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提高分枝杆菌中 22-羟基-23,24-双降胆甾-4-烯-3-酮的产量。

Improving the production of 22-hydroxy-23,24-bisnorchol-4-ene-3-one in Mycolicibacterium smegmatis.

机构信息

Department of Microbial and Plant Biotechnology, Centro de Investigaciones Biológicas Margarita Salas (CSIC), Madrid, Spain.

Advanced Biofuels and Bioproducts Unit, Department of Energy, Centro de Investigaciones Energéticas, Medioambientales y Tecnológicas (CIEMAT), Madrid, Spain.

出版信息

Microb Biotechnol. 2024 Aug;17(8):e14551. doi: 10.1111/1751-7915.14551.

Abstract

The 22-hydroxy-23,24-bisnorchol-4-ene-3-one (4-HBC) is a C22 steroid synthon of pharmaceutical interest that can be produced as a lateral end-product of the catabolism of natural sterols (e.g., cholesterol or phytosterols). This work studies the role of an aldehyde dehydrogenase coded by the MSMEG_6563 gene of Mycolicibacterium smegmatis, named msRed, in 4-HBC production. This gene is located contiguously to the MSMEG_6561 encoding the aldolase msSal which catalyses the retroaldol elimination of acetyl-CoA of the metabolite intermediate 22-hydroxy-3-oxo-cholest-4-ene-24-carboxyl-CoA to deliver 3-oxo-4-pregnene-20-carboxyl aldehyde (3-OPA). We have demonstrated that msRed reduces 3-OPA to 4-HBC. Moreover, the role of msOpccR reductase encoded by MSMEG_1623 was also explored confirming that it also performs the reduction of 3-OPA into 4-HBC, but less efficiently than msRed. To obtain a M. smegmatis 4-HBC producer strain we deleted MSMEG_5903 (hsd4A) gene in strain MS6039-5941 (ΔkshB1, ΔkstD1) that produces 4-androstene-3,17-dione (AD) from natural sterols (cholesterol or phytosterols). The triple MS6039-5941-5903 mutant was able to produce 9 g/L of 4-HBC from 14 g/L of phytosterols in 2 L bioreactor, showing a productivity of 0.140 g/L h. To improve the metabolic flux of sterols towards the production of 4-HBC we have cloned and overexpressed the msSal and msRed enzymes in the MS6039-5941-5903 mutant rendering a production titter of 12.7 g/L with a productivity of 0.185 g/L h, and demonstrating that the new recombinant strain has a great potential for its industrial application.

摘要

22-羟基-23,24-双降胆甾-4-烯-3-酮(4-HBC)是一种具有医药应用前景的 C22 甾体合成前体,可以作为天然甾醇(如胆固醇或植物甾醇)代谢的侧产物产生。本工作研究了分枝杆菌 MSMEG_6563 基因编码的醛脱氢酶 msRed 在 4-HBC 生产中的作用。该基因与编码醛缩酶 msSal 的 MSMEG_6561 基因紧密相邻,msSal 催化代谢中间产物 22-羟基-3-氧代胆甾-4-烯-24-羧酸辅酶 A 的反醛缩酶消除,生成 3-氧代-4-孕烯-20-羧酸醛(3-OPA)。我们已经证明 msRed 将 3-OPA 还原为 4-HBC。此外,还探索了 MSMEG_1623 编码的 msOpccR 还原酶的作用,证实它也能将 3-OPA 还原为 4-HBC,但效率低于 msRed。为了获得一株能够生产 4-HBC 的分枝杆菌,我们在从天然甾醇(胆固醇或植物甾醇)生产 4-雄烯-3,17-二酮(AD)的 MS6039-5941(ΔkshB1,ΔkstD1)菌株中缺失 MSMEG_5903(hsd4A)基因。三重突变株 MS6039-5941-5903 能够从 14 g/L 的植物甾醇中生产 9 g/L 的 4-HBC,在 2 L 生物反应器中,生产力为 0.140 g/L/h。为了提高甾醇向 4-HBC 生产的代谢通量,我们在 MS6039-5941-5903 突变株中克隆并过表达了 msSal 和 msRed 酶,生产能力达到 12.7 g/L,生产力为 0.185 g/L/h,表明新的重组菌株具有很大的工业应用潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/006f/11333196/e25a4963ecc8/MBT2-17-e14551-g005.jpg

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