Stankovic Nada, Senerovic Lidija, Ilic-Tomic Tatjana, Vasiljevic Branka, Nikodinovic-Runic Jasmina
Institute of Molecular Genetics and Genetic Engineering, University of Belgrade, Vojvode Stepe 444a, P.O. Box 23, 11000, Belgrade, Serbia.
Appl Microbiol Biotechnol. 2014 May;98(9):3841-58. doi: 10.1007/s00253-014-5590-1. Epub 2014 Feb 23.
The growing demand to fulfill the needs of present-day medicine in terms of novel effective molecules has lead to reexamining some of the old and known bacterial secondary metabolites. Bacterial prodigiosins (prodiginines) have a long history of being re markable multipurpose compounds, best examined for their anticancer and antimalarial activities. Production of prodigiosin in the most common producer strain Serratia marcescens has been described in great detail. However, few reports have discussed the ecophysiological roles of these molecules in the producing strains, as well as their antibiotic and UV-protective properties. This review describes recent advances in the production process, biosynthesis, properties, and applications of bacterial prodigiosins. Special emphasis is put on undecylprodigiosin which has generally been a less studied member of the prodigiosin family. In addition, it has been suggested that proteins involved in undecylprodigiosin synthesis, RedG and RedH, could be a useful addition to the biocatalytic toolbox being able to mediate regio- and stereoselective oxidative cyclization. Judging by the number of recent references (216 for the 2007-2013 period), it has become clear that undecylprodigiosin and other bacterial prodigiosins still hold surprises in terms of valuable properties and applicative potential to medical and other industrial fields and that they still deserve continuing research curiosity.
为满足当代医学对新型有效分子的需求,人们对一些已知的古老细菌次级代谢产物进行了重新审视。细菌灵菌红素(灵菌红素类)长期以来一直是引人注目的多功能化合物,对其抗癌和抗疟活性的研究最为深入。已对最常见的生产菌株粘质沙雷氏菌中产灵菌红素的过程进行了详细描述。然而,很少有报道讨论这些分子在生产菌株中的生态生理作用,以及它们的抗生素和紫外线防护特性。本综述描述了细菌灵菌红素在生产过程、生物合成、特性及应用方面的最新进展。特别强调了十一烷基灵菌红素,它通常是灵菌红素家族中研究较少的成员。此外,有人提出,参与十一烷基灵菌红素合成的蛋白质RedG和RedH,可能是生物催化工具箱中有用的补充,能够介导区域和立体选择性氧化环化。从最近的参考文献数量(2007 - 2013年期间有216篇)来看,很明显,十一烷基灵菌红素和其他细菌灵菌红素在医学和其他工业领域的宝贵特性及应用潜力方面仍有惊喜之处,它们仍然值得持续的研究关注。