Improving the bioconversion of phytosterols to 9α-hydroxy-4-androstene-3,17-dione by disruption of acyltransferase SucT and TmaT associated with the mycobacterial cell wall synthesis.

IF 4 3区 生物学 Q2 BIOTECHNOLOGY & APPLIED MICROBIOLOGY World journal of microbiology & biotechnology Pub Date : 2024-10-15 DOI:10.1007/s11274-024-04165-x
Xinxin Chen, Bo Zhang, Xiaohan Jiang, Zhiqiang Liu, Yuguo Zheng
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Abstract

The bioconversion of low value-added phytosterols into high value-added 9α-hydroxy-4-androstene-3,17-dione (9-OHAD) in Mycolicibacterium neoaurum is a representative step in the steroid pharmaceutical industry. However, the complex mycobacterial cell walls with extremely low permeability and flowability greatly decrease the overall conversion efficiency. Herein, we preliminarily identified two key acyltransferases encoded by Mn_TmaT and Mn_SucT required for the proper synthesis of cell wall in mycobacteria and achieved a significant increase in cell permeability by disrupting them without affecting the cell wall structural stability. At length, the destruction of Mn_TmaT and Mn_SucT alone increased the conversion rate of 9-OHAD from 45.3% (6.67 ± 0.39 g/L) to 62.4% (9.19 ± 0.58 g/L) and 67.9% (10.02 ± 0.62 g/L) while the continuous destruction of Mn_TmaT and Mn_SucT did not further improve the conversion efficiency of 9-OHAD. Notably, it was investigated that the continuous destruction of Mn_TmaT and Mn_SucT led to alterations in both the covalent and non-covalent binding layers of the cell wall, resulting in excessive changes in cell morphology and structure, which ultimately decreased 9-OHAD production. Therefore, this study deciphered a pivotal biosynthetic path of cell wall and provided an efficient and feasible construction strategy of 9-OHAD synthesis in mycobacteria.

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通过破坏与霉菌细胞壁合成相关的酰基转移酶 SucT 和 TmaT,改善植物甾醇到 9α-hydroxy-4 androstene-3,17-dione 的生物转化。
在新金牛霉菌(Mycolicibacterium neoaurum)中将低附加值的植物甾醇生物转化为高附加值的 9α-羟基-4-雄烯-3,17-二酮(9-OHAD),是甾体制药工业的一个代表性步骤。然而,复杂的分枝杆菌细胞壁具有极低的渗透性和流动性,大大降低了整体转化效率。在此,我们初步确定了分枝杆菌细胞壁正常合成所需的 Mn_TmaT 和 Mn_SucT 编码的两个关键酰基转移酶,并在不影响细胞壁结构稳定性的前提下,通过破坏它们实现了细胞渗透性的显著提高。最终,单独破坏 Mn_TmaT 和 Mn_SucT 可使 9-OHAD 的转化率从 45.3% (6.67 ± 0.39 g/L) 提高到 62.4% (9.19 ± 0.58 g/L) 和 67.9% (10.02 ± 0.62 g/L),而持续破坏 Mn_TmaT 和 Mn_SucT 并不能进一步提高 9-OHAD 的转化效率。值得注意的是,研究发现持续破坏 Mn_TmaT 和 Mn_SucT 会导致细胞壁的共价结合层和非共价结合层发生变化,导致细胞形态和结构发生过度变化,最终降低 9-OHAD 的产量。因此,本研究破译了细胞壁的关键生物合成途径,为分枝杆菌合成 9-OHAD 提供了高效可行的构建策略。
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来源期刊
World journal of microbiology & biotechnology
World journal of microbiology & biotechnology 工程技术-生物工程与应用微生物
CiteScore
6.30
自引率
2.40%
发文量
257
审稿时长
2.5 months
期刊介绍: World Journal of Microbiology and Biotechnology publishes research papers and review articles on all aspects of Microbiology and Microbial Biotechnology. Since its foundation, the Journal has provided a forum for research work directed toward finding microbiological and biotechnological solutions to global problems. As many of these problems, including crop productivity, public health and waste management, have major impacts in the developing world, the Journal especially reports on advances for and from developing regions. Some topics are not within the scope of the Journal. Please do not submit your manuscript if it falls into one of the following categories: · Virology · Simple isolation of microbes from local sources · Simple descriptions of an environment or reports on a procedure · Veterinary, agricultural and clinical topics in which the main focus is not on a microorganism · Data reporting on host response to microbes · Optimization of a procedure · Description of the biological effects of not fully identified compounds or undefined extracts of natural origin · Data on not fully purified enzymes or procedures in which they are applied All articles published in the Journal are independently refereed.
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