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合成多酶复合物:级联生物合成的催化纳米机器

Synthetic Multienzyme Complexes, Catalytic Nanomachineries for Cascade Biosynthesis .

机构信息

Department of Biomedical Sciences , City University of Hong Kong , Kowloon , Hong Kong SAR, China.

Key Laboratory of Combinatorial Biosynthesis and Drug Discovery, Ministry of Education and School of Pharmaceutical Sciences , Wuhan University , Wuhan 430071 , China.

出版信息

ACS Nano. 2019 Sep 24;13(9):9895-9906. doi: 10.1021/acsnano.9b03631. Epub 2019 Jul 31.

Abstract

Multienzyme complexes, or metabolons, are assemblies or clusters of sequential enzymes that naturally exist in metabolic pathways. These nanomachineries catalyze the conversion of metabolites more effectively than the freely floating enzymes by minimizing the diffusion of intermediates . Bioengineers have devised synthetic versions of multienzyme complexes in cells to synergize heterologous biosynthesis, to improve intracellular metabolic flux, and to achieve higher titer of valuable chemical products. Here, we utilized orthogonal protein reactions (SpyCatcher/SpyTag and SnoopCatcher/SnoopTag pairs) to covalently assemble three key enzymes in the mevalonate biosynthesis pathway and showed 5-fold increase of lycopene and 2-fold increase of astaxanthin production in . The multienzyme complexes are ellipsoidal nanostructures with hollow interior space and uniform thickness and shapes. Intracellular covalent enzyme assembly has yielded catalytic nanomachineries that drastically enlarged the flux of carotenoid biosynthesis . These studies also deepened our understanding on the complexity of hierarchical enzyme assembly .

摘要

多酶复合物,或代谢物,是在代谢途径中自然存在的连续酶的组装体或簇。这些纳米机器通过最小化中间产物的扩散,比游离漂浮的酶更有效地催化代谢物的转化。生物工程师已经在细胞中设计了多酶复合物的合成版本,以协同异源生物合成、提高细胞内代谢通量,并实现有价值化学产品的更高产量。在这里,我们利用正交蛋白反应(SpyCatcher/SpyTag 和 SnoopCatcher/SnoopTag 对)将甲羟戊酸生物合成途径中的三个关键酶共价组装在一起,并显示在. 中番茄红素的产量增加了 5 倍,虾青素的产量增加了 2 倍。多酶复合物是具有中空内部空间和均匀厚度和形状的椭圆形纳米结构。细胞内共价酶组装产生了催化纳米机器,极大地扩大了类胡萝卜素生物合成的通量。这些研究还加深了我们对分层酶组装复杂性的理解。

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