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Biocatalysis in Polymersomes: Improving Multienzyme Cascades with Incompatible Reaction Steps by Compartmentalization

机译:聚合物中的生物分析:通过划分间化改善具有不相容的反应步骤的偏酶级联

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摘要

Incompatibilities encountered in multienzyme syntheses often arise from inhibition or inactivation of individual enzymes by low-molecular-mass compounds. Polymersomes have the tremendous yet unproven potential to enhance the performance of cascade reactions by spatial separation of enzymes from the respective source of incompatibility. A main challenge is the requirement to reduce mass-transport limitations across the polymer membrane with sufficient selectivity to maintain the compartmentalization. We demonstrate that cross-inhibitions in cascade reactions can be avoided by reconstituting highly selective channel proteins into the membrane. Thus, the three-step synthesis of CMP-N-acetylneuraminic acid was improved 2.2-fold compared to the noncompartmentalized reaction.
机译:偏见酶合成中遇到的不兼容性通常由低分子量化合物抑制或灭活单个酶的抑制或灭活。 聚合物具有巨大但未经证实的潜力,可以通过从各种不相容源的酶的空间分离来增强级联反应的性能。 主要挑战是要求通过足够的选择性来降低聚合物膜的大规模运输限制以维持舱室化。 我们证明通过将高选择性通道蛋白质重构到膜中,可以避免级联反应中的交叉抑制。 因此,与非组分化反应相比,将CMP-N-乙酰尿氨酸的三步合成得到改善2.2倍。

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