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Titlebook: Metal Ions in Gene Regulation; Simon Silver,William Walden Book 1998 Springer Science+Business Media Dordrecht 1998 Escherichia coli.Regul

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书目名称Metal Ions in Gene Regulation
编辑Simon Silver,William Walden
视频video
丛书名称Chapman & Hall Microbiology Series
图书封面Titlebook: Metal Ions in Gene Regulation;  Simon Silver,William Walden Book 1998 Springer Science+Business Media Dordrecht 1998 Escherichia coli.Regul
描述This is the first volume on the role of metal ions inregulating genes to focus not only on toxicity effects of metals butalso on therole of metal ions in normal metabolisms, in bothprokaryotes and ineukaryotes.This book is a comprehensivetreatment of the role ofmetal ions in gene regulation, and it willbe of great utility forthose doing basic biological and biomedicalresearch.
出版日期Book 1998
关键词Escherichia coli; Regulation; Translation; algae; cyanobacteria; eukaryote; gene expression; genes; genetic
版次1
doihttps://doi.org/10.1007/978-1-4615-5993-1
isbn_softcover978-1-4613-7745-0
isbn_ebook978-1-4615-5993-1
copyrightSpringer Science+Business Media Dordrecht 1998
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Mechanisms for Induction and Rerepression of Ferritin Synthesisors and Hentze (1993), Klausner et al. (1993), Munro (1993), Theil (1993)]. Messages that contain functional IREs in their 5′ UTRs code for ferritin (Leibold and Guo 1992; Melefors and Hentze 1993; Klausner et al. 1993; Munro 1993; Theil 1993), erythroid δ-aminolevulinic acid synthase (δ-ALAS) (Cox
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Metallothionein Gene Regulation in Mouse Cellsrocedure, we found that a nuclear protein of 108 kDa, termed MEP-1, specifically binds to the different MRE elements of the mouse . gene promoter. MEP-1 has been purified, and footprinting studies demonstrated that purified MEP-1 specifically binds to MRE sequences. MEP-1 binding activity is also in
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Menkes’ and Wilson’s Diseases: Genetic Disorders of Copper Transport978). All organisms must have developed mechanisms for supplying copper to essential enzymes without damaging cellular constituents. It is most probable that this delivery is achieved by maintaining the copper in a complex at all times. Thus the Cu ion must be transferred from one complex to another
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Metal Ion Stress in Yeasttions of low or high concentrations in the environment or diet can result in impaired physiology (Figure 11.1). Deficiency of an essential metal ion may impair physiology through loss of critical enzymatic functions of metalloenzymes. Excessive metal concentrations may affect cellular metabolism in
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The Molecular Biology of Iron and Zinc Uptake in ,tural stability. Examples include alkaline phosphatase, alcohol dehydrogenase, aspartate transcarbamoylase, carbonic anhydrase, and several proteases. Zinc is also an important component of enzymes involved in transcription and of accessory transcription factors, the zinc-finger proteins, that regul
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Metallothionein Gene Regulation in Cyanobacteria3; Erbe et al. 1995), and one metal-responsive .-acting factor (a repressor) has been cloned and characterized (Huckle et al. 1993; Morby et al. 1993). The mechanisms involved in metalloregulation of this cyanobacterial metallothionein gene, which clearly differ from those in eukaryotes, are describ
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