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巯基的甲基化:一类小分子植物 O-甲基转移酶的新功能。

Methylation of sulfhydryl groups: a new function for a family of small molecule plant O-methyltransferases.

作者信息

Coiner Heather, Schröder Gudrun, Wehinger Elke, Liu Chang-Jun, Noel Joseph P, Schwab Wilfried, Schröder Joachim

机构信息

TU München, FG Biomolekulare Lebensmitteltechnologie, Lise-Meitner-Str. 34, D-85354 Freising, Germany.

出版信息

Plant J. 2006 Apr;46(2):193-205. doi: 10.1111/j.1365-313X.2006.02680.x.

Abstract

In plants, type I and II S-adenosyl-l-methionine-dependent O-methyltransferases (OMTs) catalyze most hydroxyl group methylations of small molecules. A homology-based RT-PCR strategy using Catharanthus roseus (Madagascar periwinkle) RNA previously identified six new type I plant OMT family members. We now describe the molecular and biochemical characterization of a seventh protein. It shares 56-58% identity with caffeic acid OMTs (COMTs), but it failed to methylate COMT substrates, and had no activity with flavonoids. However, the in vitro incubations revealed unusually high background levels without added substrates. A search for the responsible component revealed that the enzyme methylated dithiothreitol (DTT), the reducing agent added for enzyme stabilization. Unexpectedly, product analysis revealed that the methylation occurred on a sulfhydryl moiety, not on a hydroxyl group. Analysis of 34 compounds indicated a broad substrate range, with a preference for small hydrophobic molecules. Benzene thiol (Km 220 microm) and furfuryl thiol (Km 60 microm) were the best substrates (6-7-fold better than DTT). Small isosteric hydrophobic substrates with hydroxyl groups, like phenol and guaiacol, were also methylated, but the activities were at least 5-fold lower than with thiols. The enzyme was named C. roseus S-methyltransferase 1 (CrSMT1). Models based on the COMT crystal structure suggest that S-methylation is mechanistically identical to O-methylation. CrSMT1 so far is the only recognized example of an S-methyltransferase in this protein family. Its properties indicate that a few changes in key residues are sufficient to convert an OMT into a S-methyltransferase (SMT). Future functional investigations of plant methyltransferases should consider the possibility that the enzymes may direct methylation at sulfhydryl groups.

摘要

在植物中,I型和II型依赖S-腺苷-L-甲硫氨酸的O-甲基转移酶(OMT)催化大多数小分子的羟基甲基化反应。先前利用长春花(马达加斯加长春花)RNA通过基于同源性的逆转录聚合酶链式反应(RT-PCR)策略鉴定出6个新的I型植物OMT家族成员。我们现在描述第7种蛋白的分子和生化特性。它与咖啡酸OMT(COMT)有56 - 58%的同一性,但它不能使COMT底物甲基化,并且对类黄酮没有活性。然而,体外孵育显示在不添加底物的情况下背景水平异常高。对相关成分的研究发现该酶使二硫苏糖醇(DTT)甲基化,DTT是为稳定酶而添加的还原剂。出乎意料的是,产物分析表明甲基化发生在巯基部分,而非羟基上。对34种化合物的分析表明其底物范围广泛,偏好小的疏水分子。苯硫酚(Km为220微摩尔)和糠硫醇(Km为60微摩尔)是最佳底物(比DTT好6 - 7倍)。带有羟基的小的等排疏水底物,如苯酚和愈创木酚,也能被甲基化,但活性比硫醇底物至少低5倍。该酶被命名为长春花S-甲基转移酶1(CrSMT1)。基于COMT晶体结构的模型表明S-甲基化在机制上与O-甲基化相同。CrSMT1是该蛋白家族中目前唯一被认可的S-甲基转移酶实例。其特性表明关键残基的一些变化足以将OMT转变为S-甲基转移酶(SMT)。未来对植物甲基转移酶的功能研究应考虑到这些酶可能催化巯基甲基化的可能性。

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