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利用混杂的微生物异戊烯基转移酶在酵母中合成异戊烯基柚皮素

Synthetic production of prenylated naringenins in yeast using promiscuous microbial prenyltransferases.

作者信息

Isogai Shota, Okahashi Nobuyuki, Asama Ririka, Nakamura Tomomi, Hasunuma Tomohisa, Matsuda Fumio, Ishii Jun, Kondo Akihiko

机构信息

Graduate School of Science, Technology and Innovation, Kobe University, 1-1 Rokkodai, Nada, Kobe, 657-8501, Japan.

Technology Research Association of Highly Efficient Gene Design (TRAHED), Kobe, Japan.

出版信息

Metab Eng Commun. 2021 Mar 19;12:e00169. doi: 10.1016/j.mec.2021.e00169. eCollection 2021 Jun.

Abstract

Reconstitution of prenylflavonoids using the flavonoid biosynthetic pathway and prenyltransferases (PTs) in microbes can be a promising attractive alternative to plant-based production or chemical synthesis. Here, we demonstrate that promiscuous microbial PTs can be a substitute for regiospecific but mostly unidentified botanical PTs. To test the prenylations of naringenin, we constructed a yeast strain capable of producing naringenin from l-phenylalanine by genomic integration of six exogenous genes encoding components of the naringenin biosynthetic pathway. Using this platform strain, various microbial PTs were tested for prenylnaringenin production. screening demonstrated that the fungal AnaPT (a member of the tryptophan dimethylallyltransferase family) specifically catalyzed C-3' prenylation of naringenin, whereas SfN8DT-1, a botanical PT, specifically catalyzed C-8 prenylation. , the naringenin-producing strain expressing the microbial AnaPT exhibited heterologous microbial production of 3'-prenylnaringenin (3'-PN), in contrast to the previously reported production of 8-prenylnaringenin (8-PN) using the botanical SfN8DT-1. These findings provide strategies towards expanding the production of a variety of prenylated compounds, including well-known prenylnaringenins and novel prenylflavonoids. These results also suggest the opportunity for substituting botanical PTs, both known and unidentified, that display relatively strict regiospecificity of the prenyl group transfer.

摘要

利用微生物中的类黄酮生物合成途径和异戊烯基转移酶(PTs)来重构异戊烯基黄酮类化合物,对于基于植物的生产或化学合成而言,可能是一种有前景且具吸引力的替代方法。在此,我们证明了混杂的微生物PTs可以替代区域特异性但大多未知的植物PTs。为了测试柚皮素的异戊烯基化反应,我们通过基因组整合六个编码柚皮素生物合成途径组分的外源基因,构建了一种能够从L-苯丙氨酸生产柚皮素的酵母菌株。利用该平台菌株,对各种微生物PTs进行了柚皮素异戊烯基化产物生产的测试。筛选表明,真菌AnaPT(色氨酸二甲基烯丙基转移酶家族的一员)特异性催化柚皮素的C-3'异戊烯基化,而植物PT SfN8DT-1则特异性催化C-8异戊烯基化。与之前报道的使用植物SfN8DT-1生产8-异戊烯基柚皮素(8-PN)不同,表达微生物AnaPT的柚皮素生产菌株实现了3'-异戊烯基柚皮素(3'-PN)的异源微生物生产。这些发现为扩大包括知名的异戊烯基柚皮素和新型异戊烯基黄酮类化合物在内的各种异戊烯基化化合物的生产提供了策略。这些结果还表明,有机会替代那些显示出相对严格的异戊烯基转移区域特异性的已知和未知植物PTs。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9af7/8040282/cb777bce5f01/gr1.jpg

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