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1
Studies of sulfate utilization by algae. 5. Identification of thiosulfate as a major Acid-volatile product formed by a cell-free sulfate-reducing system from chlorella.藻类对硫酸盐利用的研究。5. 硫代硫酸盐被鉴定为小球藻无细胞硫酸盐还原系统形成的主要酸挥发性产物。
Plant Physiol. 1968 Apr;43(4):555-62. doi: 10.1104/pp.43.4.555.
2
Studies of Sulfate Utilization by Algae. 6. Adenosine-3'-Phosphate-5'-Phosphosulfate (PAPS) as an Intermediate in Thiosulfate Formation From Sulfate by Cell-Free Extracts of Chlorella.藻类对硫酸盐利用的研究。6. 腺苷 - 3'-磷酸 - 5'-磷酸硫酸酯(PAPS)作为小球藻无细胞提取物从硫酸盐形成硫代硫酸盐过程中的中间体
Plant Physiol. 1968 Apr;43(4):563-9. doi: 10.1104/pp.43.4.563.
3
Studies of sulfate utilization by algae: 8. The ubiquity of sulfate reduction to thiosulfate.藻类硫酸盐利用的研究:8. 硫酸盐还原为硫代硫酸盐的普遍性。
Plant Physiol. 1971 Feb;47(2):296-9. doi: 10.1104/pp.47.2.296.
4
Studies of Sulfate Utilization by Algae. 7. In vivo Metabolism of Thiosulfate by Chlorella.藻类对硫酸盐的利用研究。7. 小球藻对硫代硫酸盐的体内代谢
Plant Physiol. 1968 Apr;43(4):570-7. doi: 10.1104/pp.43.4.570.
5
Studies of sulfate utilization by algae. 4. Properties of a cell-free sulfate-reducing system from chlorella.藻类硫酸盐利用的研究。4. 小球藻无细胞硫酸盐还原系统的性质。
Plant Physiol. 1968 Apr;43(4):547-54. doi: 10.1104/pp.43.4.547.
6
Role of thiosulfate in bisulfite reduction as catalyzed by Desulfovibrio vulgaris.硫代硫酸盐在普通脱硫弧菌催化的亚硫酸氢盐还原中的作用。
J Bacteriol. 1970 Sep;103(3):741-4. doi: 10.1128/jb.103.3.741-744.1970.
7
Studies of sulfate utilization by algae: 10. Nutritional and enzymatic characterization of chlorella mutants impaired for sulfate utilization.藻类对硫酸盐利用的研究:10. 硫酸盐利用受损的小球藻突变体的营养和酶学特性
Plant Physiol. 1971 Feb;47(2):306-11. doi: 10.1104/pp.47.2.306.
8
Studies of Sulfate Utilization by Algae: 9. Fractionation of a Cell-free System from Chlorella into Two Activities Necessary for the Reduction of Adenosine 3'-Phosphate 5'-Phosphosulfate to Acid-Volatile Radioactivity.藻类硫酸盐利用的研究:9. 小球藻无细胞体系中还原3'-磷酸腺苷5'-磷酸硫酸酯为酸挥发性放射性所需的两种活性的分级分离。
Plant Physiol. 1971 Feb;47(2):300-5. doi: 10.1104/pp.47.2.300.
9
Determination of Total Sulfur, Sulfate, Sulfite, Thiosulfate, and Sulfolipids in Plants.植物中总硫、硫酸盐、亚硫酸盐、硫代硫酸盐和硫脂的测定
Methods Mol Biol. 2017;1631:253-271. doi: 10.1007/978-1-4939-7136-7_15.
10
Sulfite-oxido-reductase is involved in the oxidation of sulfite in Desulfocapsa sulfoexigens during disproportionation of thiosulfate and elemental sulfur.在硫代硫酸盐和元素硫的歧化过程中,亚硫酸盐氧化还原酶参与了嗜硫脱囊菌中亚硫酸盐的氧化。
Biodegradation. 2003 Jun;14(3):189-98. doi: 10.1023/a:1024255830925.

引用本文的文献

1
Studies of sulfate utilization by algae: 10. Nutritional and enzymatic characterization of chlorella mutants impaired for sulfate utilization.藻类对硫酸盐利用的研究:10. 硫酸盐利用受损的小球藻突变体的营养和酶学特性
Plant Physiol. 1971 Feb;47(2):306-11. doi: 10.1104/pp.47.2.306.
2
Studies of Sulfate Utilization by Algae: 9. Fractionation of a Cell-free System from Chlorella into Two Activities Necessary for the Reduction of Adenosine 3'-Phosphate 5'-Phosphosulfate to Acid-Volatile Radioactivity.藻类硫酸盐利用的研究:9. 小球藻无细胞体系中还原3'-磷酸腺苷5'-磷酸硫酸酯为酸挥发性放射性所需的两种活性的分级分离。
Plant Physiol. 1971 Feb;47(2):300-5. doi: 10.1104/pp.47.2.300.
3
Studies of sulfate utilization by algae: 8. The ubiquity of sulfate reduction to thiosulfate.藻类硫酸盐利用的研究:8. 硫酸盐还原为硫代硫酸盐的普遍性。
Plant Physiol. 1971 Feb;47(2):296-9. doi: 10.1104/pp.47.2.296.
4
Studies of Sulfate Utilization by Algae. 7. In vivo Metabolism of Thiosulfate by Chlorella.藻类对硫酸盐的利用研究。7. 小球藻对硫代硫酸盐的体内代谢
Plant Physiol. 1968 Apr;43(4):570-7. doi: 10.1104/pp.43.4.570.
5
Studies of Sulfate Utilization by Algae. 6. Adenosine-3'-Phosphate-5'-Phosphosulfate (PAPS) as an Intermediate in Thiosulfate Formation From Sulfate by Cell-Free Extracts of Chlorella.藻类对硫酸盐利用的研究。6. 腺苷 - 3'-磷酸 - 5'-磷酸硫酸酯(PAPS)作为小球藻无细胞提取物从硫酸盐形成硫代硫酸盐过程中的中间体
Plant Physiol. 1968 Apr;43(4):563-9. doi: 10.1104/pp.43.4.563.
6
The role of 5'-adenylylsulfate reductase in controlling sulfate reduction in plants.5'-腺苷硫酸还原酶在控制植物硫酸盐还原中的作用。
Photosynth Res. 2005 Dec;86(3):309-23. doi: 10.1007/s11120-005-9006-z. Epub 2005 Nov 15.
7
Thiosulfate reductase of Desulfovibrio vulgaris.普通脱硫弧菌的硫代硫酸盐还原酶
J Bacteriol. 1971 May;106(2):603-7. doi: 10.1128/jb.106.2.603-607.1971.
8
On the mechanism of photosynthetic sulfate reduction. An APS-sulfotransferase from Chlorella.关于光合硫酸盐还原的机制。来自小球藻的一种APS-磺基转移酶。
Arch Mikrobiol. 1972;84(1):77-86. doi: 10.1007/BF00408084.
9
Inhibitory action of tetrathionate enrichment broth.连四硫酸盐富集肉汤的抑制作用。
Appl Microbiol. 1970 Dec;20(6):970-6. doi: 10.1128/am.20.6.970-976.1970.
10
Observations on the bisulfite reductase (P582) isolated from Desulfotomaculum nigrificans.对从黑化脱硫肠状菌中分离出的亚硫酸氢盐还原酶(P582)的观察。
J Bacteriol. 1974 Oct;120(1):240-4. doi: 10.1128/jb.120.1.240-244.1974.

本文引用的文献

1
Studies of Sulfate Utilization by Algae. 6. Adenosine-3'-Phosphate-5'-Phosphosulfate (PAPS) as an Intermediate in Thiosulfate Formation From Sulfate by Cell-Free Extracts of Chlorella.藻类对硫酸盐利用的研究。6. 腺苷 - 3'-磷酸 - 5'-磷酸硫酸酯(PAPS)作为小球藻无细胞提取物从硫酸盐形成硫代硫酸盐过程中的中间体
Plant Physiol. 1968 Apr;43(4):563-9. doi: 10.1104/pp.43.4.563.
2
Studies of sulfate utilization by algae. 4. Properties of a cell-free sulfate-reducing system from chlorella.藻类硫酸盐利用的研究。4. 小球藻无细胞硫酸盐还原系统的性质。
Plant Physiol. 1968 Apr;43(4):547-54. doi: 10.1104/pp.43.4.547.
3
INTERMEDIATES IN INORGANIC SULFATE UTILIZATION BY PENICILLIUM CHRYSOGENUM.产黄青霉利用无机硫酸盐的中间产物
Arch Biochem Biophys. 1963 Nov;103:216-26. doi: 10.1016/0003-9861(63)90398-9.
4
The initial products of thiosulphate oxidation by Thiobacillus X.硫杆菌X对硫代硫酸盐氧化的初始产物
Biochim Biophys Acta. 1959 Jan;31(1):270-2. doi: 10.1016/0006-3002(59)90474-3.

藻类对硫酸盐利用的研究。5. 硫代硫酸盐被鉴定为小球藻无细胞硫酸盐还原系统形成的主要酸挥发性产物。

Studies of sulfate utilization by algae. 5. Identification of thiosulfate as a major Acid-volatile product formed by a cell-free sulfate-reducing system from chlorella.

作者信息

Levinthal M, Schiff J A

机构信息

Department of Biology, Brandeis University, Waltham, Massachusetts 02154.

出版信息

Plant Physiol. 1968 Apr;43(4):555-62. doi: 10.1104/pp.43.4.555.

DOI:10.1104/pp.43.4.555
PMID:16656806
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1086887/
Abstract

Separation of the products formed from sulfate-(35)S by cell-free extracts of Chlorella pyrenoidosa (Emerson Strain 3) has permitted the identification of thiosulfate as a major product which yields acid-volatile radioactivity. The products formed, as separated by Dowex-1-nitrate chromatography, are qualitatively the same whether extracts at pH 7.0 (using TPNH as the reductant) or extracts at pH 9 [using 2,3-dimercaptopropan-1-ol, (BAL) as reductant] are employed. While thiosulfate can be separated without the addition of carrier, the inclusion of carrier improves the recovery. High concentrations of ATP which have been shown previously to inhibit the formation of acid-volatile radioactivity from radioactive sulfate, inhibit the formation of thiosulfate almost completely. Degradation of the thiosulfate formed at normal ATP concentrations reveals that most of the radioactivity is in the SO(3)-sulfur of the molecule suggesting that the SH-sulfur is derived from the enzyme extracts. If carrier sulfite is present during thiosulfate formation from sulfate-(35)S, radioactive sulfite is recovered at the expense of radioactive thiosulfate. Reconstruction experiments utilizing specifically-labeled thiosulfates indicate that radioactive sulfite formation is probably not the result of trapping a normal intermediate, but can be attributed to non-enzymatic exchange between labeled thiosulfate formed from sulfate and the non-radioactive sulfite added, suggesting that free sulfite is not an intermediate in thiosulfate formation from sulfate.

摘要

通过小球藻(爱默生3号菌株)的无细胞提取物对由硫酸根 - (35)S形成的产物进行分离,已鉴定出硫代硫酸盐是产生酸挥发性放射性的主要产物。无论使用pH 7.0的提取物(使用三磷酸吡啶核苷酸还原酶,TPNH作为还原剂)还是pH 9的提取物[使用2,3 - 二巯基丙醇,(BAL)作为还原剂],经Dowex - 1 - 1 - 硝酸盐色谱法分离得到的产物在定性上是相同的。虽然不添加载体时硫代硫酸盐也可分离,但加入载体可提高回收率。先前已表明高浓度的ATP会抑制放射性硫酸盐形成酸挥发性放射性,它几乎完全抑制硫代硫酸盐的形成。对在正常ATP浓度下形成的硫代硫酸盐进行降解表明,大部分放射性存在于分子的亚硫酸根 - 硫中,这表明巯基 - 硫源自酶提取物。如果在由硫酸根 - (35)S形成硫代硫酸盐的过程中存在载体亚硫酸盐,则会回收放射性亚硫酸盐,代价是放射性硫代硫酸盐减少。利用特异性标记的硫代硫酸盐进行的重建实验表明,放射性亚硫酸盐的形成可能不是捕获正常中间体的结果,而是可归因于由硫酸盐形成的标记硫代硫酸盐与添加的非放射性亚硫酸盐之间的非酶促交换,这表明游离亚硫酸盐不是由硫酸盐形成硫代硫酸盐过程中的中间体。