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一种基于荧光激活细胞分选技术生产甲萘醌-7的高通量筛选策略。

A High-Throughput Screening Strategy for Producing Menaquinone-7 Based on Fluorescence-Activated Cell Sorting.

作者信息

Yang Lina, Tang Can, Cui Yan, Zhang Jianhua

机构信息

School of Agriculture and Biology, Bor S. Luh Food Safety Research Center, Shanghai Jiao Tong University, Shanghai 200240, China.

NMPA Key Laboratory for Testing Technology of Pharmaceutical, Shanghai Institute for Food and Drug Control, Shanghai 201203, China.

出版信息

Microorganisms. 2025 Feb 27;13(3):536. doi: 10.3390/microorganisms13030536.

Abstract

Menaquinone-7 (MK-7) is recognized for its important biological activity, and is the preferred strain for its fermentative production. However, the limited phenotypic diversity among high-yielding strains complicates the development of rapid screening methods. To address this, we utilized the effect of MK-7 on transmembrane potential to develop a high-throughput screening (HTS) strategy for efficiently identifying strains with improved MK-7 production. Among various membrane potential fluorescent dyes tested, Rhodamine 123 was selected for quantifying intracellular MK-7 levels due to its effective staining and minimal impact on cell growth. By optimizing pretreatment protocols and staining conditions, we established an HTS protocol that combines fluorescence-activated cell sorting with HPLC to identify strains with increased MK-7 production. A linear correlation was observed between mean MK-7 content and average fluorescence intensity (R = 0.9646). This approach was applied to mutant libraries generated through atmospheric room temperature plasma mutagenesis. After three cycles of mutagenesis and screening, the mutant AR03-27 was identified, showing an 85.65% increase in MK-7 yield compared to the original SJTU2 strain. Resequencing analysis revealed that the top three mutants contained mutations in genes related to membrane transport, suggesting their potential role in enhancing MK-7 yield.

摘要

甲基萘醌-7(MK-7)因其重要的生物活性而受到认可,并且是其发酵生产的首选菌株。然而,高产菌株之间有限的表型多样性使快速筛选方法的开发变得复杂。为了解决这个问题,我们利用MK-7对跨膜电位的影响,开发了一种高通量筛选(HTS)策略,以有效鉴定MK-7产量提高的菌株。在测试的各种膜电位荧光染料中,由于罗丹明123染色效果好且对细胞生长影响最小,因此选择它来定量细胞内MK-7水平。通过优化预处理方案和染色条件,我们建立了一种将荧光激活细胞分选与高效液相色谱相结合的HTS方案,以鉴定MK-7产量增加的菌株。观察到平均MK-7含量与平均荧光强度之间存在线性相关性(R = 0.9646)。该方法应用于通过常压室温等离子体诱变产生的突变体文库。经过三轮诱变和筛选,鉴定出突变体AR03-27,与原始SJTU2菌株相比,其MK-7产量提高了85.65%。重测序分析表明,排名前三的突变体在与膜转运相关的基因中存在突变,表明它们在提高MK-7产量方面具有潜在作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6293/11946230/a9ce96ac376c/microorganisms-13-00536-g001.jpg

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