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首页> 外文期刊>Scientific reports. >Succinyl-proteome profiling of a high taxol containing hybrid Taxus species (Taxus?×?media) revealed involvement of succinylation in multiple metabolic pathways
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Succinyl-proteome profiling of a high taxol containing hybrid Taxus species (Taxus?×?media) revealed involvement of succinylation in multiple metabolic pathways

机译:含有杂种毒品类别(Taxus?×介质)的高紫杉醇的琥珀酰蛋白质组分析显示琥珀酰化在多种代谢途径中的涉及

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摘要

Protein lysine succinylation, a ubiquitous protein post-translational modification among eukaryotic and prokaryotic cells, represents a vital regulator of various metabolic processes. However, little is known about its functions and cellular distribution in Taxus × media, which is a hybrid Taxus species containing a high content of taxol. In this study, LC-MS/MS was used to identify peptides enriched by immune-purification with high-efficiency succinyl-lysine antibody. A total of 193 succinylated proteins and 325 succinylation sites were identified. The bioinformatics analysis indicated that these succinylated proteins were involved in a wide range of cellular functions from metabolism to protein binding and showed diverse subcellular localizations. Furthermore, our findings suggested that lysine succinylation in Taxus × media involved a diverse array of metabolic processes and protein-protein interactions. Many enzymes involved in multiple metabolic pathways, such as glycolysis, pyruvate metabolism, the tricarboxylic acid cycle and carbon fixation, were identified as substrates for lysine succinylation, suggesting the presence of a common mechanism underlying the participation of succinylation in metabolic regulation. These results provide the first comprehensive view of the succinylome of Taxus × media and may catalyze future biological investigation of succinylation.
机译:蛋白质赖氨酸琥珀酰化,真核生物和原核细胞之间的无处不在的蛋白质翻译后修饰,代表了各种代谢过程的重要调节因素。然而,关于其含香蒲×培养基中的功能和细胞分布几乎是众所周知的,这是一种含有高含量的紫杉醇的杂种毒品类别。在该研究中,LC-MS / MS用于用高效琥珀酰基赖氨酸抗体鉴定通过免疫纯化而富集的肽。鉴定了总共193种琥珀酰化蛋白质和325个琥珀酰化位点。生物信息化分析表明,这些琥珀酰化蛋白质涉及来自代谢的各种细胞功能,从代谢到蛋白质结合,并显示出不同的亚细胞局部局部化。此外,我们的研究结果表明,Raxus×培养基中的赖氨酸琥珀酰化涉及各种代谢过程和蛋白质 - 蛋白质相互作用。许多代谢途径中涉及的许多酶如糖酵解,丙酮酸代谢,三羧酸循环和碳固定,被鉴定为赖氨酸琥珀酰化的基材,表明存在琥珀酰化参与在代谢调节中的共同机制的存在。这些结果提供了X媒体的琥珀植物的第一个综合视图,并可促进对琥珀酰化的未来生物学研究。

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