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方案
≥97.5% (HPLC)
表单
liquid
光学纯度
enantiomeric excess: ≥90.0%
适用性
conforms to structure for Proton NMR spectrum
储存温度
−20°C
SMILES字符串
CC1(C)O[C@H]1CC/C(C)=C/CC/C(C)=C/CC/C=C(C)/CC/C=C(C)/CCC=C(C)C
InChI
1S/C30H50O/c1-24(2)14-11-17-27(5)20-12-18-25(3)15-9-10-16-26(4)19-13-21-28(6)22-23-29-30(7,8)31-29/h14-16,20-21,29H,9-13,17-19,22-23H2,1-8H3/b25-15+,26-16+,27-20+,28-21+/t29-/m0/s1
InChI key
QYIMSPSDBYKPPY-RSKUXYSASA-N
应用
- 猪肝2,3-氧化角鲨烯甾醇环化酶对2,3-氧化角鲨烯类似物的不同催化行为。Alain Krief及其同事讨论了氧化角鲨烯环化酶在与不同氧化角鲨烯类似物相互作用时的不同催化行为,表明了其对甾醇生产效率和特异性的影响(Krief et al., 2021)。
生化/生理作用
(S)-2,3-环氧角鲨烯是许多代谢途径的中间产物,如类固醇生物合成、倍半萜和三萜类生物合成、植物次生代谢物生物合成、萜类和类固醇生物合成、植物激素生物合成、次生代谢物生物合成以及抗生素生物合成。
储存分类代码
10 - Combustible liquids
WGK
WGK 3
闪点(°F)
Not applicable
闪点(°C)
Not applicable
Z Shi et al.
Proceedings of the National Academy of Sciences of the United States of America, 91(15), 7370-7374 (1994-07-19)
The ERG7 gene encoding oxidosqualene-lanosterol cyclase [(S)-2,3-epoxysqualene mutase (cyclizing, lanosterol forming), EC 5.4.99.7] from Saccharomyces cerevisiae has been cloned by genetic complementation of a cyclase-deficient erg7 strain. The DNA sequence of this gene has been determined and found to contain
Xudong Han et al.
Frontiers in oncology, 10, 1549-1549 (2020-10-20)
Glioblastoma, also known as glioblastoma multiforme (GBM), is the most malignant form of glioma and represents 81% of malignant brain and central nervous system (CNS) tumors. Like most cancers, GBM causes metabolic recombination to promote cell survival, proliferation, and invasion
Enzymatic cyclization of squalene and oxidosqualene to sterols and triterpenes.
Abe, I., et al.
Chemical Reviews, 93, 2189-2206 (1993)
Deletion of the Gly600 residue of Alicyclobacillus acidocaldarius squalene cyclase alters the substrate specificity into that of the eukaryotic-type cyclase specific to (3S)-2,3-oxidosqualene.
Tsutomu Hoshino et al.
Angewandte Chemie (International ed. in English), 43(48), 6700-6703 (2004-12-14)
Dorianne A Castillo et al.
Journal of the American Chemical Society, 135(15), 5885-5894 (2013-04-11)
Plants allocate an estimated 15-25% of their proteome to specialized metabolic pathways that remain largely uncharacterized. Here, we describe a genome mining strategy for exploring such unknown pathways and demonstrate this approach for triterpenoids by functionally characterizing three cytochrome P450s
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