首页> 外文期刊>The Biochemical Journal >4-Coumarate:coenzyme A ligase isoform 3 from Piper nigrum (Pn4CL3) catalyzes the CoA thioester formation of 3,4-methylenedioxycinnamic and piperic acids
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4-Coumarate:coenzyme A ligase isoform 3 from Piper nigrum (Pn4CL3) catalyzes the CoA thioester formation of 3,4-methylenedioxycinnamic and piperic acids

机译:4-香豆素:辅酶A切片酶同种型3来自吹笛者nigrum(pn4cl3)催化CoA毒素形成3,4-亚甲二杂霉素和哌啶酸

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摘要

Black pepper, dried green fruit of Piper nigrum L., is a household spice most popular in the world. Piperine, the pungency compound of black pepper, is proposed to partially arise from phenylpropanoid pathway. In the biosynthesis of piperine, 4-coumarate:CoA ligase (4CLs) must play a pivotal role in activating intermediate acids to corresponding CoA thioesters to serve as substrates. Based on transcriptome data, we isolated three P. nigrum 4CL isoforms (Pn4CL1, -2, and -3) from unripe peppercorn. These Pn4CLs were expressed in E. coli for in vitro enzyme assay with putative substrates, namely cinnamic, coumaric, ferulic, piperonylic, 3,4-methylenedioxycinnamic (3,4-MDCA), and piperic acids. Phylogenetic analysis and substrate usage study indicated that Pn4CL1, active towards coumaric and ferulic acids, belongs to class I 4CL for lignin synthesis. Pn4CL2 was a typical cinnamate-specific coumarate:CoA ligase-like (CLL) protein. The Pn4CL3, as class II enzyme, exhibited general 4CL activity towards coumaric and ferulic acids. However, Pn4CL3 was also active towards piperonylic acid, 3,4-MDCA, and piperic acid. Pn4CL3 possessed similar to 2.6 times higher catalytic efficiency (k(cat)/K-M) towards 3,4-MDCA and piperic acid than towards coumaric and ferulic acids, suggesting its specific role in piperine biosynthesis. Different substrate preference among the Pn4CL isoforms can be explained by 3-dimensional protein structure modeling, which demonstrated natural variants in amino acid residues of binding pocket to accommodate different substrates. Quantitative PCR analysis of these isoforms indicated that Pn4CL1 transcript level was highest in the roots whereas Pn4CL2 in the fruits and Pn4CL3 in the leaves.
机译:黑胡椒,胡椒L.的干燥绿色的果实,是一个家庭的香料在世界上最流行的。胡椒碱,​​黑胡椒的辛辣化合物,提出了从苯丙素途径部分地出现。在胡椒碱的生物合成,4-香豆酸:辅酶A连接酶(4CLs)必须激活中间氨基酸至对应的CoA硫酯作为底物发挥关键作用。基于转录的数据,我们从生胡椒分离3个P.葵4CL亚型(Pn4CL1,-2和-3)。这些Pn4CLs在大肠杆菌中与推定的底物,即肉桂酸,香豆酸,阿魏酸,胡椒基,3,4- methylenedioxycinnamic(3,4- MDCA),和piperic酸表示用于体外酶测定。系统发育分析和基板的使用研究表明Pn4CL1朝向香豆酸和阿魏酸活性,属于I类4CL木质素合成。 Pn4CL2是一个典型的肉桂酸酯特异性香豆酸:辅酶A连接酶样(CLL)蛋白。的Pn4CL3,如II类酶,显示出一般4CL活性朝香豆酸和阿魏酸。然而,Pn4CL3也朝胡椒基酸,3,4- MDCA,和胡椒酸活性。 Pn4CL3具有类似的2.6倍更高的催化效率(K(猫)/ K-M)向3,4- MDCA和胡椒酸比朝向香豆酸和阿魏酸,这表明在胡椒碱生物合成的其特定的作用。该同种型Pn4CL之间不同底物偏好可通过3维蛋白质结构建模,这表明天然变体中的结合口袋,以适应不同的基板的氨基酸残基进行说明。这些异构体的定量PCR分析表明,Pn4CL1转录水平在水果和Pn4CL3在叶片根部而Pn4CL2最高。

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  • 来源
    《The Biochemical Journal》 |2020年第1期|共14页
  • 作者单位

    Seoul Natl Univ Coll Agr &

    Life Sci Dept Agr Biotechnol Seoul 08826 South Korea;

    Prince Songkla Univ Fac Pharmaceut Sci Dept Pharmacognosy &

    Pharmaceut Bot Hat Yai Songkhla Thailand;

    Seoul Natl Univ Coll Agr &

    Life Sci Dept Agr Biotechnol Seoul 08826 South Korea;

    Seoul Natl Univ Coll Agr &

    Life Sci Dept Agr Biotechnol Seoul 08826 South Korea;

    Seoul Natl Univ Coll Agr &

    Life Sci Dept Agr Biotechnol Seoul 08826 South Korea;

    Univ Calgary Dept Biol Sci Calgary AB T2N 1N4 Canada;

    Seoul Natl Univ Coll Agr &

    Life Sci Dept Agr Biotechnol Seoul 08826 South Korea;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物化学;
  • 关键词

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