Substrate preferences of O-methyltransferases in alfalfa suggest new pathways for 3-O-methylation of monolignols.

K. Parvathi, Fang Chen, D. Guo, J. Blount, R. Dixon
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引用次数: 175

Abstract

Measurement of relative O-methyltransferase activities against all potential substrates in the monolignol pathway in developing alfalfa stem extracts revealed activities in the order: caffeoyl CoA > caffeoyl alcohol > 5-hydroxyferulic acid > caffeoyl aldehyde > 5-hydroxyconiferyl alcohol > 5-hydroxyferuloyl CoA > 5-hydroxyconiferaldehyde > caffeic acid. Maxima for all activities occurred in the seventh internode. In stem extracts from transgenic alfalfa with antisense downregulated caffeoyl CoA O-methyltransferase (CCoAOMT), activities with all substrates except for the two coenzyme A esters were unaffected. In contrast, downregulation of caffeic acid O-methyltransferase (COMT) reduced activities against the non-esterifed substrates in the order: 5-hydroxyconiferyl alcohol > 5-hydroxyferulic acid and caffeoyl alcohol > caffeoyl aldehyde > caffeic acid > 5-hydroxyconiferaldehyde. Recombinant COMT expressed in Escherichia coli exhibited the highest V(max)/K(m) values with 5-hydroxyconiferaldehyde and caffeoyl aldehyde, and the lowest with caffeic acid. These results indicate that COMT is unlikely to methylate caffeic acid during lignin biosynthesis in vivo, and provide enzymatic evidence for an alternative pathway to monolignols involving methylation of caffeoyl aldehyde and/or caffeoyl alcohol by COMT. The concept of independent pathways to guaiacyl and syringyl monolignols is discussed.
紫花苜蓿o -甲基转移酶对底物的偏好为单脂醇3- o -甲基化提供了新的途径。
对紫花苜蓿茎提取物单酚途径中所有潜在底物的相对o -甲基转移酶活性测定显示,活性顺序为:咖啡酰基辅酶a >咖啡酰基醇> 5-羟基阿威酸>咖啡酰基醛> 5-羟基松柏醇> 5-羟基阿威酸辅酶a > 5-羟基松柏醛>咖啡酸。所有活动的最大值发生在第7节间。反义下调咖啡酰基辅酶A o -甲基转移酶(CCoAOMT)的转基因苜蓿茎提取物对除两种辅酶A酯外的所有底物的活性均不受影响。相反,下调咖啡酸o -甲基转移酶(COMT)对非酯化底物的活性降低的顺序为:5-羟基松柏醇> 5-羟基阿威酸和咖啡醇>咖啡醛>咖啡酸> 5-羟基松柏醛。重组COMT在大肠杆菌中表达的V(max)/K(m)值在5-羟基松柏醛和咖啡醛中最高,在咖啡酸中最低。这些结果表明,COMT在木质素生物合成过程中不太可能甲基化咖啡酸,并为COMT介导咖啡醛和/或咖啡醇甲基化的单木质素醇替代途径提供了酶学证据。讨论了愈创木酚和丁香基单脂醇的独立途径的概念。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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