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Exploiting the sequence of naturally occurring elastin : construction, production and characterization of a recombinant thermoplastic protein-based polymer

机译:利用天然弹性蛋白的序列:重组,热塑性蛋白基聚合物的构建,生产和表征

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摘要

Genetic engineering was used to produce an elastin-like polymer (ELP) with precise amino acid composition, sequence and length, resulting in the absolute control of MW and stereochemistry. A synthetic monomer DNA sequence encoding for (VPAVG)20, was used to build a library of concatemer genes with precise control on sequence and size. The higher molecular weight polymer with 220 repeats of VPAVG was biologically produced in Escherichia coli and purified by hot and cold centrifugation cycles, based on the reversible inverse temperature transition property of ELPs. The use of low cost carbon sources like lactose and glycerol for bacteria cells culture media was explored using Central Composite Design approach allowing optimization of fermentation conditions. Due to its self-assembling behaviour near 33 oC stable spherical microparticles with a size ~ 1μm were obtained, redissolving when a strong undercooling is achieved. The polymer produced showed hysteresis behaviour with thermal absorbing/releasing components depending on the salt concentration of the polymer solution.
机译:基因工程被用于生产具有精确氨基酸组成,序列和长度的弹性蛋白样聚合物(ELP),从而实现了对MW和立体化学的绝对控制。编码(VPAVG)20的合成单体DNA序列用于构建对序列和大小有精确控制的串联蛋白基因文库。基于ELP的可逆逆温转变特性,在大肠杆菌中生物学生产了具有220个重复VPAVG的高分子量聚合物,并通过冷,热离心循环对其进行了纯化。使用中央复合设计方法探索了允许发酵条件优化的低成本碳源,例如乳糖和甘油,用于细菌细胞培养基。由于其在33 oC附近的自组装行为,获得了尺寸约为1μm的稳定球形微粒,在实现强的过冷时会重新溶解。所产生的聚合物根据聚合物溶液的盐浓度,具有吸热/释放组分的滞后行为。

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