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Predicting the Function of 4-Coumarate:CoA Ligase (LJ4CL1) in Lonicera japonica

机译:预测4-香豆酸酯:CoA连接酶(LJ4CL1)在忍冬中的功能

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4-Coumarate:CoA ligases (4CLs) are a group of essential enzymes involved in the pathway of phenylpropanoid-derived compound metabolisms; however it is still difficult to identify orthologs and paralogs of these important enzymes just based on sequence similarity of the conserved domains. Using sequence data of 20 plant species from the public databases and sequences from Lonicera japonica, we define 1252 adenosine monophosphate (AMP)-dependent synthetase/ligase sequences and classify them into three phylogenetic clades. 4CLs are in one of the four subgroups, according to their partitioning, with known proteins characterized in A. thaliana and Oryza sativa. We also defined 184 non-redundant sequences that encode proteins containing the GEICIRG motif and the taxonomic distribution of these GEICIRG-containing proteins suggests unique catalytic activities in plants. We further analyzed their transcription levels in L. japonica and L. japonica. var. chinensis flowers and chose the highest expressed genes representing the subgroups for structure and binding site predictions. Coupled with liquid chromatography-mass spectrometry (LC-MS) analysis of the L. japonica flowers, the structural study on putative substrate binding amino acid residues, ferulate, and 4-coumaric acid of the conserved binding-site of LJ4CL1 leads to a conclusion that this highly expressed protein group in the flowers may process 4-coumarate that represents 90% of the known phenylpropanoid-derived compounds. The activity of purified crude LJ4CL1 protein was analyzed using 4-coumarate as template and high activity indicating that 4-coumarate is one of the substrates of LJ4CL1.
机译:4-香豆酸酯:CoA连接酶(4CLs)是一组参与苯丙烷类化合物代谢途径的必需酶。然而,仅基于保守结构域的序列相似性,仍然难以鉴定这些重要酶的直系同源物和旁系同源物。使用来自公共数据库的20种植物的序列数据和日本忍冬(Lonicera japonica)的序列,我们定义了1252种单磷酸腺苷(AMP)依赖的合成酶/连接酶序列,并将其分为三个系统进化枝。根据它们的划分,4CL位于四个亚组之一中,具有以拟南芥和稻为特征的已知蛋白质。我们还定义了184个非冗余序列,这些非编码序列编码包含GEICIRG基序的蛋白质,而这些包含GEICIRG的蛋白质的分类分布表明在植物中具有独特的催化活性。我们进一步分析了它们在L. japonica和L. japonica中的转录水平。变种会开花并选择表达最高的基因代表亚组的结构和结合位点预测。结合液相色谱-质谱(LC-MS)分析日本粳稻花,LJ4CL1保守结合位点的底物结合氨基酸残基,阿魏酸和4-香豆酸的结构研究得出结论花中这种高表达的蛋白质组可能会处理4香豆酸盐,这代表了已知的苯丙烷类化合物的90%。以4-香豆酸盐为模板,对纯化的粗制LJ4CL1蛋白的活性进行了分析,高活性表明4-香豆酸盐是LJ4CL1的底物之一。

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