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Titlebook: Vanadium in Biological Systems; Physiology and Bioch N. Dennis Chasteen Book 1990 Kluwer Academic Publishers 1990 biochemistry.chemistry.me

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发表于 2025-3-21 19:48:47 | 显示全部楼层 |阅读模式
书目名称Vanadium in Biological Systems
副标题Physiology and Bioch
编辑N. Dennis Chasteen
视频video
图书封面Titlebook: Vanadium in Biological Systems; Physiology and Bioch N. Dennis Chasteen Book 1990 Kluwer Academic Publishers 1990 biochemistry.chemistry.me
描述Over the past several decades, vanadium has increasingly attracted the interest of biologists and chemists. The discovery by Henze in 1911 that certain marine ascidians accumulate the metal in their blood cells in unusually large quantities has done much to stimulate research on the role of vanadium in biology. In the intervening years, a large number of studies have been carried out to investigate the toxicity of vanadium in higher animals and to determine whether it is an essential trace element. That vanadium is a required element for a few selected organisms is now well established. Whether vanadium is essential for humans remains unclear although evidence increasingly suggests that it probably is. The discovery by Cantley in 1977 that vanadate is a potent inhibitor of ATPases lead to numerous studies of the inhibitory and stimulatory effects of vanadium on phosphate metabolizing enzymes. As a consequence vanadates are now routinely used as probes to investigate the mechanisms of such enzymes. Our understanding of vanadium in these systems has been further enhanced by the work of Tracy and Gresser which has shown striking parallels between the chemistry of vanadates and phospha
出版日期Book 1990
关键词biochemistry; chemistry; metabolism; physiology; protein; research
版次1
doihttps://doi.org/10.1007/978-94-009-2023-1
isbn_softcover978-94-010-7407-0
isbn_ebook978-94-009-2023-1
copyrightKluwer Academic Publishers 1990
The information of publication is updating

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The Coordination and Redox Chemistry of Vanadium in Aqueous Solution,emistry and reactivity of vanadium is receiving renewed attention. One of the most intriguing features of vanadium is the number of stable oxidation states in which vanadium is known and the relative ease of interconversion between many of these states. Vanadium complexes in the oxidation states, -
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The Essentiality and Metabolism of Vanadium,9) reported that vanadium might be needed by animals because vanadium stimulated the mineralization of bones and teeth, and prevented caries formation in rats and guinea pigs. However, Bertrand (1950) stated in 1950 that “we are completely ignorant of the physiological role of vanadium in animals, w
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Vanadium Haloperoxidases,alyze the oxidation of a variety of organic as well as inorganic electron donors such as Cl., Br., I. or SCN. by hydrogen peroxide (H.O.) or other hydroperoxides (ROOH). The overall catalyzed reaction for an organic electron donor is: . where AH. is the electron donor and AH° the oxidized product wh
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Vanadium Nitrogenases,inct but related nitrogenase systems. One system is based on Mo and has properties similar to Mo-nitrogenase of many other nitrogen fixing organisms, another is based on V and forms the focus of this chapter, and a third system which contains Fe and only low levels of Mo or V and is discussed only b
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Vanadate Sensitized Photocleavage of Proteins, catalyzing the scission of peptide bonds at specific locations within a protein. This photolytic activity of vanadate is closely related to its ability to inhibit many of the enzymes involved in phosphate metabolism. In most cases, this inhibition occurs as a result of the tetrahedral VO. anion act
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Biological Applications of 51V NMR Spectroscopy,r of examples, viz. vanadate binding to serum albumin and apo-transferrin, the nature of the coordination environment of vanadium in vanadate-dependent halo-peroxidases from knobbed wrack (a marine brown alga), and the interaction of vanadate with several enzymes involved in phosphorylation reaction
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