羽扇豆类三萜生物转化

Q3 Agricultural and Biological Sciences OnLine Journal of Biological Sciences Pub Date : 2024-01-01 DOI:10.3844/ojbsci.2024.138.146
Zhumadilov Sayat Sagatovich, Bakibaev Abdigali Abdimanapovich, Zhadan Konstantin Vasilevich, Kartbayeva Gulnaz Tolymbekovna, Kassenov Rymchan Zeinollaevich, Ramazanov Alibek Kairidenovich, Yerniyazova Bibizhan Bakytzhanovna, Kusherbayev Sultan Asanbaevich
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引用次数: 0

摘要

:近年来,有关羽扇豆类三萜的生物转化过程积累了大量科学材料。本综述的新颖之处在于对这些工作进行了总结,为未来的研究人员分析和确定了最合适的生物催化剂,并介绍了新衍生物的发展趋势。本综述考虑了最常见羽扇豆类三萜代表的已知生物转化实例。此外,还分析了从角鲨烯开始的生物合成途径。本研究讨论了利用真菌、细菌和植物细胞培养物进行生物转化的各种方法。将白桦脂转化为白桦脂酸是一个特别甚至是极其有趣的过程。细胞色素 P450 负责催化氧化反应,而空气中的氧气是氧化剂。这些酶的表达和活性是产品产量的关键因素。基本上,任何给定的羽扇豆型三萜类化合物都可以通过 P450 单氧化酶进行转化。遗憾的是,P450 催化剂依赖血红素和 NAD (P) H,因此使用分离的酶无法进行生物转化。因此,整个细胞催化过程是通过形成酸、酮或其他氧化产物来完成的。真菌细胞培养物,尤其是 Cunninghamella blakesleeana、Armillaria luteo-virens 和 Rhodotorula mucilaginosa 的转化率最高。此外,真菌细胞对羽扇豆型三萜类化合物的抗菌活性具有耐受性。因此,真菌是最成功的生物转化生物催化剂。本研究的最后一部分探讨了羽扇豆型三萜类化合物在原药和化妆品等方面的应用。它明确指出了获得新的有用衍生物的发展前景。
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Lupane-Type Triterpenoids Biotransformation
: A lot of scientific material has been accumulated in recent years about the biotransformation processes of lupine-type triterpenoids. The novelty of this review is the summary of these works, the analysis and identification of the most suitable biocatalysts for future researchers, and the presentation of development trends for new derivatives. The known biotransformation examples of the most common lupine-type triterpenoid representatives are considered. Analysis of their biosynthesis pathways starting with squalene is included also. Various approaches in this study are discussed to biotransformation using fungi, bacteria, and plant cell cultures. The conversion of betulin to betulinic acid is a process of special, even extreme interest. Cytochromes P450 are responsible for the catalysis of oxidation reactions while air oxygen is the oxidizer. The expression and activity of these enzymes are crucial factors for product yield. Basically, any given lupine-type triterpenoid can be transformed with P450 monooxygenases. Sadly, P450 catalysts are heme and NAD (P) H-dependent thus using isolated enzymes is not an option for biotransformation. So the whole-cell catalytic processes are completed by the formation of acids, ketones, or other oxidized products. Fungi cell cultures especially Cunninghamella blakesleeana , Armillaria luteo-virens, and Rhodotorula mucilaginosa are characterized by one of the highest conversion rates. Also, fungi cells are tolerant to the antibacterial activity of lupine-type triterpenoids. Thus fungi are the most successful biocatalysts for biotransformation. Applications of lupane-type triterpenoids such as pro-drugs and cosmetics are addressed in the final part of this study. It has clearly indicated development prospects for obtaining new useful derivatives.
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来源期刊
OnLine Journal of Biological Sciences
OnLine Journal of Biological Sciences Agricultural and Biological Sciences-Agricultural and Biological Sciences (all)
CiteScore
2.10
自引率
0.00%
发文量
35
期刊介绍: :: Cell biology :: Developmental biology :: Structural biology :: Microbiology :: Molecular biology & genetics :: Biochemistry :: Biotechnology :: Biodiversity :: Ecology :: Marine biology :: Plant biology :: Bioinformatics
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