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Functional Characteristics of Caffeoyl Shikimate Esterase in Larix Kaempferi and Monolignol Biosynthesis in Gymnosperms

机译:落叶松中咖啡酰ki酸酯酯酶的功能特性和裸子植物单酚的生物合成。

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摘要

Caffeoyl shikimate esterase (CSE) has been reported to be involved in lignin biosynthesis; however, studies of CSE in gymnosperms are lacking. In this study, was successfully cloned from ( ) based on transcriptome screening. LkCSE was likely to have catalytic activity based on homologous sequence alignment and phylogenetic analyses of CSEs from different species. In vitro assays with the recombinant enzyme validated the catalytic activity of LkCSE, indicating its function in converting caffeoyl shikimate into caffeate and shikimate. Additionally, the optimum reaction pH and temperature of LkCSE were determined to be 6.0 and 30 °C, respectively. The values of and of CSE for caffeoyl shikimate were 98.11 μM and 14.44 nM min , respectively. Moreover, was observed to have tissue expression specificity and was abundantly expressed in stems and leaves, especially stems, which was 50 times higher than the expression levels of roots. Lastly, translational fusion assays using LkCSE fused with green fluorescent proteins (GFP) in tobacco leaves indicated that LkCSE was localized in the plasma membrane and endoplasmic reticulum (ER). These results revealed that CSE clearly functions in gymnosperms and it is possible for LkCSE to interact with other ER-resident proteins and regulate mass flux in the monolignol biosynthesis pathway.
机译:据报道,咖啡酰sh草酸酯酶(CSE)参与木质素的生物合成。但是,关于裸子植物中CSE的研究还很缺乏。在这项研究中,基于转录组筛选成功地从()克隆了该克隆。基于同源序列比对和不同物种的CSE的系统发育分析,LkCSE可能具有催化活性。用重组酶进行的体外试验验证了LkCSE的催化活性,表明其在将咖啡酰sh草酸酯转化为咖啡酸酯和sh草酸酯中的功能。另外,确定LkCSE的最佳反应pH和温度分别为6.0和30℃。咖啡酰sh草酸酯的CSE和CSE值分别为98.11μM和14.44 nM min。而且,观察到具有组织表达特异性,并且在茎和叶,特别是茎中大量表达,其比根的表达水平高50倍。最后,在烟草叶片中使用与绿色荧光蛋白(GFP)融合的LkCSE进行翻译融合测定表明,LkCSE位于质膜和内质网(ER)中。这些结果表明,CSE在裸子植物中具有明显的功能,LkCSE可能与其他ER驻留蛋白相互作用并调节单木酚生物合成途径中的质量通量。

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