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不同吸附树脂在间歇和半连续培养酿酒酵母细胞工厂生产抗癌药物紫杉醇的乙酰化紫杉烷前体中的协同作用。

The synergetic effect from the combination of different adsorption resins in batch and semi-continuous cultivations of S. Cerevisiae cell factories to produce acetylated Taxanes precursors of the anticancer drug Taxol.

机构信息

Institute for Bioengineering, University of Edinburgh, Edinburgh, UK.

Centre for Engineering Biology, University of Edinburgh, Edinburgh, UK.

出版信息

Biotechnol Bioeng. 2023 Aug;120(8):2160-2174. doi: 10.1002/bit.28487. Epub 2023 Jul 10.

Abstract

In situ product recovery is an efficient way to intensify bioprocesses as it can perform adsorption of the desired natural products in the cultivation. However, it is common to use only one adsorbent (liquid or solid) to perform the product recovery. For this study, the use of an in situ product recovery method with three combined commercial resins (HP-20, XAD7HP, and HP-2MG) with different chemical properties was performed. A new yeast strain of Saccharomyces cerevisiae was engineered using CRISPR Cas9 (strain EJ2) to deliver heterologous expression of oxygenated acetylated taxanes that are precursors of the anticancer drug Taxol ® (paclitaxel). Microscale cultivations using a definitive screening design (DSD) were set to get the best resin combinations and concentrations to retrieve high taxane titers. Once the best resin treatment was selected by the DSD, semi-continuous cultivation in high throughput microscale was performed to increase the total taxanes yield up to 783 ± 33 mg/L. The best T5α-yl Acetate yield obtained was up to 95 ± 4 mg/L, the highest titer of this compound ever reported by a heterologous expression. It was also observed that by using a combination of the resins in the cultivation, 8 additional uncharacterized taxanes were found in the gas chromatograms compared to the dodecane overlay method. Lastly, the cell-waste reactive oxygen species concentrations from the yeast were 1.5-fold lower in the resin's treatment compared to the control with no adsorbent aid. The possible future implications of this method could be critical for bioprocess intensification, allowing the transition to a semi-continuous flow bioprocess. Further, this new methodology broadens the use of different organisms for natural product synthesis/discovery benefiting from clear bioprocess intensification advantages.

摘要

原位产物回收是强化生物过程的有效方法,因为它可以在培养过程中吸附所需的天然产物。然而,通常只使用一种吸附剂(液体或固体)来进行产物回收。在这项研究中,使用了原位产物回收方法,结合了三种具有不同化学性质的商业树脂(HP-20、XAD7HP 和 HP-2MG)。使用 CRISPR Cas9(菌株 EJ2)工程改造了一种新型酿酒酵母菌株,以异源表达含氧乙酰化紫杉烷,这是抗癌药物 Taxol®(紫杉醇)的前体。使用确定性筛选设计(DSD)进行微尺度培养,以获得最佳树脂组合和浓度,以获得高紫杉烷滴度。通过 DSD 选择最佳树脂处理后,在高通量微尺度中进行半连续培养,将总紫杉烷产量提高到 783±33mg/L。获得的最佳 T5α-yl 乙酸酯产量高达 95±4mg/L,这是异源表达中该化合物的最高滴度。还观察到,通过在培养过程中使用树脂组合,可以在气相色谱图中发现 8 种额外的未鉴定紫杉烷,而不是使用正十二烷覆盖法。最后,与没有吸附剂辅助的对照相比,酵母细胞废物中的活性氧浓度在树脂处理中降低了 1.5 倍。这种方法的未来可能对生物过程强化具有重要意义,允许过渡到半连续流生物过程。此外,这种新方法拓宽了不同生物体用于天然产物合成/发现的用途,从清晰的生物过程强化优势中受益。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/05a3/10952759/0d13c61b4933/BIT-120-2160-g005.jpg

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