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Titlebook: Artificial Nucleases; Marina A. Zenkova Book 2004 Springer-Verlag Berlin Heidelberg 2004 Catalysis.Cleavage.Conjugates.DNA.Enzyme mimics.N

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發(fā)表于 2025-3-21 19:39:00 | 只看該作者 |倒序?yàn)g覽 |閱讀模式
期刊全稱Artificial Nucleases
影響因子2023Marina A. Zenkova
視頻videohttp://file.papertrans.cn/163/162708/162708.mp4
發(fā)行地址First book to present a concise overview of the rapidly developing field of artificial nucleases and their application.Includes supplementary material:
學(xué)科分類Nucleic Acids and Molecular Biology
圖書封面Titlebook: Artificial Nucleases;  Marina A. Zenkova Book 2004 Springer-Verlag Berlin Heidelberg 2004 Catalysis.Cleavage.Conjugates.DNA.Enzyme mimics.N
影響因子The development of agents capable of cleaving RNA and DNA has attracted considerable attention from researchers in the last few years, because of the immediate and very important applications they can find in the emerging fields of biotechnology and pharmacology. There are essentially two classes of these agents - nucleases that occur naturally inside cells and synthetically produced artificial nucleases. The first class includes protein enzyme nucle- ases and catalytic RNA structured ribozymes that perform cleavage of the phosphodiester bonds in nucleic acids according to a hydrolytic pathway in the course of different biochemical processes in the cell. A different pathway is used by some antibiotics which cleave DNA via redox-based mechanisms resulting in oxidative damage of nucleotide units and breakage of the DNA backbone. The above molecules are indispensable tools for manipulating nucleic acids and processing RNA; DNA-cleaving antibiotics and cytotoxic ribonucleases have demonstrated utility as chemotherapeutic agents. The second class, artificial nucleases, are rationally designed to imitate the active centers of natural enzymes by simple structures possessing minimal sets o
Pindex Book 2004
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Günther Schlag,Peter B?sch,Helene Matraser natural ribonucleases such as: higher RNA sequence cleavage specificity, sequence flexibility in designing the site of RNA cleavage, and a wider range of conditions at which artificial ribonucleases are functional (Komiyama et al. 2001).
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Site-Specific Artificial Ribonucleases: Conjugates of Oligonucleotides with Catalytic Groups,998; Sil’nikov and Vlassov 2001). Apart from being useful molecular biology tools (Hüber 1993; Giegé et aL 2000), such compounds may provide new opportunities for design of therapeutics targeting specific messenger RNAs and viral genomic RNAs (Uhlmann and Peymann 1990; Komyiama and Sumaoka 1998; Trawick et aL 1998; Crook et aL 2000).
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https://doi.org/10.1007/978-3-642-18510-6Catalysis; Cleavage; Conjugates; DNA; Enzyme mimics; Nucleotide; RNA; biotechnology; enzymes; biochemical eng
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Y. Moazami-Goudarzi,C. Khodadadyanled as nucleotide units, joined together by phosphate diester links. Given the need to permanently retain genetic information, it is not surprising that the phosphate diester is far more kinetically stable than other common biological functional groups such as amides or esters (Westheimer 1987). How
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