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Titlebook: Biochemistry of Nickel; Robert P. Hausinger Book 1993 Springer Science+Business Media New York 1993 Coenzym.biochemistry.carbon.chemistry.

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Stand der Erkenntnisse und Aufgabenstellung,small portion of the ingested nickel is absorbed by cells lining the small intestine, and additional small amounts of nickel are assimilated by pulmonary cells after inhalation. The absorbed nickel ion is systemically transported to all tissues by proteinaceous and low-molecular-weight nickel-bindin
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Introduction,. Early German copper miners working with niccolite, a red-colored nickel arsenide that has the appearance of copper ore, are responsible for the name of this element. Not only were these workers unable to extract copper from the material, but the fumes derived from the reddish substance were toxic;
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Methyl Coenzyme M Reductase,btain energy from one-or two-carbon substrates according to the following reactions [reviewed by Daniels .. (1984), Ferry (1992), Jones .. (1987), and Thauer (1990)]:.Using distinct pathways, these substrates and other substrates are all converted to a common methylated intermediate that is subseque
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Microbial Nickel Metabolism,ehydrogenase, and methyl coenzyme M reductase. In addition, specific accessory proteins have been identified as being involved in the functional incorporation of nickel ion into urease and hydrogenase. Intracellular nickel processing functions may also be needed for nickel metallocenter assembly in
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Animal Nickel Metabolism,small portion of the ingested nickel is absorbed by cells lining the small intestine, and additional small amounts of nickel are assimilated by pulmonary cells after inhalation. The absorbed nickel ion is systemically transported to all tissues by proteinaceous and low-molecular-weight nickel-bindin
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