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巴氏醋杆菌无细胞体系对藿烷三萜的非特异性生物合成。

Non-specific biosynthesis of hopane triterpenes by a cell-free system from Acetobacter pasteurianum.

作者信息

Rohmer M, Anding C, Ourisson G

出版信息

Eur J Biochem. 1980 Dec;112(3):541-7. doi: 10.1111/j.1432-1033.1980.tb06117.x.

Abstract
  1. A cell-free system from the bacterium Acetobacter pasteurianum was incubated with [12-3H]squalene; diploptene and diplopterol, hopanoids normally present in the bacterium, were labelled. Their radioactivity was confirmed by purification using thin-layer chromatography, synthesis of derivatives and recrystallization to constant specific activity. This demonstrates the direct cyclization of squalene into diploptene and diplopterol, catalysed by a squalene cyclase activity in A. pasteurianum. 2. The same cell-free system transformed (RS)-2,3-epoxy-2,3-dihydro-[12,13-3H]squalene into labelled 3 alpha-hydroxyhop-22(29)-ene, 3 beta-hydroxyhop-22(29)-ene, hopane-3 alpha,22-diol and hopane-3 beta,22-diol. Their radioactivity was similarly confirmed. This bacterial homogenate is thus capable of cyclizing an unnatural substrate, 2,3-epoxy-squalene, into 3-hydroxyhopanoids normally absent in the bacterium. 3. The 3 alpha-hydroxy and 3 beta-hydroxyhopanoids could have been enzymatically interconverted via the 3-oxo compound. Synthetic racemic (RS)-2,3-epoxy-2,3-dihydro-[3-3H]squalene was incubated and gave rise to 3-3H-labelled 3 alpha and 3 beta-hydroxyhopanoids. This excludes an isomerization via a 3-oxo compound which would give unlabelled 3-hydroxyhopanoids. 4. In conclusion, the cyclase of A. pasteurianum accepts the replacement of the normal substrate, squalene, by the corresponding epoxide. Furthermore it is not selective in the stereochemistry of the epoxide and cyclizes both enantiomers, contrary to the epoxysqualene cyclase of eukaryotes.
摘要
  1. 将来自巴氏醋杆菌的无细胞体系与[12 - ³H]角鲨烯一起温育;该细菌中通常存在的类异戊二烯双萜烯和双萜醇被标记。通过薄层层析纯化、衍生物合成以及重结晶至恒定比活来确认它们的放射性。这证明了在巴氏醋杆菌中,角鲨烯在角鲨烯环化酶的催化下直接环化生成双萜烯和双萜醇。2. 相同的无细胞体系将(RS)-2,3 - 环氧 - 2,3 - 二氢 - [12,13 - ³H]角鲨烯转化为标记的3α - 羟基何帕 - 22(29)- 烯、3β - 羟基何帕 - 22(29)- 烯、何帕烷 - 3α,22 - 二醇和何帕烷 - 3β,22 - 二醇。同样通过确认它们的放射性来证实。因此,这种细菌匀浆能够将一种非天然底物2,3 - 环氧角鲨烯环化生成该细菌中通常不存在的3 - 羟基类异戊二烯。3. 3α - 羟基和3β - 羟基类异戊二烯可能通过3 - 氧代化合物进行酶促相互转化。将合成的外消旋(RS)-2,3 - 环氧 - 2,3 - 二氢 - [3 - ³H]角鲨烯进行温育,产生了3 - ³H标记的3α和3β - 羟基类异戊二烯。这排除了通过3 - 氧代化合物进行异构化的可能性,因为那样会产生未标记的3 - 羟基类异戊二烯。4. 总之,巴氏醋杆菌的环化酶接受相应环氧化物替代正常底物角鲨烯。此外,与真核生物的环氧角鲨烯环化酶相反,它对环氧化物的立体化学没有选择性,能将两种对映体都进行环化。

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