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The sulfane sulfur of persulfides is the actual substrate of the sulfur-oxidizing enzymes from Acidithiobacillus and Acidiphilium spp.

机译:过硫化磺酰硫醚是来自酸酐和酸酐SPP的硫氧化酶的实际基材。

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To identify the actual substrate of the glutathione-dependent sulfur dioxygenase (EC 1.13.11.18) elemental sulfur oxidation of the meso-acidophilic Acidithiobacillus thiooxidans strains DSM 504 and K6, Acidithiobacillus ferrooxidans strain R1 and Acidiphilium acidophilum DSM 700 was analysed. Extraordinarily high specific sulfur dioxygenase activities up to 460?nmol?min?1 (mg protein)?1 were found in crude extracts. All cell-free systems oxidized elemental sulfur only via glutathione persulfide (GSSH), a non-enzymic reaction product from glutathione (GSH) and elemental sulfur. Thus, GSH plays a catalytic role in elemental sulfur activation, but is not consumed during enzymic sulfane sulfur oxidation. Sulfite is the first product of sulfur dioxygenase activity; it further reacted non-enzymically to sulfate, thiosulfate or glutathione S-sulfonate (). Free sulfide was not oxidized by the sulfur dioxygenase. Persulfide as sulfur donor could not be replaced by other sulfane-sulfur-containing compounds (thiosulfate, polythionates, bisorganyl-polysulfanes or monoarylthiosulfonates). The oxidation of H2S by the dioxygenase required GSSG, i.e. the disulfide of GSH, which reacted non-enzymically with sulfide to give GSSH prior to enzymic oxidation. On the basis of these results and previous findings a biochemical model for elemental sulfur and sulfide oxidation in Acidithiobacillus and Acidiphilium spp. is proposed.
机译:为了鉴定谷胱甘肽依赖性硫酸二恶英酶(EC 1.13.11.18)的实际基材(EC 1.13.11.18)中嗜酸性酸酐氧化物菌株DSM 504和K6,分析了酸酐毒素菌株R1和酸纤维酸菌株700。在粗提取物中发现了高达460?nmol?1(mg蛋白)α1(mg蛋白)α1(mg蛋白)α1(mg蛋白质)α1的非常高的硫酸二氧化碳酶活性。所有无细胞系统只通过谷胱甘肽过硫化物(GSSH),来自谷胱甘肽(GSH)和元素硫的非酶反应产物氧化元素硫。因此,GSH在元素硫激活中起催化作用,但在酶磺胺硫氧化期间不被消耗。亚硫酸盐是硫酸二氧化根酶活性的第一产物;它进一步非酶促反应硫酸盐,硫代硫酸盐或谷胱甘肽S-磺酸盐()。通过硫DiOxygenase未氧化游离硫化物。硫化物的过硫化剂不能由其他含磺烷硫的化合物(硫代硫酸硫酸硫酸硫酸盐,聚硫酸酯,双聚氨酯或单芳基磺酸盐)代替。通过二恶英酶的H 2 S氧化所需的GSSG,即GSH的二硫化物,其无酶与硫化物反应,得到酶氧化之前的GSSH。在这些结果的基础上,先前的发现是酸酐和酸纤维素SPP中元素硫和硫化物氧化的生化模型。提出。

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