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寻找参与木质素生物合成的拟南芥过氧化物酶。

Looking for Arabidopsis thaliana peroxidases involved in lignin biosynthesis.

机构信息

Department of Plant Biology, University of Alcalá, E-28871 Alcalá de Henares, Madrid, Spain.

Department of Plant Biology, Complutense University, E-28040 Madrid, Spain.

出版信息

Plant Physiol Biochem. 2013 Jun;67:77-86. doi: 10.1016/j.plaphy.2013.02.019. Epub 2013 Mar 15.

Abstract

Monolignol polymerization into lignin is catalyzed by peroxidases or laccases. Recently, a Zinnia elegans peroxidase (ZePrx) that is considered responsible for monolignol polymerization in this plant has been molecularly and functionally characterized. Nevertheless, Arabidopsis thaliana has become an alternative model plant for studies of lignification, filling the gaps that may occur with Z. elegans. The arabidopsis genome offers the possibility of performing bioinformatic analyses and data mining that are not yet feasible with other plant species, in order to obtain preliminary evidence on the role of genes and proteins. In our search for arabidopsis homologs to the ZePrx, we performed an exhaustive in silico characterization of everything from the protein to the transcript of Arabidopsis thaliana peroxidases (AtPrxs) homologous to ZePrx, with the aim of identifying one or more peroxidases that may be involved in monolignol polymerization. Nine peroxidases (AtPrx 4, 5, 52, 68, 67, 36, 14, 49 and 72) with an E-value greater than 1e-80 with ZePrx were selected for this study. The results demonstrate that a high level of 1D, 2D and 3D homology between these AtPrxs and ZePrx are not always accompanied by the presence of the same electrostatic and mRNA properties that indicate a peroxidase is involved in lignin biosynthesis. In summary, we can confirm that the peroxidases involved in lignification are among AtPrx 4, 52, 49 and 72. Their structural and mRNA features indicate that exert their action in the cell wall similar to ZePrx.

摘要

木质素的单体聚合是由过氧化物酶或漆酶催化的。最近,一种被认为负责该植物中单体聚合的百日草过氧化物酶(ZePrx)已被分子和功能上进行了表征。然而,拟南芥已成为木质素形成研究的替代模式植物,填补了百日草可能出现的空白。拟南芥基因组提供了进行生物信息学分析和数据挖掘的可能性,而这些在其他植物物种中是不可行的,以便获得基因和蛋白质作用的初步证据。在寻找拟南芥与 ZePrx 同源物的过程中,我们对拟南芥过氧化物酶(AtPrx)的蛋白质和转录物进行了详尽的计算特征分析,目的是鉴定一个或多个可能参与单体聚合的过氧化物酶。有 9 种过氧化物酶(AtPrx 4、5、52、68、67、36、14、49 和 72)与 ZePrx 的 E 值大于 1e-80,被选为本次研究的对象。结果表明,这些 AtPrx 与 ZePrx 之间存在高水平的 1D、2D 和 3D 同源性,但并不总是伴随着相同的静电和 mRNA 特性,表明过氧化物酶参与木质素生物合成。总之,我们可以确认参与木质素形成的过氧化物酶在 AtPrx 4、52、49 和 72 中。它们的结构和 mRNA 特征表明,它们在细胞壁中的作用类似于 ZePrx。

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