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首页> 外文期刊>Molecular Plant >Mitochondrial sulfide detoxification requires a functional isoform O-acetylserine(thiol)lyase C in Arabidopsis thaliana.
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Mitochondrial sulfide detoxification requires a functional isoform O-acetylserine(thiol)lyase C in Arabidopsis thaliana.

机译:线粒体硫化物解毒需要拟南芥中的功能性同工型O-乙酰丝氨酸(硫醇)裂解酶C。

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In non-cyanogenic species, the main source of cyanide derives from ethylene and camalexin biosyntheses. In mitochondria, cyanide is a potent inhibitor of the cytochrome c oxidase and is metabolized by the beta -cyanoalanine synthase CYS-C1, catalyzing the conversion of cysteine and cyanide to hydrogen sulfide and beta -cyanoalanine. The hydrogen sulfide released also inhibits the cytochrome c oxidase and needs to be detoxified by the O-acetylserine(thiol)lyase mitochondrial isoform, OAS-C, which catalyzes the incorporation of sulfide to O-acetylserine to produce cysteine, thus generating a cyclic pathway in the mitochondria. The loss of functional OAS-C isoforms causes phenotypic characteristics very similar to the loss of the CYS-C1 enzyme, showing defects in root hair formation. Genetic complementation with the OAS-C gene rescues the impairment of root hair elongation, restoring the wild-type phenotype. The mitochondria compromise their capacity to properly detoxify cyanide and the resulting sulfide because the latter cannot re-assimilate into cysteine in the oas-c null mutant. Consequently, we observe an accumulation of sulfide and cyanide and of the alternative oxidase, which is unable to prevent the production of reactive oxygen species probably due to the accumulation of both toxic molecules. Our results allow us to suggest that the significance of OAS-C is related to its role in the proper sulfide and cyanide detoxification in mitochondria.
机译:在非氰化物物种中,氰化物的主要来源来自乙烯和卡马新的生物合成。在线粒体中,氰化物是细胞色素C氧化酶的有效抑制剂,并被β-氰基丙氨酸合酶CYS-C1代谢,催化半胱氨酸和氰化物转化为硫化氢和β-氰基丙氨酸。释放的硫化氢也抑制细胞色素c氧化酶,需要通过O-乙酰丝氨酸(硫醇)裂解酶线粒体亚型OAS-C解毒,该酶催化硫化物掺入O-乙酰丝氨酸以产生半胱氨酸,从而产生循环途径在线粒体中。功能性OAS-C同工型的丧失导致表型特征与CYS-C1酶的丧失非常相似,表现出根毛形成方面的缺陷。 OAS-C基因的遗传互补可以挽救根毛伸长的损伤,恢复野生型表型。线粒体损害了它们对氰化物和所产生的硫化物进行适当解毒的能力,因为后者无法在oas-c null突变体中重新同化为半胱氨酸。因此,我们观察到硫化物和氰化物以及其他氧化酶的积累,这可能无法防止由于两个有毒分子的积累而产生活性氧。我们的结果使我们认为,OAS-C的意义与其在线粒体中适当的硫化物和氰化物解毒中的作用有关。

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