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Titlebook: Metals in Biochemistry; P. M. Harrison,R. J. Hoare Book 1980 P. M. Harrison and R. J. Hoare 1980 Calcium.Manuscript.Nucleotide.attention.b

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P. M. Harrison,R. J. Hoare imaging, students in biomedical engineering, and students in radiationsafetyandradiationdosimetryeducationalprograms.Theseprof- sionals have diverse background knowledge of physics and mathematics, but they all have a common desire to improve their knowledge of the physics that underlies the applic
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The non-redox roles of metals ions, exerts its influence on a catalysed reaction are not known, and the empirical distinction between metalloenzymes and metal-activated enzymes (according to whether p. for metal binding is greater or less than 7–8) is of no help in this question.
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and biologists as well as biochemists. The field of ‘inorganic bio­ chemistry‘ is one of rapid change. Recent developments in our know­ ledge of the activity of calcium, and of the iron-sulphur proteins, are two examples, and increasing attention is being paid to non-metals as well [3]. For reasons
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Dealing with oxygen, for reaction, while ensuring that dangerous by-products are not allowed to damage the organism. In this chapter we shall see that metals (almost exclusively Fe and Cu) are used to deal with oxygen, superoxide and peroxide. Flavin is the only organic co-factor known to interact enzymatically with oxygen.
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Metal metabolism,matic insertion is also sometimes necessary for adequate selectivity of binding of a metal at its active site. In this chapter we shall survey these metabolic processes before going on to discuss some aspects in more detail.
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