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乳酸微球菌利用分子氢还原无机化合物。I. 与砷、硒、碲、过渡元素及其他元素化合物的化学计量关系。

Reduction of inorganic compounds with molecular hydrogen by Micrococcus lactilyticus. I. Stoichiometry with compounds of arsenic, selenium, tellurium, transition and other elements.

作者信息

WOOLFOLK C A, WHITELEY H R

出版信息

J Bacteriol. 1962 Oct;84(4):647-58. doi: 10.1128/jb.84.4.647-658.1962.

Abstract

Woolfolk, C. A. (University of Washington, Seattle) and H. R. Whiteley. Reduction of inorganic compounds with molecular hydrogen by Micrococcus lactilyticus. I. Stoichiometry with compounds of arsenic, selenium, tellurium, transition and other elements. J. Bacteriol. 84:647-658. 1962.-Extracts of Micrococcus lactilyticus (Veillonella alcalescens) oxidize molecular hydrogen at the expense of certain compounds of arsenic, bismuth, selenium, tellurium, lead, thallium, vanadium, manganese, iron, copper, molybdenum, tungsten, osmium, ruthenium, gold, silver, and uranium, as well as molecular oxygen. Chemical and manometric data indicate that the following reductions are essentially quantitative: arsenate to arsenite, pentavalent and trivalent bismuth to the free element, selenite via elemental selenium to selenide, tellurate and tellurite to tellurium, lead dioxide and manganese dioxide to the divalent state, ferric to ferrous iron, osmium tetroxide to osmate ion, osmium dioxide and trivalent osmium to the metal, uranyl uranium to the tetravalent state, vanadate to the level of vanadyl, and polymolybdate ions to molybdenum blues with an average valence for molybdenum of +5. The results of a study of certain other hydrogenase-containing bacteria with respect to their ability to carry out some of the same reactions are also presented.

摘要

伍尔福克,C.A.(华盛顿大学,西雅图)和H.R.怀特利。乳酸微球菌利用分子氢还原无机化合物。I.与砷、硒、碲、过渡元素及其他元素化合物的化学计量关系。《细菌学杂志》84:647 - 658。1962年。——乳酸微球菌(产碱韦荣球菌)提取物以某些砷、铋、硒、碲、铅、铊、钒、锰、铁、铜、钼、钨、锇、钌、金、银和铀的化合物以及分子氧为代价氧化分子氢。化学和测压数据表明,以下还原反应基本是定量的:砷酸盐还原为亚砷酸盐,五价和三价铋还原为游离元素,亚硒酸盐经元素硒还原为硒化物,碲酸盐和亚碲酸盐还原为碲,二氧化铅和二氧化锰还原为二价态,三价铁还原为二价铁,四氧化锇还原为锇酸根离子,二氧化锇和三价锇还原为金属,铀酰铀还原为四价态,钒酸盐还原为钒酰水平,多钼酸根离子还原为钼蓝,钼的平均化合价为 +5。还展示了对某些其他含氢化酶细菌进行一些相同反应能力的研究结果。

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本文引用的文献

1
THE ATP-DEPENDENT REDUCTION OF SULFATE WITH HYDROGEN IN EXTRACTS OF DESULFOVIBRIO DESULFURICANS.
Proc Natl Acad Sci U S A. 1959 May;45(5):701-8. doi: 10.1073/pnas.45.5.701.
3
THE REDUCING PROPERTIES OF MICROORGANISMS WITH SPECIAL REFERENCE TO SELENIUM COMPOUNDS.
J Bacteriol. 1925 May;10(3):217-63. doi: 10.1128/jb.10.3.217-263.1925.
4
Growth and hydrogenase activity of a new bacterium, Hydrogenomonas facilis.
J Bacteriol. 1952 Jan;63(1):87-98. doi: 10.1128/jb.63.1.87-98.1952.
5
The reduction of sulphur compounds by Desulphovibrio desulphuricans.
J Gen Microbiol. 1951 Oct;5(4):725-38. doi: 10.1099/00221287-5-4-725.
6
Biological methylation.
Adv Enzymol Relat Subj Biochem. 1951;12:429-91. doi: 10.1002/9780470122570.ch8.
7
The fermentation of purines by Micrococcus lactilyticus.
J Bacteriol. 1951 May;61(5):605-16. doi: 10.1128/jb.61.5.605-616.1951.
10
An electron transport factor from Clostridium pasteurianum.
Biochem Biophys Res Commun. 1962 Jun 4;7:448-52. doi: 10.1016/0006-291x(62)90333-9.

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