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Titlebook: RNA Editing; H. Ulrich Göringer Book 2008 Springer-Verlag Berlin Heidelberg 2008 Chloroplast.Protozoa.RNA.evolution.gene.gene expression.g

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Evolutionary Aspects of RNA Editing, different forms of RNA editing may have evolved from pre-existing activities. It appears that repeated and widespread independent evolution of RNA editing occurred. The diversity in origins seems to be mirrored in the range of possible functions of editing: (1) Multiple proteins could be encoded by
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RNA Editing by Adenosine Deaminases that Act on RNA (ADARs), ADAR enzymes, their molecular architecture, occurrence, and substrate specificity is given. Consequences of editing, studies in model organisms, and implications for other double-stranded RNA-dependent processes are discussed.
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Book 2008the project started. However, over the many months that it took to complete the book, it was interesting to realize that indeed “printing-type editing” and “biological editing” have many matching characteristics. Therefore, the quote by the well-known ? lm editor Verna Fields (1918–1982), “I wish th
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RNA Editing in Chloroplasts, sites. Chloroplast transformation approaches have revealed that .-elements for editing are commonly located in the upstream and proximal regions of editing sites. Development of an in vitro chloroplast RNA editing system has enabled us to investigate biochemical processes of RNA editing, e.g., detection of .-acting factors.
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,RNA Editing Accessory Factors — the Example of mHel61p,ture and function of the catalytic machinery. As an example, we concentrate on the mitochondrial DExH/D protein mHel61p, a putative RNA helicase and/or RNPase. We summarize the current structural, genetic and biochemical knowledge on mHel61p, and provide an outlook onto dynamic processes of the editing reaction.
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Nucleic Acids and Molecular Biologyhttp://image.papertrans.cn/r/image/820159.jpg
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