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甲基-β-环糊精对植物甾醇微生物转化中基因表达的影响。

Effect of methyl-β-cyclodextrin on gene expression in microbial conversion of phytosterol.

作者信息

Shtratnikova Victoria Y, Schelkunov Mikhail I, Dovbnya Dmitry V, Bragin Eugeny Y, Donova Marina V

机构信息

A.N. Belozersky Research Institute of Physico-Chemical Biology, M.V. Lomonosov Moscow State University, Leninskie gory, h. 1, b. 40, Moscow, Russian Federation, 119991.

Russian Academy of Sciences, Institute for Information Transmission Problems, Bolshoy Karetny per., h. 19, b. 1, Moscow, Russian Federation, 127051.

出版信息

Appl Microbiol Biotechnol. 2017 Jun;101(11):4659-4667. doi: 10.1007/s00253-017-8288-3. Epub 2017 Apr 18.

Abstract

Modified β-cyclodextrins are widely used for the enhancement of microbial conversions of lipophilic compounds such as steroids. Multiple mechanisms of cyclodextrin-mediated enhancement of phytosterol bioconversion by mycobacteria had previously been shown to include steroid solubilization, alterations in the cell wall permeability for both steroids and nutrients, facilitation of protein leaking, and activity suppression of some steroid-transforming enzymes.In this work, we studied whether cyclodextrins might affect expression of the genes involved in the steroid catabolic pathway. Phytosterol bioconversion with 9α-hydroxy-androst-4-ene-3,17-dione accumulation by Mycobacterium sp. VKM Ac-1817D in the presence of methylated β-cyclodextrin (MCD) was investigated. RNA sequencing of the whole transcriptomes in different combinations of phytosterol and MCD showed a similar expression level of the steroid catabolism genes related to the KstR-regulon and was responsible for side chain and initial steps of steroid core oxidation; whereas, induction levels of the genes related to the KstR2-regulon were attenuated in the presence of MCD in this strain. The data were attenuated with quantitative real-time PCR.The results contribute to the understanding of cyclodextrin effects on microbial steroid conversion and provide a basis for the use of cyclodextrins as expression enhancers for studies of sterol catabolism in actinobacteria.

摘要

改性β-环糊精被广泛用于增强微生物对亲脂性化合物(如甾体)的转化。先前已证明环糊精介导的分枝杆菌增强植物甾醇生物转化的多种机制包括甾体增溶、甾体和营养物质细胞壁通透性的改变、促进蛋白质泄漏以及抑制某些甾体转化酶的活性。在这项工作中,我们研究了环糊精是否可能影响甾体分解代谢途径中相关基因的表达。研究了在甲基化β-环糊精(MCD)存在下,分枝杆菌VKM Ac-1817D进行植物甾醇生物转化并积累9α-羟基雄甾-4-烯-3,17-二酮的情况。对植物甾醇和MCD不同组合下的全转录组进行RNA测序,结果表明与KstR-调控子相关的甾体分解代谢基因表达水平相似,且该调控子负责甾体核心氧化的侧链和起始步骤;然而,在该菌株中,MCD存在时与KstR2-调控子相关的基因诱导水平减弱。通过定量实时PCR对数据进行了验证。这些结果有助于理解环糊精对微生物甾体转化的影响,并为使用环糊精作为表达增强剂来研究放线菌中的甾醇分解代谢提供了依据。

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