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Evolution of novel O-methyltransferases from the Vanilla planifolia caffeic acid O-methyltransferase

机译:香草平叶咖啡酸O-甲基转移酶的新型O-甲基转移酶的进化

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The biosynthesis of many plant secondary compounds involves the methylation of one or more hydroxyl groups, catalyzed by O-methyltransferases (OMTs). Here, we report the characterization of two OMTs, Van OMT-2 and Van OMT-3, from the orchid Vanilla planifolia Andrews. These enzymes catalyze the methylation of a single outer hydroxyl group in substrates possessing a 1,2,3-trihydroxybenzene moiety, such as methyl gallate and myricetin. This is a substrate requirement not previously reported for any OMTs. Based on sequence analysis these enzymes are most similar to caffeic acid O-methyltransferases (COMTs), but they have negligible activity with typical COMT substrates. Seven of 12 conserved substrate-binding residues in COMTs are altered in Van OMT-2 and Van OMT-3. Phylogenetic analysis of the sequences suggests that Van OMT-2 and Van OMT-3 evolved from the V. planifolia COMT. These V. planifolia OMTs are new instances of COMT-like enzymes with novel substrate preferences.
机译:许多植物次级化合物的生物合成涉及一个或多个羟基的甲基化,该甲基化由O-甲基转移酶(OMT)催化。在这里,我们报道了来自兰花香草香草安德鲁斯的两种OMT的特征,即Van OMT-2和Van OMT-3。这些酶催化具有1,2,3-三羟基苯部分(例如没食子酸甲酯和杨梅素)的底物中单个外部羟基的甲基化。这是以前未针对任何OMT报告的基材要求。根据序列分析,这些酶与咖啡酸O-甲基转移酶(COMT)最相似,但与典型的COMT底物相比,其活性可忽略不计。在Van OMT-2和Van OMT-3中,COMT中12个保守的底物结合残基中有7个被改变。序列的系统发育分析表明Van OMT-2和Van OMT-3是从V.planifolia COMT进化而来的。这些V. Planifolia OMTs是具有新型底物偏好的COMT样酶的新实例。

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