Instituto de Bioquímica Vegetal y Fotosíntesis, Consejo Superior de Investigaciones Científicas y Universidad de Sevilla, 41092 Seville, Spain.
Plant Physiol. 2010 Feb;152(2):656-69. doi: 10.1104/pp.109.147975. Epub 2009 Dec 2.
Cysteine (Cys) occupies a central position in plant metabolism due to its biochemical functions. Arabidopsis (Arabidopsis thaliana) cells contain different O-acetylserine(thiol)lyase (OASTL) enzymes that catalyze the biosynthesis of Cys. Because they are localized in the cytosol, plastids, and mitochondria, this results in multiple subcellular Cys pools. Much progress has been made on the most abundant OASTL enzymes; however, information on the less abundant OASTL-like proteins has been scarce. To unequivocally establish the enzymatic reaction catalyzed by the minor cytosolic OASTL isoform CS-LIKE (for Cys synthase-like; At5g28030), we expressed this enzyme in bacteria and characterized the purified recombinant protein. Our results demonstrate that CS-LIKE catalyzes the desulfuration of L-Cys to sulfide plus ammonia and pyruvate. Thus, CS-LIKE is a novel L-Cys desulfhydrase (EC 4.4.1.1), and we propose to designate it DES1. The impact and functionality of DES1 in Cys metabolism was revealed by the phenotype of the T-DNA insertion mutants des1-1 and des1-2. Mutation of the DES1 gene leads to premature leaf senescence, as demonstrated by the increased expression of senescence-associated genes and transcription factors. Also, the absence of DES1 significantly reduces the total Cys desulfuration activity in leaves, and there is a concomitant increase in the total Cys content. As a consequence, the expression levels of sulfur-responsive genes are deregulated, and the mutant plants show enhanced antioxidant defenses and tolerance to conditions that promote oxidative stress. Our results suggest that DES1 from Arabidopsis is an L-Cys desulfhydrase involved in maintaining Cys homeostasis, mainly at late developmental stages or under environmental perturbations.
半胱氨酸(Cys)因其生化功能而在植物代谢中占据中心地位。拟南芥(Arabidopsis thaliana)细胞含有不同的 O-乙酰丝氨酸(硫醇)裂解酶(OASTL),可催化 Cys 的生物合成。由于它们定位于细胞质、质体和线粒体中,因此导致多个亚细胞 Cys 池。在最丰富的 OASTL 酶方面已经取得了很大进展;然而,关于较少的 OASTL 样蛋白的信息却很少。为了明确地确定少量细胞质 OASTL 同工型 CS-LIKE(Cys 合酶样;At5g28030)催化的酶促反应,我们在细菌中表达了该酶并对纯化的重组蛋白进行了表征。我们的结果表明 CS-LIKE 催化 L-Cys 的脱硫作用,生成硫化物、氨和丙酮酸。因此,CS-LIKE 是一种新的 L-Cys 脱硫酶(EC 4.4.1.1),我们建议将其命名为 DES1。通过 T-DNA 插入突变体 des1-1 和 des1-2 的表型揭示了 DES1 在 Cys 代谢中的影响和功能。DES1 基因的突变导致过早的叶片衰老,这表现为衰老相关基因和转录因子的表达增加。此外,DES1 的缺失显著降低了叶片中总 Cys 脱硫活性,并且总 Cys 含量增加。因此,硫反应基因的表达水平失调,突变体植物表现出增强的抗氧化防御能力和对促进氧化应激的条件的耐受性。我们的结果表明,来自拟南芥的 DES1 是一种 L-Cys 脱硫酶,参与维持 Cys 稳态,主要在发育后期或在环境胁迫下。