倍半和二萜合成酶介导的9-氧- fpp醚衍生物生物转化的化学酶促生成氧-萜类化合物。

IF 2.9 3区 生物学 Q3 BIOCHEMISTRY & MOLECULAR BIOLOGY Biochemistry Biochemistry Pub Date : 2025-01-21 Epub Date: 2024-12-28 DOI:10.1021/acs.biochem.4c00589
Henry Struwe, Trang Nguyen, Svenja Schwörer, Jörn Droste, Hanke Spinck, Andreas Kirschning
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引用次数: 0

摘要

在第5位增加一个氧原子的法尼基焦磷酸衍生物被证明非常适合扩大倍半萜合成酶(STSs)的底物杂乱性和形成新的含氧萜类。然而,在第9位插入一个氧原子会造成更大的限制,导致STSs的接受受到限制。为了减少这些限制,设计了两个末端烯烃双键周围改变取代模式的fpp -醚衍生物。这些结果表明,对不同的STSs的滥交有所改善。分离并表征了四个新的含包埋醚基团的环萜类化合物。在两个环烯醚的情况下,相应的“水解”产物,线性羟基醛,也被分离出来。有趣的是,所有的环化产物都起源于最初的1→12环化,这在天然焦磷酸法尼酯作为底物时是前所未有的。我们发现,最合适的FPP衍生物在第9位添加了一个氧,末端烯烃上不携带任何甲基,当活性位点采用环化的首选构象时,这可能会减少空间拥塞。
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Chemoenzymatic Formation of Oxa-Terpenoids by Sesqui- and Diterpene Synthase-Mediated Biotransformations with 9-Oxy-FPP Ether Derivatives.

Farnesyl pyrophosphate derivatives bearing an additional oxygen atom at position 5 proved to be very suitable for expanding the substrate promiscuity of sesquiterpene synthases (STSs) and the formation of new oxygenated terpenoids. Insertion of an oxygen atom in position 9, however, caused larger restraints that led to restricted acceptance by STSs. In order to reduce some of the proposed restrictions, two FPP-ether derivatives with altered substitution pattern around the terminal olefinic double bond were designed. These showed improved promiscuity toward different STSs. Four new cyclized terpenoids with an embedded ether group were isolated and characterized. In the case of two cyclic enol ethers, also the corresponding "hydrolysis" products, linear hydroxyaldehydes, were isolated. Interestingly, all cyclization products originate from an initial 1 → 12 cyclization unprecedented when native farnesyl pyrophosphate serves as a substrate. We found that the most suitable FPP derivative with an additional oxygen at position 9 does not carry any methyl group on the terminal alkene, which likely reduces steric congestion when the preferred conformation for cyclization is adopted in the active site.

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来源期刊
Biochemistry Biochemistry
Biochemistry Biochemistry 生物-生化与分子生物学
CiteScore
5.50
自引率
3.40%
发文量
336
审稿时长
1-2 weeks
期刊介绍: Biochemistry provides an international forum for publishing exceptional, rigorous, high-impact research across all of biological chemistry. This broad scope includes studies on the chemical, physical, mechanistic, and/or structural basis of biological or cell function, and encompasses the fields of chemical biology, synthetic biology, disease biology, cell biology, nucleic acid biology, neuroscience, structural biology, and biophysics. In addition to traditional Research Articles, Biochemistry also publishes Communications, Viewpoints, and Perspectives, as well as From the Bench articles that report new methods of particular interest to the biological chemistry community.
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