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诱导工程化的前体代谢通量以在兽疫链球菌中合成定制分子量的透明质酸。

Inducible engineering precursor metabolic flux for synthesizing hyaluronic acid of customized molecular weight in Streptococcus zooepidemicus.

作者信息

Zhao Rui, Li Jun, Li Yingtian, Pei Xujuan, Di Jingyi, Xie Zhoujie, Liu Hao, Gao Weixia

机构信息

MOE Key Laboratory of Industrial Fermentation Microbiology, College of Biotechnology, Tianjin University of Science and Technology, Tianjin, 300457, P. R. China.

出版信息

Microb Cell Fact. 2025 Jan 18;24(1):24. doi: 10.1186/s12934-024-02624-6.

Abstract

BACKGROUND

Hyaluronic acid (HA) is extensively employed in various fields such as medicine, cosmetics, food, etc. The molecular weight (MW) of HA is crucial for its biological functions. Streptococcus zooepidemicus, a prominent HA industrial producer, naturally synthetizes HA with high MW. Currently, few effective approaches exist for the direct and precise regulation of HA MW through a one-step fermentation process, and S. zooepidemicus lacks metabolic regulatory elements with varying intensities. The ratio of HA's precursors, UDP-N-acetylglucosamine (UDP-GlcNAc) and UDP-glucuronic acid (UDP-GlcA), is critical for the extension and release of HA. An imbalance in the precursor proportions for HA synthesis leads to a significant decrease in HA MW, indicating that controlling the precursor ratio may serve as a potential method for regulating HA MW.

RESULTS

In this study, the type and concentration of carbon sources were manipulated to disrupt the balance of precursor supply. Based on the results, it was speculated that the transcription level of hasE, which may connect the two HA synthesis precursors, is positively correlated with HA MW. Consequently, an endogenous expression component library for S. zooepidemicus was constructed, comprising 32 constitutive and 4 inducible expression elements. The expression of hasE was subsequently regulated in strain SE0 (S12 ΔhasE) using two constitutive promoters of differing strengths. The recombinant strain SE1, in which hasE was controlled by the stronger promoter PR31, produced HA with a MW of 1.96 MDa. In contrast, SE2, utilizing the weaker promoter PR22, synthesized shorter HA with a MW of 1.63 MDa, thereby verifying the hypothesis. Finally, to precisely regulate HA MW according to specific demands, an efficient sucrose-induced expression system was screened and employed to control the transcription level of hasE, obtaining recombinant strain SE3. When induced with sucrose concentrations of 3, 5-10 g/L, the HA MW of SE3 reached 0.78 to 1.77 MDa, respectively.

CONCLUSIONS

Studies on regulating the balance of the HA precursor substances indicate that an oversupply of either UDP-GlcNAc or UDP-GlcUA can reduce HA MW. The hasE gene serves as a crucial regulator for maintaining this balance. Precise regulation of hasE transcription was achieved through an efficient inducible expression system, enabling the customized production of HA with specific MW. The HA MW of strain SE3 can be accurately manipulated by adjusting sucrose concentration, establishing a novel strategy for customized HA fermentation.

摘要

背景

透明质酸(HA)广泛应用于医学、化妆品、食品等各个领域。HA的分子量(MW)对其生物学功能至关重要。兽疫链球菌是一种重要的HA工业生产菌,能天然合成高分子量的HA。目前,通过一步发酵过程直接精确调控HA分子量的有效方法较少,且兽疫链球菌缺乏强度不同的代谢调控元件。HA的前体物质尿苷二磷酸-N-乙酰葡糖胺(UDP-GlcNAc)和尿苷二磷酸葡糖醛酸(UDP-GlcA)的比例对HA的延伸和释放至关重要。HA合成前体比例失衡会导致HA分子量显著降低,这表明控制前体比例可能是调控HA分子量的一种潜在方法。

结果

在本研究中,通过控制碳源的类型和浓度来打破前体供应的平衡。基于实验结果推测,可能连接两种HA合成前体的hasE的转录水平与HA分子量呈正相关。因此,构建了一个兽疫链球菌内源性表达元件文库,包括32个组成型和4个诱导型表达元件。随后,使用两个强度不同的组成型启动子在菌株SE0(S12 ΔhasE)中调控hasE的表达。重组菌株SE1中,hasE由较强的启动子PR31控制,产生的HA分子量为1.96 MDa。相比之下,利用较弱启动子PR22的SE2合成的HA较短,分子量为1.63 MDa,从而验证了该假设。最后,为了根据特定需求精确调控HA分子量,筛选并采用了一种高效的蔗糖诱导表达系统来控制hasE的转录水平,获得重组菌株SE3。当用3、5 - 10 g/L的蔗糖浓度诱导时,SE3的HA分子量分别达到0.78至1.77 MDa。

结论

调节HA前体物质平衡的研究表明,UDP-GlcNAc或UDP-GlcUA供应过量都会降低HA分子量。hasE基因是维持这种平衡的关键调节因子。通过高效的诱导表达系统实现了对hasE转录的精确调控,能够定制生产具有特定分子量的HA。通过调节蔗糖浓度可精确控制菌株SE3的HA分子量,为定制HA发酵建立了一种新策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1fa3/11748608/7b91c7115790/12934_2024_2624_Fig1_HTML.jpg

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