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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. 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.
3
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.
4
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.
5
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.
6
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.
7
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.
8
Regulation of inorganic sulfate activation in filamentous fungi. Allosteric inhibition of ATP sulfurylase by 3'-phosphoadenosine-5'-phosphosulfate.丝状真菌中无机硫酸盐激活的调控。3'-磷酸腺苷-5'-磷酸硫酸对ATP硫酸化酶的变构抑制作用。
J Biol Chem. 1990 Jun 25;265(18):10300-8.
9
Colorimetric determination of the purity of 3'-phospho adenosine 5'-phosphosulfate and natural abundance of 3'-phospho adenosine 5'-phosphate at picomole quantities.比色法测定皮摩尔量的3'-磷酸腺苷5'-磷酸硫酸酯的纯度及3'-磷酸腺苷5'-磷酸的天然丰度。
Anal Biochem. 1998 Nov 1;264(1):111-7. doi: 10.1006/abio.1998.2800.
10
A sulfotransferase from spinach leaves using adenosine-5'-phosphosulfate.菠菜叶中的一种使用腺苷-5'-磷酸硫酸的磺基转移酶。
Planta. 1975 Jan;124(3):267-75. doi: 10.1007/BF00388689.

引用本文的文献

1
A sulfotransferase from spinach leaves using adenosine-5'-phosphosulfate.菠菜叶中的一种使用腺苷-5'-磷酸硫酸的磺基转移酶。
Planta. 1975 Jan;124(3):267-75. doi: 10.1007/BF00388689.
2
Activation of sulphate in Anabaena cylindrica.柱孢鱼腥藻硫酸盐的激活。
Planta. 1976 Jan;132(2):189-95. doi: 10.1007/BF00388902.
3
Comparative Enzymology of the Adenosine Triphosphate Sulfurylases from Leaf and Swollen Hypocotyl Tissue of Beta vulgaris: Multiple Enzyme Forms in Hypocotyl Tissue.甜菜叶片和下胚轴膨大组织中三磷酸腺苷硫酸化酶的比较酶学:下胚轴组织中的多种酶形式
Plant Physiol. 1974 Feb;53(2):180-6. doi: 10.1104/pp.53.2.180.
4
Adenosine 5'-triphosphate-sulfurylase in corn roots and its partial purification.玉米根中的腺苷5'-三磷酸硫酸化酶及其部分纯化
Plant Physiol. 1973 Dec;52(6):580-4. doi: 10.1104/pp.52.6.580.
5
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.
6
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.
7
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.
8
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.
9
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.
10
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.

本文引用的文献

1
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.
2
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.
3
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.
4
Enzymatic basis for assimilatory and dissimilatory sulfate reduction.同化性和异化性硫酸盐还原的酶学基础。
J Bacteriol. 1961 Dec;82(6):933-9. doi: 10.1128/jb.82.6.933-939.1961.
5
Enzymatic system synthesizing sulfuric acid esters of phenols.合成酚硫酸酯的酶系统。
J Biol Chem. 1955 Mar;213(1):439-43.
6
Yeast sulfate-reducing system. I. Reduction of sulfate to sulfite.酵母硫酸盐还原系统。I. 硫酸盐还原为亚硫酸盐。
J Biol Chem. 1961 Jun;236:1822-9.
7
Enzymatic reactions involving sulfate, sulfite, selenate, and molybdate.涉及硫酸盐、亚硫酸盐、硒酸盐和钼酸盐的酶促反应。
J Biol Chem. 1958 Oct;233(4):975-81.
8
Separation of the two enzymatic phases in active sulfate synthesis.活性硫酸盐合成中两个酶促阶段的分离。
J Biol Chem. 1958 Sep;233(3):681-5.
9
Nucleotides involved in the enzymatic conjugation of phenols with sulfate.参与酚与硫酸盐酶促结合反应的核苷酸。
J Biol Chem. 1958 Aug;233(2):472-7.
10
Isolation and identification of active sulfate.活性硫酸盐的分离与鉴定
J Biol Chem. 1957 Dec;229(2):837-51.

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

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.

作者信息

Hodson R C, Schiff J A, Scarsella A J, Levinthal M

机构信息

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

出版信息

Plant Physiol. 1968 Apr;43(4):563-9. doi: 10.1104/pp.43.4.563.

DOI:10.1104/pp.43.4.563
PMID:16656807
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1086888/
Abstract

When cell-free preparations of Chlorella pyrenoidosa Chick (Emerson strain 3) form thiosulfate from labeled sulfate, another radioactive compound also appears. This compound has been isolated in quantity and is shown to be identical with adenosine-3'-phosphate-5'-phosphosulfate (PAPS) on the basis of its chromatographic and electrophoretic behavior, chemical composition, sensitivity to selective degradative enzymes, and its ability to serve as a substrate for rat liver aryl sulphotransferase. In addition, as expected for PAPS, the compound on mild acid treatment yields all of its radioactive sulfur as sulfate, and is converted to a compound identical with adenosine-3',5'-diphosphate (PAP). Replacement of sulfate and ATP by this PAP(35)S in the usual incubation mixture yields the same product, thiosulfate, which can be isolated as such or detected as acid-volatile radioactivity. This conversion of PAP(35)S to thiosulfate still requires the addition of Mg(2+) and a reductant such as 2,3-dimercaptopropan-1-ol (BAL). The cause of our previous result that high concentrations of ATP inhibit thiosulfate formation from sulfate can be ascribed to a small amount of PAP contaminating the ATP preparations, since PAP proves to be an exceedingly effective inhibitor of the conversion of PAP(35)S to thiosulfate. Sulfate reduction to thiosulfate by Chlorella extracts is discussed and compared with similar systems from other organisms.

摘要

当小球藻(艾默生3号菌株)的无细胞制剂从标记的硫酸盐形成硫代硫酸盐时,另一种放射性化合物也会出现。这种化合物已被大量分离出来,根据其色谱和电泳行为、化学成分、对选择性降解酶的敏感性以及作为大鼠肝脏芳基磺基转移酶底物的能力,证明它与腺苷-3'-磷酸-5'-磷酸硫酸酯(PAPS)相同。此外,正如对PAPS所预期的那样,该化合物经温和酸处理后,其所有放射性硫都以硫酸盐形式产生,并转化为与腺苷-3',5'-二磷酸(PAP)相同的化合物。在通常的孵育混合物中用这种PAP(35)S替代硫酸盐和ATP会产生相同的产物硫代硫酸盐,它可以原样分离出来或检测为酸挥发性放射性物质。PAP(35)S向硫代硫酸盐的这种转化仍然需要添加Mg(2+)和一种还原剂,如2,3-二巯基丙醇(BAL)。我们之前的结果表明高浓度的ATP会抑制从硫酸盐形成硫代硫酸盐,其原因可归因于ATP制剂中污染的少量PAP,因为PAP被证明是PAP(35)S转化为硫代硫酸盐的极其有效的抑制剂。本文讨论了小球藻提取物将硫酸盐还原为硫代硫酸盐的过程,并与其他生物体的类似系统进行了比较。