Harutyunyan Syuzanna R, Zhao Zhijian, Hartog Tim den, Bouwmeester Klaas, Minnaard Adriaan J, Feringa Ben L, Govers Francine
Department of Organic Chemistry and Molecular Inorganic Chemistry, Stratingh Institute, University of Groningen, Nijenborgh 4, 9747 AG, Groningen, The Netherlands.
Proc Natl Acad Sci U S A. 2008 Jun 24;105(25):8507-12. doi: 10.1073/pnas.0709289105. Epub 2008 Jun 16.
A Phytophthora mating hormone with an array of 1,5-stereogenic centers has been synthesized by using our recently developed methodology of catalytic enantioselective conjugate addition of Grignard reagents. We applied this methodology in a diastereo- and enantioselective iterative route and obtained two of the 16 possible stereoisomers of Phytophthora hormone alpha1. These synthetic stereoisomers induced the formation of sexual spores (oospores) in A2 mating type strains of three heterothallic Phytophthora species, P. infestans, P. capsici, and P. nicotianae but not in A1 mating type strains. The response was concentration-dependent, and the oospores were viable. These results demonstrate that the biological activity of the synthetic hormone resembles that of the natural hormone alpha1. Mating hormones are essential components in the sexual life cycle of a variety of organisms. For plant pathogens like Phytophthora, sexual reproduction is important as a source of genetic variation. Moreover, the thick-walled oospores are the most durable propagules that can survive harsh environmental conditions. Sexual reproduction can thus greatly affect disease epidemics. The availability of synthetic compounds mimicking the activity of Phytophthora mating hormone will be instrumental for further unravelling sexual reproduction in this important group of plant pathogens.
利用我们最近开发的格氏试剂催化对映选择性共轭加成方法,合成了一种具有一系列1,5-手性中心的疫霉交配激素。我们将该方法应用于非对映和对映选择性迭代路线,获得了疫霉激素α1的16种可能立体异构体中的两种。这些合成立体异构体在致病疫霉、辣椒疫霉和烟草疫霉这三种异宗配合疫霉物种的A2交配型菌株中诱导有性孢子(卵孢子)的形成,但在A1交配型菌株中则不会。这种反应是浓度依赖性的,且卵孢子是有活力的。这些结果表明,合成激素的生物活性与天然激素α1相似。交配激素是多种生物体有性生活周期中的重要组成部分。对于像疫霉这样的植物病原体来说,有性生殖作为遗传变异的来源很重要。此外,厚壁卵孢子是最持久的繁殖体,能够在恶劣环境条件下存活。因此,有性生殖会极大地影响疾病流行。模拟疫霉交配激素活性的合成化合物的可得性,将有助于进一步揭示这类重要植物病原体的有性生殖过程。