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