Department of Plant Pathology, Cornell University, Ithaca, New York 14853.
Plant Physiol. 1989 Oct;91(2):559-66. doi: 10.1104/pp.91.2.559.
The isoflavonoid phytoalexin pisatin is synthesized by Pisum sativum in response to microbial infection and certain other forms of stress. An enzyme which synthesizes pisatin by methylating the 3-hydroxyl of (+)6a-hydroxymaackiain (HMK) was extracted from CuCl(2)-stressed pea seedlings. The enzyme was enriched 370-fold by (NH(4))(2)SO(4) precipitation, DEAE chromatography, chromatofocusing, and hydrophobic interaction chromatography (HIC), to a specific activity of 8.2 microkatals per gram protein. Enzyme activity profiles from chromatofocusing and HIC columns suggested the presence of two isozymes, of pl 5.2 and 4.9. Nondenaturing gel filtration of the HIC-purified enzyme gave a single peak of activity at the same elution volume as BSA (66 kilodaltons); the active fractions showed two proteins upon SDS-PAGE, of M(r) 66,000 and 43,000. The smaller protein was most abundant in chromatographic fractions containing peak enzyme activity throughout purification. In a partially purified preparation, this 43 kilodalton protein was the only one photoaffinity labelled by [(3)H]S-adenosyl-l-methionine. The purified enzyme preferred the (+) over the (-) stereoisomer of HMK and other pterocarpans; overall, (+)HMK was the best substrate. K(m) values were 2.3 micromolar for (+)HMK and 35 micromolar for S-adenosyl-l-methionine. The methyltransferase had a pH optimum of 7.9 and no apparent divalent cation requirement.
豌豆植物被微生物感染和某些其他形式的压力胁迫后会合成异黄酮植物抗毒素豌豆素。从 CuCl(2)胁迫处理的豌豆幼苗中提取到一种能够通过将(+)-6a-羟基马钱素(HMK)的 3-羟基甲基化来合成豌豆素的酶。该酶通过(NH(4))(2)SO(4)沉淀、DEAE 层析、等电聚焦和疏水相互作用层析(HIC)得到 370 倍的富集,比活达到 8.2 微卡/克蛋白。等电聚焦和 HIC 柱的酶活性图谱表明存在两种同工酶,等电点分别为 5.2 和 4.9。未经处理的凝胶过滤对 HIC 纯化的酶进行分析,其活性峰与 BSA(66 千道尔顿)的洗脱体积相同;活性部分在 SDS-PAGE 上显示出两种蛋白,分子量分别为 66000 和 43000。在整个纯化过程中,在含有最高酶活的色谱馏分中,小分子蛋白最为丰富。在部分纯化的制剂中,这种 43 千道尔顿的蛋白是唯一被[(3)H]S-腺苷甲硫氨酸标记的蛋白。该纯化酶优先选择(+)HMK 及其它紫檀烷的对映异构体,而非(-)异构体;总的来说,(+)HMK 是最好的底物。(+)HMK 的 K(m)值为 2.3 微摩尔,S-腺苷甲硫氨酸的 K(m)值为 35 微摩尔。该甲基转移酶的 pH 最适值为 7.9,没有明显的二价阳离子需求。