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Cloning and Molecular Characterization of the Basic Peroxidase Isoenzyme from Zinnia elegans an Enzyme Involved in Lignin Biosynthesis

机译:木质素生物合成酶百日草基本过氧化物酶同工酶的克隆与分子鉴定

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摘要

The major basic peroxidase from Zinnia elegans (ZePrx) suspension cell cultures was purified and cloned, and its properties and organ expression were characterized. The ZePrx was composed of two isoforms with a Mr (determined by matrix-assisted laser-desorption ionization time of flight) of 34,700 (ZePrx34.70) and a Mr of 33,440 (ZePrx33.44). Both isoforms showed absorption maxima at 403 (Soret band), 500, and 640 nm, suggesting that both are high-spin ferric secretory class III peroxidases. Mr differences between them were due to the glycan moieties, and were confirmed from the total similarity of the N-terminal sequences (LSTTFYDTT) and by the 99.9% similarity of the tryptic fragment fingerprints obtained by reverse-phase nano-liquid chromatography. Four full-length cDNAs coding for these peroxidases were cloned. They only differ in the 5′-untranslated region. These differences probably indicate different ways in mRNA transport, stability, and regulation. According to the kcat and apparent KmRH values shown by both peroxidases for the three monolignols, sinapyl alcohol was the best substrate, the endwise polymerization of sinapyl alcohol by both ZePrxs yielding highly polymerized lignins with polymerization degrees ≥87. Western blots using anti-ZePrx34.70 IgGs showed that ZePrx33.44 was expressed in tracheary elements, roots, and hypocotyls, while ZePrx34.70 was only expressed in roots and young hypocotyls. None of the ZePrx isoforms was significantly expressed in either leaves or cotyledons. A neighbor-joining tree constructed for the four full-length cDNAs suggests that the four putative paralogous genes encoding the four cDNAs result from duplication of a previously duplicated ancestral gene, as may be deduced from the conserved nature and conserved position of the introns.
机译:纯化并克隆了百日草(ZePrx)悬浮细胞培养物中的主要碱性过氧化物酶,并对其特性和器官表达进行了表征。 ZePrx由两个同工型组成,Mr(由基质辅助激光解吸电离飞行时间确定)为34,700(ZePrx34.70),Mr为33,440(ZePrx33.44)。两种同工型均在403(Soret谱带),500和640 nm处显示最大吸收,表明它们都是高自旋的铁分泌III类过氧化物酶。它们之间的先生差异是由于聚糖部分引起的,并且由N末端序列(LSTTFYDTT)的总相似性和通过反相纳米液相色谱法获得的胰蛋白酶片段指纹的99.9%相似性所证实。克隆了编码这些过氧化物酶的四个全长cDNA。它们仅在5'非翻译区不同。这些差异可能表明mRNA转运,稳定性和调节的不同方式。根据两种过氧化物酶对三种单木酚的kcat值和表观Km RH 值,认为芥子醇是最好的底物,两种ZePrx对芥子醇的最终聚合反应可得到高度聚合的木质素,聚合度≥87 。使用抗ZePrx34.70 IgG的蛋白质印迹显示,ZePrx33.44在气管元件,根和下胚轴中表达,而ZePrx34.70仅在根和幼树下胚轴中表达。 ZePrx亚型均未在叶片或子叶中显着表达。为四个全长cDNA构建的邻居连接树表明,编码这四个cDNA的四个推定的旁系同源基因是由先前复制的祖先基因的重复产生的,这可以从内含子的保守性质和保守位置推导出来。

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