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Titlebook: Carbohydrates and Nucleic Acids; Lawrence J. Berliner,Jacques Reuben Book 1992 Springer Science+Business Media New York 1992 Oligosacchari

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书目名称Carbohydrates and Nucleic Acids
编辑Lawrence J. Berliner,Jacques Reuben
视频videohttp://file.papertrans.cn/222/221545/221545.mp4
丛书名称Biological Magnetic Resonance
图书封面Titlebook: Carbohydrates and Nucleic Acids;  Lawrence J. Berliner,Jacques Reuben Book 1992 Springer Science+Business Media New York 1992 Oligosacchari
描述In the past ten years or so, biological magnetic resonance (NMR and ESR) has fully blossomed and become highly branched. In the 1970s and earlier, a practitioner in biological magnetic resonance was using virtually all of the available methods suitable for his research, with the latter covering a diverse range of systems. Today, the focus of an individual laboratory is actually much narrower, with respect to both the methods and the systems investigated. Thus, those who investigate protein structure by multi­ dimensional NMR spectroscopy do not usually engage in studies involving in vivo spectroscopy. The conferences on biological magnetic resonance now have parallel sessions rather than the single, common session of earlier days. Moreover, topical meetings are becoming more frequent. Therefore, this and future volumes of our series will also focus on specific topical areas. We are proud to present Volume 10 of our series. It focuses on Carbohydrates and Nucleic Acids. In an extensive chapter, Kamerling and Vliegenthart use oligosaccharide-alditols released from mucin-type- glycoproteins to illustrate the power of proton NMR spectroscopy in the determination of carbohydrate structu
出版日期Book 1992
关键词Oligosaccharid; Oligosaccharide; magnetic resonance; protein; proteins; spectroscopy
版次1
doihttps://doi.org/10.1007/978-1-4757-9474-8
isbn_softcover978-1-4757-9476-2
isbn_ebook978-1-4757-9474-8Series ISSN 0192-6020 Series E-ISSN 2512-2215
issn_series 0192-6020
copyrightSpringer Science+Business Media New York 1992
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0192-6020 rlier, a practitioner in biological magnetic resonance was using virtually all of the available methods suitable for his research, with the latter covering a diverse range of systems. Today, the focus of an individual laboratory is actually much narrower, with respect to both the methods and the sys
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NMR Studies of Nucleic Acids and Their Complexes,interconverting conformers. In addition, the solution conditions can be varied widely, changing solvent composition, ions, pH, temperature and so forth without worrying about disrupting the crystallization conditions. These advantages have made NMR an attractive alternative to crystallography for de
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Convexity defined by means of given functionin. In each carbohydrate—amino acid linkage the anomeric center of the involved monosac-charide and a functional group in the side chain of the involved amino acid are connected. For .-glycoproteins the carbohydrate—amino acid linkage consists of .-acetyl-β-.-glucosamine coupled to the amide functio
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Non-Connected Convexities and Applicationsinterconverting conformers. In addition, the solution conditions can be varied widely, changing solvent composition, ions, pH, temperature and so forth without worrying about disrupting the crystallization conditions. These advantages have made NMR an attractive alternative to crystallography for de
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0192-6020 oligosaccharide-alditols released from mucin-type- glycoproteins to illustrate the power of proton NMR spectroscopy in the determination of carbohydrate structu978-1-4757-9476-2978-1-4757-9474-8Series ISSN 0192-6020 Series E-ISSN 2512-2215
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High-Resolution ,H-Nuclear Magnetic Resonance Spectroscopy of Oligosaccharide-Alditols Released fro and glycolipids. Comprehensive reviews concerning the biochemistry, biology, immunology, and chemistry of these substances have been published (Aspinall, 1982, 1983, 1985; Berger .., 1982; Dwek .., 1988; Feizi and Childs, 1987; Ginsburg, 1978, 1982, 1987; Ginsburg and Robbins, 1981, 1984; Gottschal
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