首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Choline monooxygenase an unusual iron-sulfur enzyme catalyzing the first step of glycine betaine synthesis in plants: Prosthetic group characterization and cDNA cloning
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Choline monooxygenase an unusual iron-sulfur enzyme catalyzing the first step of glycine betaine synthesis in plants: Prosthetic group characterization and cDNA cloning

机译:胆碱单加氧酶一种不寻常的铁硫酶催化植物中甘氨酸甜菜碱合成的第一步:修复基团表征和cDNA克隆

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摘要

Plants synthesize the osmoprotectant glycine betaine via the route choline → betaine aldehyde → glycine betaine. In spinach, the first step is catalyzed by choline monooxygenase (CMO), a ferredoxin-dependent stromal enzyme that has been hypothesized to be an oligomer of identical subunits and to be an Fe-S protein. Analysis by HPLC and matrix-assisted laser desorption ionization MS confirmed that native CMO contains only one type of subunit (Mr 42,864). Determination of acid-labile sulfur and nonheme iron demonstrated that there is one [2Fe-2S] cluster per subunit, and EPR spectral data indicated that this cluster is of the Rieske type—i.e., coordinated by two Cys and two His ligands. A full-length CMO cDNA (1,622 bp) was cloned from spinach using a probe generated by PCR amplification for which the primers were based on internal peptide sequences. The ORF encoded a 440-amino acid polypeptide that included a 60-residue transit peptide. The deduced amino acid sequence included two Cys-His pairs spaced 16 residues apart, a motif characteristic of Rieske-type Fe-S proteins. Larger regions that included this motif also showed some sequence similarity (≈40%) to Rieske-type proteins, particularly bacterial oxygenases. Otherwise there was very little similarity between CMO and proteins from plants or other organisms. RNA and immunoblot analyses showed that the expression of CMO in leaves increased several-fold during salinization. We conclude that CMO is a stress-inducible representative of a new class of plant oxygenases.
机译:植物通过胆碱→甜菜碱醛→甘氨酸甜菜碱的途径合成了渗透保护剂甘氨酸甜菜碱。在菠菜中,第一步是胆碱单加氧酶(CMO)催化,胆碱单加氧酶是一种依赖铁氧还蛋白的基质酶,据推测是相同亚基的寡聚体,并且是Fe-S蛋白。通过HPLC和基质辅助激光解吸电离MS进行的分析证实,天然CMO仅包含一种类型的亚基(Mr 42,864)。对酸不稳定的硫和非血红素铁的测定表明,每个亚基有一个[2Fe-2S]簇,EPR光谱数据表明,该簇属于Rieske类型,即由两个Cys和两个His配体协调。使用通过PCR扩增产生的探针从菠菜克隆全长CMO cDNA(1,622 bp),该探针的引物基于内部肽序列。 ORF编码一个440个氨基酸的多肽,其中包含60个残基的转运肽。推导的氨基酸序列包括两个Cys-His对,相距16个残基,这是Rieske型Fe-S蛋白的特征基序。包含此基序的较大区域还显示出与Rieske型蛋白(尤其是细菌氧化酶)的序列相似性(约40%)。否则,CMO与植物或其他生物的蛋白质之间几乎没有相似性。 RNA和免疫印迹分析表明,盐渍化过程中叶片中CMO的表达增加了几倍。我们得出的结论是,CMO是一类新的植物氧化酶的胁迫诱导代表。

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