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无细胞生物合成含氯、烯和炔基团的赖氨酸衍生的非天然氨基酸。

Cell-Free Biosynthesis of Lysine-Derived Unnatural Amino Acids with Chloro, Alkene, and Alkyne Groups.

机构信息

School of Physical Science and Technology, ShanghaiTech University, Shanghai 201210, China.

出版信息

ACS Synth Biol. 2023 Apr 21;12(4):1349-1357. doi: 10.1021/acssynbio.3c00132. Epub 2023 Apr 11.

DOI:10.1021/acssynbio.3c00132
PMID:37040607
Abstract

Crude extract-based cell-free expression systems have been used to produce natural products by reconstitution of their biosynthetic pathways . However, the chemical scope of cell-free synthesized natural compounds is still limited, which is partially due to the length of biosynthetic gene clusters. To expand the product scope, here, we report cell-free biosynthesis of several lysine-derived unnatural amino acids with functional moieties such as chloro, alkene, and alkyne groups. Specifically, five related enzymes (i.e., halogenase, oxidase, lyase, ligase, and hydroxylase) involved in β-ethynylserine biosynthesis are selected for cell-free expression. These enzymes can be expressed in single, in pairs, or in trios to synthesize different compounds, including, for instance, 4-Cl-l-lysine, 4-Cl-allyl-l-glycine, and l-propargylglycine. The final product of γ-l-glutamyl-l-β-ethynylserine (a dipeptide with an alkyne group) can also be synthesized by cell-free expression of the full biosynthetic pathway (i.e., five enzymes). Our results demonstrate the flexibility of cell-free systems, enabling easy regulation and rational optimization for target compound formation. Overall, this work expands not only the type of enzymes (e.g., halogenase) but also the scope of natural products (e.g., terminal-alkyne amino acid) that can be rapidly produced in cell-free systems. With the development of cell-free biotechnology, we envision that cell-free strategies will create a new frontier for natural product biosynthesis.

摘要

基于粗提物的无细胞表达系统已被用于通过重建其生物合成途径来生产天然产物。然而,无细胞合成的天然化合物的化学范围仍然有限,这部分是由于生物合成基因簇的长度。为了扩大产物范围,在这里,我们报告了几种赖氨酸衍生的具有功能部分(如氯、烯烃和炔烃基团)的非天然氨基酸的无细胞生物合成。具体来说,选择了涉及β-乙炔基丝氨酸生物合成的五种相关酶(即卤化酶、氧化酶、裂合酶、连接酶和羟化酶)进行无细胞表达。这些酶可以单独、成对或成组表达,以合成不同的化合物,例如 4-Cl-l-赖氨酸、4-Cl-烯丙基-l-甘氨酸和 l-炔丙基甘氨酸。γ-l-谷氨酰-l-β-乙炔基丝氨酸(具有炔烃基团的二肽)的最终产物也可以通过全生物合成途径(即五种酶)的无细胞表达来合成。我们的结果表明无细胞系统具有灵活性,能够轻松调节和合理优化目标化合物的形成。总的来说,这项工作不仅扩展了酶的类型(例如卤化酶),而且还扩展了无细胞系统中可以快速生产的天然产物的范围(例如末端炔基氨基酸)。随着无细胞生物技术的发展,我们设想无细胞策略将为天然产物生物合成创造一个新的前沿。

相似文献

1
Cell-Free Biosynthesis of Lysine-Derived Unnatural Amino Acids with Chloro, Alkene, and Alkyne Groups.无细胞生物合成含氯、烯和炔基团的赖氨酸衍生的非天然氨基酸。
ACS Synth Biol. 2023 Apr 21;12(4):1349-1357. doi: 10.1021/acssynbio.3c00132. Epub 2023 Apr 11.
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Discovery of a pathway for terminal-alkyne amino acid biosynthesis.末端炔基氨基酸生物合成途径的发现。
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Terminal Alkyne Biosynthesis in Marine Microbes.海洋微生物中的末端炔烃生物合成
Methods Enzymol. 2018;604:89-112. doi: 10.1016/bs.mie.2018.01.040. Epub 2018 Mar 12.
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Bacterial Genome Mining of Enzymatic Tools for Alkyne Biosynthesis.用于炔烃生物合成的酶工具的细菌基因组挖掘
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Discovery and Biosynthesis of Pepticinnamins G-M Featuring Three Enzymes-Catalyzed Nonproteinogenic Amino Acid Formation.发现和生物合成具有三种酶催化的非天然氨基酸形成的 Pepticinnamins G-M。
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Enzymatic Halogenation of Terminal Alkynes.末端炔烃的酶卤化反应。
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Recent advances in applying cell-free systems for high-value and complex natural product biosynthesis.无细胞系统在高价值和复杂天然产物生物合成中的应用进展。
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