子是具有独特结构的合成大分子,是肽的潜在支架。弹性蛋白是细胞外基质和温度敏感的生物大分子的主要成分之一。以前,Val-Pro-Gly-Val-Gly肽已与树状聚合物缀合,以设计弹性蛋白模拟树状聚合物。在这项研究中,合成了使用不同长度的肽和不同的树状聚合物世代的各种弹性模拟树状聚合物,以控制温度依赖性。弹性蛋白模拟树状聚合物通过加热形成b-turn结构,这类似于弹性蛋白样肽。弹性蛋白模拟树状聚合物表现出逆相转变,很大程度上取决于肽的长度,而略微取决于树状聚合物的生成。在相变之后,弹性蛋白模拟树状聚合物形成聚集体。在具有长肽的弹性蛋白模拟树枝状聚合物中观察到了吸热峰,但没有短肽。肽长度和树状聚合物的生成是调节温度对弹性蛋白模拟树状聚合物的依赖性的重要因素。

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