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Synthetic Protein Scaffolding at Biological Membranes

机译:生物膜的合成蛋白脚手架

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摘要

Protein scaffolding is a natural phenomenon whereby proteins colocalize into macromolecular complexes via specific protein-protein interactions. In the case of metabolic enzymes, protein scaffolding drives metabolic flux through specific pathways by colocalizing enzyme active sites. Synthetic protein scaffolding is increasingly used as a mechanism to improve product specificity and yields in metabolic engineering projects. To date, synthetic scaffolding has focused primarily on soluble enzyme systems, but many metabolic pathways for high-value secondary metabolites depend on membrane-bound enzymes. The compositional diversity of biological membranes and general challenges associated with modifying membrane proteins complicate scaffolding with membrane-requiring enzymes. Several recent studies have introduced new approaches to protein scaffolding at membrane surfaces, with notable success in improving product yields from specific metabolic pathways.
机译:蛋白质脚手架是一种自然现象,由此通过特异性蛋白质 - 蛋白质相互作用将蛋白质分解成大分子复合物。 在代谢酶的情况下,蛋白质脚手架通过分致酶活性位点通过特异性途径驱动代谢通量。 合成蛋白脚手架越来越多地用作改善代谢工程项目的产品特异性和产量的机制。 迄今为止,合成脚手架主要集中在可溶性酶系统上,但高价值二级代谢物的许多代谢途径取决于膜结合酶。 生物膜的组成多样性和与改性膜蛋白质相关的一般挑战使需要膜的肌酶复制脚手架。 最近的几项研究引入了在膜表面的蛋白质支架上的新方法,具有显着的成功,提高来自特定代谢途径的产物产量。

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