Ogura K, Koyama T, Sagami H
Institute for Chemical Reaction Science, Tohoku University, Sendai, Japan.
Subcell Biochem. 1997;28:57-87. doi: 10.1007/978-1-4615-5901-6_3.
It is noteworthy that in spite of the similarity of the reactions catalyzed by these prenyltransferases, the modes of expression of catalytic function are surprisingly different, varying according to the chain length and stereochemistry of reaction products. These enzymes are summarized and classified into four groups, as shown in Figure 13. Short-chain prenyl diphosphates synthases such as FPP and GGPP synthases require no cofactor except divalent metal ions, Mg2+ or Mn2+, which are commonly required by all prenyl diphosphate synthases. Medium-chain prenyl diphosphate synthases, including the enzymes for the synthesis of all-E-HexPP and all-E-HepPP, are unusual because they each consist of two dissociable dissimilar protein components, neither of which has catalytic activity. The enzymes for the synthesis of long-chain all-E-prenyl diphosphates, including octaprenyl (C40), nonaprenyl-(C45), and decaprenyl (C50) diphosphates, require polyprenyl carrier proteins that remove polyprenyl products from the active sites of the enzymes to maintain efficient turnovers of catalysis. The enzymes responsible for Z-chain elongation include Z,E-nonaprenyl-(C45) and Z,E-undecaprenyl (C55) diphosphate synthases, which require a phospholipid. The classification of mammalian synthases seems to be fundamentally similar to that of bacterial synthases except that no medium-chain prenyl diphosphate synthases are included. The Z-prenyl diphosphate synthase in mammalian cells is dehydrodolichyl PP synthase, which catalyzes much longer chain elongations than do bacterial enzymes. Dehydrodolichyl PP synthase will be a major target of future studies in this field in view of its involvement in glycoprotein biosynthesis.
值得注意的是,尽管这些异戊二烯基转移酶催化的反应相似,但其催化功能的表达模式却惊人地不同,这取决于反应产物的链长和立体化学。如图13所示,这些酶被总结并分为四类。短链异戊二烯基二磷酸合酶,如FPP和GGPP合酶,除了二价金属离子Mg2+或Mn2+外不需要其他辅因子,而所有异戊二烯基二磷酸合酶通常都需要这些离子。中链异戊二烯基二磷酸合酶,包括用于合成全反式己烯基焦磷酸(HexPP)和全反式庚烯基焦磷酸(HepPP)的酶,不同寻常之处在于它们各自由两个可解离的不同蛋白质组分组成,且这两个组分都没有催化活性。用于合成长链全反式异戊二烯基二磷酸的酶,包括八异戊烯基(C40)、九异戊烯基(C45)和十异戊烯基(C50)二磷酸合酶,需要聚异戊二烯载体蛋白,该蛋白可将聚异戊二烯产物从酶的活性位点移除,以维持催化的高效周转。负责Z链延长的酶包括Z,E-九异戊烯基(C45)和Z,E-十一异戊烯基(C55)二磷酸合酶,它们需要一种磷脂。哺乳动物合酶的分类似乎与细菌合酶的分类基本相似,只是不包括中链异戊二烯基二磷酸合酶。哺乳动物细胞中的Z-异戊二烯基二磷酸合酶是脱氢多萜醇焦磷酸合酶,它催化的链延长比细菌酶长得多。鉴于脱氢多萜醇焦磷酸合酶参与糖蛋白生物合成,它将成为该领域未来研究的主要靶点。