Institute of Biological Chemistry, Washington State University, Pullman, WA 99164-6340, USA.
Phytochemistry. 2010 Mar;71(4):373-9. doi: 10.1016/j.phytochem.2009.12.002. Epub 2010 Jan 14.
Cytochrome P450 mono-oxygenases from peppermint, spearmint and perilla (all members of the family Lamiaceae) mediate the regiospecific hydroxylation of the parent olefin (-)-limonene to produce essential oil components oxygenated at C3, C6 and C7, respectively. Cloning, expression and mutagenesis of cDNAs encoding the peppermint limonene-3-hydroxylase and the spearmint limonene-6-hydroxylase have allowed the identification of a single amino acid residue which determines the regiospecificity of oxygenation by these two enzymes. A hybridization strategy provided a cytochrome P450 limonene hydroxylase cDNA from perilla with which to further evaluate the structural determinants of regiospecificity for oxygenation of the common substrate (-)-limonene. The perilla cDNA was a partial clone of 1550bp (lacking the N-terminal membrane insertion domain), and shared 66% identity with the peppermint 3-hydroxylase and spearmint 6-hydroxylase at the amino acid level. The perilla cytochrome P450 was expressed in Escherichia coli as a chimeric protein fused with the N-terminal membrane insertion domain of the limonene-3-hydroxylase. The kinetically competent recombinant protein was characterized and shown to produce a mixture of C3-, C6- and C7-hydroxylated limonene derivatives with a distribution of 33%, 14% and 53%, respectively.
薄荷、留兰香和紫苏(均属于唇形科)细胞色素 P450 单加氧酶能够使母体烯烃(-)-柠檬烯发生区域特异性羟化,分别生成在 C3、C6 和 C7 位含氧的精油成分。薄荷柠檬烯-3-羟化酶和留兰香柠檬烯-6-羟化酶的 cDNA 的克隆、表达和突变,鉴定出一个单一的氨基酸残基,该残基决定了这两种酶的氧合区域特异性。杂交策略从紫苏获得了细胞色素 P450 柠檬烯羟化酶 cDNA,用于进一步评估氧合常见底物(-)-柠檬烯的区域特异性的结构决定因素。紫苏 cDNA 是一个缺少 N 端跨膜插入结构域的 1550bp 的部分克隆,在氨基酸水平上与薄荷 3-羟化酶和留兰香 6-羟化酶的同源性为 66%。紫苏细胞色素 P450 作为与柠檬烯-3-羟化酶的 N 端跨膜插入结构域融合的嵌合蛋白在大肠杆菌中表达。该具有动力学能力的重组蛋白得到了表征,证明其能生成 C3-、C6-和 C7-羟化柠檬烯衍生物的混合物,分布分别为 33%、14%和 53%。