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利用深红嗜盐菌的无细胞制剂进行酶促合成C40类胡萝卜素。

Enzymatic synthesis of C40 carotenes by cell-free preparation from Halobacterium cutirubrum.

作者信息

Kushwaha S C, Kates M, Porter J W

出版信息

Can J Biochem. 1976 Sep;54(9):816-23. doi: 10.1139/o76-117.

Abstract

[14C]Mevalonate or (14C)isopentenyl pyrophosphate was found to be converted to transphytoene, trans-phytofluene, lycopene, and beta-carotene by a cell-free 270 000 X g supernatant fraction prepared from Halobacterium cutirubrum cells that were broken by manual grinding with glass beads. Incubations were done under N2 in the dark at 37 degrees C in 4 M NaCl in presence of FAD, NADP, and MgCl2; ATP was also added when mevalonate was the substrate. This system was also capable of converting trans-(14C)phytoene to beta-carotene via the intermediates trans-phytofluene, zeta-carotene, neurosporene, lycopene, and gamma-carotene. Each of these labelled intermediates on incubation separately with the same enzyme system was shown to be converted to the intermediates farther down the pathway. The results of this study show that the biosynthetic pathway for the formation of C40 carotenes in H. cutirubrum proceeds as follows: isopentenyl pyrophosphate leads to trans-phytoene leads to trans-phytofluene leads to zeta-carotene leads to neurosporene leads to lycopene leads to gamma-carotene leads to beta-carotene. This pathway differs from that in higher plants in that the cis isomers of phytoene and phytofluene are not on the main pathway of carotene biosynthesis, as they are in higher plants. Furthermore, trans-phytoene, which has not been reported to have any role in higher plants, appears to be the main intermediate in carotene biosynthesis in H. cutirubrum.

摘要

通过用玻璃珠手动研磨破碎的红皮盐杆菌细胞制备的270000×g无细胞上清液组分,可将[14C]甲羟戊酸或(14C)异戊烯基焦磷酸转化为反式-八氢番茄红素、反式-六氢番茄红素、番茄红素和β-胡萝卜素。在氮气氛围、黑暗条件下,于37℃、4M氯化钠中,在黄素腺嘌呤二核苷酸(FAD)、烟酰胺腺嘌呤二核苷酸磷酸(NADP)和氯化镁存在的情况下进行孵育;当以甲羟戊酸为底物时,还添加了三磷酸腺苷(ATP)。该系统还能够通过反式-(14C)八氢番茄红素、ζ-胡萝卜素、神经孢烯、番茄红素和γ-胡萝卜素等中间体将反式-(14C)八氢番茄红素转化为β-胡萝卜素。这些标记的中间体中的每一种与相同的酶系统分别孵育时,均显示可转化为该途径下游的中间体。这项研究的结果表明,红皮盐杆菌中C40类胡萝卜素形成的生物合成途径如下:异戊烯基焦磷酸导致反式-八氢番茄红素导致反式-六氢番茄红素导致ζ-胡萝卜素导致神经孢烯导致番茄红素导致γ-胡萝卜素导致β-胡萝卜素。该途径与高等植物中的途径不同,因为八氢番茄红素和六氢番茄红素的顺式异构体不在类胡萝卜素生物合成的主要途径中,而在高等植物中是在主要途径中的。此外,在高等植物中尚未报道有任何作用的反式-八氢番茄红素,似乎是红皮盐杆菌中类胡萝卜素生物合成的主要中间体。

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