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首页> 外文期刊>Plant and cell physiology >Apple Fruit Copper Amine Oxidase Isoforms: Peroxisomal MdAO1 Prefers Diamines as Substrates, Whereas Extracellular MdAO2 Exclusively Utilizes Monoamines
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Apple Fruit Copper Amine Oxidase Isoforms: Peroxisomal MdAO1 Prefers Diamines as Substrates, Whereas Extracellular MdAO2 Exclusively Utilizes Monoamines

机译:苹果果实铜胺氧化酶同工型:过氧化物酶体MdAO1首选二胺作为底物,而细胞外MdAO2独家利用单胺。

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摘要

4-Aminobutyrate (GABA) accumulates in apple fruit during controlled atmosphere storage. A potential source of GABA is the polyamine putrescine, which can be oxidized via copper-containing amine oxidase (CuAO), resulting in the production 4-aminobutanal/Delta(1)-pyrroline, with the consumption of O-2 and release of H2O2 and ammonia. Five putative CuAO genes (MdAO genes) were cloned from apple (Malus domestica Borkh. cv. Empire) fruit, and the deduced amino acid sequences found to contain the active sites typically conserved in CuAOs. Genes encoding two of these enzymes, MdAO1 and MdAO2, were highly expressed in apple fruit and selected for further analysis. Amino acid sequence analysis predicted the presence of a C-terminal peroxisomal targeting signal 1 tripeptide in MdAO1 and an N-terminal signal peptide and N-glycosylation site in MdAO2. Transient expression of green fluorescent fusion proteins in Arabidopsis protoplasts or onion epidermal cells revealed a peroxisomal localization for MdAO1 and an extracellular localization for MdAO2. The enzymatic activities of purified recombinant MdAO1 and MdAO2 were measured continuously as H2O2 production using a coupled reaction. MdAO1 did not use monoamines or polyamines and displayed high catalytic efficiency for 1,3-diaminopropane, putrescine and cadaverine, whereas MdAO2 exclusively utilized aliphatic and aromatic monoamines, including 2-phenylethylamine and tyramine. Together, these results indicate that MdAO1 may contribute to GABA production via putrescine oxidation in the peroxisome of apple fruit under controlled atmosphere conditions. MdAO2 seems to be involved in deamination of 2-phenylethylamine, which is a step in the biosynthesis of 2-phenylethanol, a contributor to fruit flavor and flower fragrance.
机译:在控制气氛的储存过程中,苹果果实中会堆积4-氨基丁酸(GABA)。 GABA的潜在来源是多胺腐胺,它可以通过含铜的胺氧化酶(CuAO)氧化,从而产生4-氨基丁醛/ Delta(1)-吡咯啉,消耗O-2和释放H2O2和氨。从苹果(Malus domestica Borkh.cv.Empire)果实中克隆了五个推定的CuAO基因(MdAO基因),发现推导的氨基酸序列包含通常在CuAOs中保守的活性位点。编码其中两种酶MdAO1和MdAO2的基因在苹果果实中高度表达,并选择用于进一步分析。氨基酸序列分析预测,MdAO1中存在C端过氧化物酶体靶向信号1三肽,MdAO2中存在N端信号肽和N-糖基化位点。拟南芥原生质体或洋葱表皮细胞中绿色荧光融合蛋白的瞬时表达揭示了MdAO1的过氧化物酶体定位和MdAO2的细胞外定位。使用偶联反应,连续测定纯化的重组MdAO1和MdAO2的酶活性,作为H2O2的产生。 MdAO1不使用单胺或多胺,对1,3-二氨基丙烷,腐胺和尸胺显示出高催化效率,而MdAO2仅使用脂肪族和芳香族单胺,包括2-苯基乙胺和酪胺。总之,这些结果表明,MdAO1可能在受控大气条件下通过苹果果实过氧化物酶体中的腐胺氧化来促进GABA的产生。 MdAO2似乎参与了2-苯基乙胺的脱氨基反应,这是生物合成2-苯基乙醇的步骤,2-苯基乙醇是水果风味和花香的重要来源。

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