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A spinach O-acetylserine(thiol)lyase homologue SoCSaseLP suppresses cysteine biosynthesis catalysed by other enzyme isoforms

机译:菠菜O-乙酰丝氨酸(巯基)裂解酶的同系物SoCSaseLP抑制其他酶同工型催化的半胱氨酸生物合成

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摘要

An enzyme, O-acetylserine(thiol)lyase (OASTL), also known as O-acetylserine sulfhydrylase or cysteine synthase (CSase), catalyses the incorporation of sulfide into O-acetylserine and produces cysteine. We previously identified a cDNA encoding an OASTL-like protein from Spinacia oleracea, (SoCSaseLP), but a recombinant SoCSaseLP produced in Escherichia coli did not show OASTL activity. The exon-intron structure of the SoCSaseLP gene shared conserved structures with other spinach OASTL genes. The SoCSaseLP and a Beta vulgaris homologue protein, , comprise a unique clade in the phylogenetic tree of the OASTL family. Interestingly, when the SoCSaseLP gene was expressed in tobacco plants, total OASTL activity in tobacco leaves was reduced. This reduction in total OASTL activity was most likely caused by interference by SoCSaseLP with cytosolic OASTL. To investigate the possible interaction of SoCSaseLP with a spinach cytosolic OASTL isoform SoCSaseA, a pull-down assay was carried out. The recombinant glutathione S-transferase (GST)-SoCSaseLP fusion protein was expressed in E. coli together with the histidine-tagged SoCSaseA protein, and the protein extract was subjected to glutathione affinity chromatography. The histidine-tagged SoCSaseA was co-purified with the GST-SoCSaseLP fusion protein, indicating the binding of SoCSaseLP to SoCSaseA. Consistent with this interaction, the OASTL activity of the co-purified SoCSaseA was reduced compared with the activity of SoCSaseA that was purified on its own. These results strongly suggest that SoCSaseLP negatively regulates the activity of other cytosolic OASTL family members by direct interaction.
机译:O-乙酰丝氨酸(巯基)裂解酶(OASTL)(也称为O-乙酰丝氨酸巯基化酶或半胱氨酸合酶(CSase))催化硫化物掺入O-乙酰丝氨酸并产生半胱氨酸。我们以前鉴定了一种编码来自菠菜的OASTL样蛋白的cDNA(SoCSaseLP),但在大肠杆菌中产生的重组SoCSaseLP没有显示OASTL活性。 SoCSaseLP基因的外显子-内含子结构与其他菠菜OASTL基因共享保守结构。 SoCSaseLP和一个普通的Beta同源蛋白在OASTL家族的系统树中包含独特的进化枝。有趣的是,当SoCSaseLP基因在烟草植物中表达时,烟叶中的总OASTL活性降低了。总OASTL活性的这种降低很可能是由SoCSaseLP对细胞质OASTL的干扰引起的。为了研究SoCSaseLP与菠菜胞质OASTL亚型SoCSaseA的可能相互作用,进行了一项下拉分析。重组谷胱甘肽S-转移酶(GST)-SoCSaseLP融合蛋白与组氨酸标记的SoCSaseA蛋白一起在大肠杆菌中表达,并对蛋白提取物进行谷胱甘肽亲和层析。组氨酸标记的SoCSaseA与GST-SoCSaseLP融合蛋白共纯化,表明SoCSaseLP与SoCSaseA结合。与此相互作用一致,与单独纯化的SoCSaseA的活性相比,共纯化的SoCSaseA的OASTL活性降低了。这些结果强烈表明,SoCSaseLP通过直接相互作用负调控其他胞质OASTL家族成员的活性。

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