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Influence of the Amino-Acid Sequence on the Inverse Temperature Transition of Elastin-Like Polymers

机译:氨基酸序列对类似弹性蛋白的聚合物的逆温度转变的影响

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摘要

This work explores the dependence of the inverse temperature transition of elastin-like polymers (ELPs) on the amino-acid sequence, i.e., the amino-acid arrangement along the macromolecule and the resulting linear distribution of the physical properties (mainly polarity) derived from it. The hypothesis of this work is that, in addition to mean polarity and molecular mass, the given amino-acid sequence, or its equivalent—the way in which polarity is arranged along the molecule—is also relevant for determining the transition temperature and the latent heat of that transition. To test this hypothesis, a set of linear and di- and triblock ELP copolymers were designed and produced as recombinant proteins. The absolute sequence control provided by recombinant technologies allows the effect of the amino-acid arrangement to be isolated while keeping the molecular mass or mean polarity under strict control. The selected block copolymers were made of two different ELPs: one exhibiting temperature and pH responsiveness, and one exhibiting temperature responsiveness only. By changing the arrangement and length of the blocks while keeping other parameters, such as the molecular mass or mean polarity, constant, we were able to show that the sequence plays a key role in the smart behavior of ELPs.
机译:这项工作探索了弹性蛋白样聚合物(ELP)的逆温度转变对氨基酸序列的依赖性,即氨基酸沿着大分子的排列以及由此产生的物理性质(主要是极性)的线性分布它。这项工作的假设是,除了平均极性和分子质量外,给定的氨基酸序列或其等价物(沿着分子排列极性的方式)也与确定转变温度和潜伏期有关。过渡的热度。为了验证该假设,设计了一组线性和二嵌段和三嵌段ELP共聚物,并将其制成重组蛋白。通过重组技术提供的绝对序列控制可以分离氨基酸排列的效果,同时严格控制分子质量或平均极性。所选的嵌段共聚物由两种不同的ELP制成:一种具有温度和pH响应性,一种仅具有温度响应性。通过改变嵌段的排列和长度,同时保持其他参数(例如分子质量或平均极性)不变,我们能够证明序列在ELP的智能行为中起关键作用。

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