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核糖核苷酸还原酶小亚基 RNRM 的过表达可提高转化蛹虫草中的虫草素生物合成。

Overexpression of ribonucleotide reductase small subunit, RNRM, increases cordycepin biosynthesis in transformed Cordyceps militaris.

机构信息

Key Laboratory of Standardization of Chinese Medicine, Ministry of Education; Key Laboratory of Systematic Research, Development and Utilization of Chinese Medicine, Resources Breeding Base of Co-founded by Sichuan Province and MOST, Chengdu University of Traditional Chinese Medicine, Chengdu 611137, China.

USDA, ARS, Western Regional Research Center, Albany, CA 94710, USA.

出版信息

Chin J Nat Med. 2020 May;18(5):393-400. doi: 10.1016/S1875-5364(20)30046-7.

Abstract

Cordycepin was the first adenosine analogue used as an anticancer and antiviral agent, which is extracted from Cordyceps militaris and hasn't been biosynthesized until now. This study was first conducted to verify the role of ribonucleotide reductases (RNRs, the two RNR subunits, RNRL and RNRM) in the biosynthesis of cordycepin by over expressing RNRs genes in transformed C. militaris. Quantitative real-time PCR (qRT-PCR) and western blotting results showed that the mRNA and protein levels of RNR subunit genes were significantly upregulated in transformant C. militaris strains compared to the control strain. The results of the HPLC assay indicated that the cordycepin was significantly higher in the C. militaris transformants carrying RNRM than in the wild-type strain, whereas the RNRML was preferentially downregulated. For the C. militaris transformant carrying RNRL, the content of cordycepin wasn't remarkably changed. Furthermore, we revealed that inhibiting RNRs with Triapine (3-AP) almost abrogated the upregulation of cordycepin. Therefore, our results suggested that RNRM can probably directly participate in cordycepin biosynthesis by hydrolyzing adenosine, which is useful for improving cordycepin synthesis and helps to satisfy the commercial demand of cordycepin in the field of medicine.

摘要

蛹虫草素是第一种被用作抗癌和抗病毒药物的腺嘌呤类似物,它是从蛹虫草中提取的,到目前为止还没有生物合成。本研究首先通过在转化的蛹虫草中过表达 RNR 基因,验证核昔酸还原酶(RNRs,两个 RNR 亚基,RNRL 和 RNRM)在蛹虫草素生物合成中的作用。定量实时 PCR(qRT-PCR)和 Western blot 结果显示,与对照菌株相比,转化蛹虫草菌株中 RNR 亚基基因的 mRNA 和蛋白水平显著上调。HPLC 分析结果表明,携带 RNRM 的蛹虫草转化体中的蛹虫草素含量明显高于野生型菌株,而 RNRML 则被优先下调。对于携带 RNRL 的蛹虫草转化体,蛹虫草素的含量没有明显变化。此外,我们还发现用 Triapine(3-AP)抑制 RNRs 几乎完全阻断了蛹虫草素的上调。因此,我们的结果表明,RNRM 可能通过水解腺昔直接参与蛹虫草素的生物合成,这有助于提高蛹虫草素的合成,有助于满足医学领域对蛹虫草素的商业需求。

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