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Biosynthesis of a Periodic Protein Containing 3-Thienylalanine: A Step Toward Genetically Engineered Conducting Polymers

机译:含3-噻吩丙氨酸的周期蛋白的生物合成:向基因工程导电聚合物迈进的一步。

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Protein engineering provides an approach to materials synthesis in which macromolecular architecture is subject to precise control. Proteins synthesized biologically from a genetic template by the protein synthesis machinery are monodisperse with respect to molecular weight, and they are stereochemically pure, as only L-amino acids are used. Chemical composition and sequence are controlled, as the covalent structure of the chain is encoded by the template messenger RNA. We reasoned that genetic engineering technology could be used to create conducting materials by incorporation of electroactive amino acids, which could subsequently be cross-linked (or grafted) to produce extended conjugated systems. The role of the protein backbone in such materials would be to control the spatial organization of the conducting layers or domains. We report here the successful synthesis of a recombinant protein containing 3-thienylalanine (3-TA, 1) in place of phenylalanine (2).
机译:蛋白质工程学提供了一种材料合成的方法,其中大分子结构受到精确控制。通过蛋白质合成机器从遗传模板生物合成的蛋白质相对于分子量是单分散的,并且由于仅使用L-氨基酸,因此它们是立体化学纯的。由于链的共价结构由模板信使RNA编码,因此化学成分和序列受到控制。我们认为,基因工程技术可用于通过引入电活性氨基酸来创建导电材料,随后可对其进行交联(或接枝)以产生扩展的共轭体系。蛋白质骨架在此类材料中的作用将是控制导电层或结构域的空间组织。我们在这里报告成功合成包含3-噻吩丙氨酸(3-TA,1)代替苯丙氨酸(2)的重组蛋白。

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