Gallimore Andrew R
Dept. of Biochemistry, 80 Tennis Court Rd, Cambridge, CB2 1GA, UK.
Nat Prod Rep. 2009 Feb;26(2):266-80. doi: 10.1039/b807902c. Epub 2008 Nov 21.
The biosynthetic pathways to polyketide-derived polycyclic ethers, in bacteria, plants and marine organisms, have, until now, tended to be considered separately. The purpose of this article is to provide an integrated review of the common mechanistic aspects of polyether biosynthesis from these diverse sources. In particular, the focus will be on the proposed mechanisms of oxidative cyclisation, as well as on the known differences in polyketide chain construction between the terrestrial and marine polyethers.1 Introduction, 2 Fatty acid and polyketide biosynthesis, 3 Polyether ionophores, 4 The annonaceous acetogenins, 5 Marine polyethers, 6 Chain construction in polyether biosynthesis, 7 Acknowledgements, 8 References.
在细菌、植物和海洋生物中,聚酮衍生的多环醚的生物合成途径,迄今为止,往往被分开考虑。本文的目的是对来自这些不同来源的聚醚生物合成的共同机制方面进行综合综述。特别地,重点将放在氧化环化的拟议机制上,以及陆地和海洋聚醚之间聚酮链构建方面的已知差异。1引言,2脂肪酸和聚酮生物合成,3聚醚离子载体,4番荔枝科杀粉蝶菌素,5海洋聚醚,6聚醚生物合成中的链构建,7致谢,8参考文献。