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PMID: 41821143 已发表 · ppublish 英语

Reprogramming Carbon Partition for Salidroside Overproduction in Saccharomyces cerevisiae.

ACS synthetic biology ·第 15 卷 ·第 4 期 ·2026-04-17

Li J, Li H, Dai X, Ma H, Ma C, Luo Y

摘要

Salidroside, a valuable plant-derived glycoside, holds great promise for nutraceutical and pharmaceutical applications. Although microbial biosynthesis has been established, further enhancement of its production faces a universal bottleneck in glycoside synthesis: the competition for the glycosyl donor UDP-glucose (UDPG) between essential cell wall construction and target product formation. To overcome this fundamental conflict, we constructed a high-yielding microbial cell factory through a systematic engineering strategy. We first rewired central metabolism via a thiamine diphosphate (ThDP) regeneration strategy to secure a high-level production of the precursor tyrosol. Subsequently, the introduction of a glycosyltransferase RrU8GT33 from Rhodiola rosea enabled the conversion of tyrosol to salidroside. To address the key limitation, we enhanced UDP-glucose availability by overexpressing UDP-glucose pyrophosphorylase (UGP1) and phosphoglucose mutase (PGM1), and most critically implemented cell wall engineering to dynamically redirect carbon flux from biomass synthesis toward salidroside production by regulating β-1,3-glucan synthase (FKS1) expression. This approach effectively decouples growth pressure from the synthesis demand. Subsequent engineering steps alleviated physiological constraints, yielding a robust production host. In a bioreactor fermentation, the final strain achieved a record-breaking salidroside titer of 40.46 g/L, with a productivity of 0.24 g/(L h) and a yield of 0.27 g/g glucose. This work demonstrates the efficacy of cofactor and cell wall engineering in optimizing glycoside production and provides a scalable strategy for the microbial manufacturing of high-value natural glycosides.

关键词
UDP-glucose pathway cell wall engineering cofactor engineering metabolic engineering salidroside
文献信息
期刊
ACS synthetic biology
期刊简称
ACS Synth Biol
ISSN
2161-5063
发表日期
2026-04-17
语言
英语
国家/地区
United States
NLM ID
101575075
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