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首页> 外文期刊>Journal of industrial microbiology & biotechnology >Influence of hydroxypropyl-beta-cyclodextrin on phytosterol biotransformation by different strains of Mycobacterium neoaurum
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Influence of hydroxypropyl-beta-cyclodextrin on phytosterol biotransformation by different strains of Mycobacterium neoaurum

机译:羟丙基-β-环糊精对不同分枝新分枝杆菌植物甾醇生物转化的影响

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Cyclodextrins (CDs) can improve productivity in the biotransformation of steroids by increasing conversion rate, conversion ratio, or substrate concentration. However, little is known of the proportion of products formed by multi-catabolic enzymes, e.g., via sterol side chain cleavage. Using three strains with different androst-1,4-diene-3,17-dione (ADD) to androst-4-ene-3,17-dione (AD) ratios, Mycobacterium neoaurum TCCC 11028 (MNR), M. neoaurum TCCC 11028 M1 (MNR M1), and M. neoaurum TCCC 11028 M3 (MNR M3), we found that hydroxypropyl-beta-cyclodextrin (HP-beta-CD) can appreciably increase the ratio of ADD to AD, the reaction rate, and the molar conversion. In the presence of HP-beta-CD, conversion of 0.5 g/L of phytosterol (PS) was 2.4, 2.4, and 2.3 times higher in the MNR, MNR M1, and MNR M3 systems, respectively, than in the controls. The ADD proportion increased by 38.4, 61.5, and 5.9 % compared with the control experiment, which resulted in a strong shift in the ADD/AD ratio in the ADD direction. Our results imply that the three PS-biotransforming strains cause efficient side chain degradation of PS, and the increased conversion of PS when using HP-beta-CD may be associated with the higher PS concentration in each case. A similar solubilizing effect may not induce a prominent influence on the ADD/AD ratio. However, the different activities of the Delta(1)-dehydrogenase of PS-biotransforming strains result in different incremental percentage yields of ADD and ADD/AD ratio in the presence of HP-beta-CD.
机译:环糊精(CDs)可通过提高转化率,转化率或底物浓度来提高类固醇生物转化的生产率。然而,对于通过例如甾醇侧链裂解的多分解酶形成的产物的比例知之甚少。使用三种具有不同的Androst-1,4-diene-3,17-dione(ADD)与Androst-4-ene-3,17-dione(AD)比率的菌株,新分枝杆菌TCCC 11028(MNR),新分枝杆菌TCCC 11028 M1(MNR M1)和M. neoaurum TCCC 11028 M3(MNR M3),我们发现羟丙基-β-环糊精(HP-β-CD)可以显着增加ADD与AD的比例,反应速率和摩尔转化率。在存在HP-β-CD的情况下,在MNR,MNR M1和MNR M3系统中,植物甾醇(PS)的0.5 g / L的转化率分别比对照高2.4、2.4和2.3倍。与对照实验相比,ADD比例增加了38.4、61.5和5.9%,这导致ADD / AD比在ADD方向上发生了很大的变化。我们的结果暗示,这三种PS-生物转化菌株会导致PS高效侧链降解,并且在每种情况下使用HP-β-CD时PS转化率的提高可能与更高的PS浓度有关。类似的增溶作用可能不会对ADD / AD比产生显着影响。但是,PS-生物转化菌株的Delta(1)-脱氢酶的不同活性导致在存在HP-β-CD的情况下,ADD和ADD / AD比的增量产率不同。

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