Terras F R, Schoofs H M, De Bolle M F, Van Leuven F, Rees S B, Vanderleyden J, Cammue B P, Broekaert W F
F. A. Janssens Laboratory of Genetics, Catholic University of Leuven, Heverlee, Belgium.
J Biol Chem. 1992 Aug 5;267(22):15301-9.
Two novel classes of antifungal proteins were isolated from radish seeds. The first class consists of two homologous proteins (Rs-AFP1 and Rs-AFP2) that were purified to homogeneity. They are highly basic oligomeric proteins composed of small (5-kDa) polypeptides that are rich in cysteine. Both Rs-AFPs have a broad antifungal spectrum and are among the most potent antifungal proteins hitherto characterized. In comparison with many other plant antifungal proteins, the activity of the Rs-AFPs is less sensitive to the presence of cations. Moreover, their antibiotic activity shows a high degree of specificity to filamentous fungi. The amino-terminal regions of the Rs-AFPs show homology with the derived amino acid sequences of two pea genes specifically induced upon fungal attack, to gamma-thionins and to sorghum alpha-amylase inhibitors. The radish 2S storage albumins were identified as the second novel class of antifungal proteins. All isoforms inhibit growth of different plant pathogenic fungi and some bacteria. However, their antimicrobial activities are strongly antagonized by cations.
从萝卜种子中分离出了两类新型抗真菌蛋白。第一类由两种同源蛋白(Rs-AFP1和Rs-AFP2)组成,它们已被纯化至同质。它们是高度碱性的寡聚蛋白,由富含半胱氨酸的小(5 kDa)多肽组成。两种Rs-AFP都具有广泛的抗真菌谱,是迄今为止已鉴定出的最有效的抗真菌蛋白之一。与许多其他植物抗真菌蛋白相比,Rs-AFP的活性对阳离子的存在不太敏感。此外,它们的抗菌活性对丝状真菌表现出高度特异性。Rs-AFP的氨基末端区域与真菌攻击后特异性诱导的两个豌豆基因的推导氨基酸序列、γ-硫堇和高粱α-淀粉酶抑制剂具有同源性。萝卜2S贮藏白蛋白被鉴定为第二类新型抗真菌蛋白。所有同工型都能抑制不同植物病原真菌和一些细菌的生长。然而,它们的抗菌活性受到阳离子的强烈拮抗。