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Titlebook: Circular Dichroism and the Conformational Analysis of Biomolecules; Gerald D. Fasman Book 1996 Springer Science+Business Media New York 19

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Das Grundmodell der Regressionsanalyse,olypeptide chain reverses its overall direction. Using a hard-sphere model-building technique, Venkatachalam (1968) explored favorable H-bonded conformations of the three consecutive amide units of β turns (see Chou and Fasman, 1977, and references therein). The x-ray structural analysis of an incre
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https://doi.org/10.1007/978-3-531-90141-1n of membrane proteins for x-ray diffraction studies, and because of the restricted movement of the proteins embedded in the membrane for NMR studies (Kühlbrandt, 1988; Smith and Griffin, 1988). X-ray crystallography is still the only routine method for determining the three-dimensional structures o
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Das Grundmodell der Regressionsanalyse,nomenological theory based on classical electrodynamics. The quantum approach is preferable from a strict theoretical point of view, but is hard to implement in real calculations on molecules as large and complex as the nucleic acids. The classical theory is easier to implement, but has less theoret
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,Binäre logistische Regression,bases are the chromophores that absorb ultraviolet light to undergo electronic transitions, which begin at 300 nm and continue into the vacuum UV region. In the case of DNA these bases are adenine (A), guanine (G), cytosine (C), and thymine (T); in the case of RNA the bases are A, G, C, and uracil (
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,Binäre logistische Regression,ted to the ultraviolet wavelength region below 320 nm, where nucleic acids and proteins have optical activity as a result of their secondary structures. Since protein secondary structures generally dominate CD spectra at wavelengths below 250 nm, the region from about 250 to 320 nm provides a valuab
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Marco Giesselmann,Michael Windzioding . in cells (Ellis and Van der Vies, 1991; Zeilstra-Ryalls ..,1991; Nisslon and Anderson, 1991; Gething and Sambrook, 1992; Hartle and Martin, 1992; Jaenicke, 1993). Many chaperones were originally discovered as heat-shock proteins. Of the chaperones, the chaperonin family has the most distincti
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,Implikationen für Forschung und Praxis,ications of the technique as amply demonstrated in the preceding chapters of this book. In retrospect, it is amazing that so much useful structural information has been gleaned from ECD spectra which typically provide only a few independent, poorly resolved spectral features in these molecules. The
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,Implikationen für Forschung und Praxis,ules (Grosjean and Legrand, 1960). Most of the spectrometers that measure CD have relied on conventional laboratory sources of broad-spectrum UV and visible light, particularly the high-pressure xenon arc. Around 1970, the frontiers of CD spectroscopy were extended into the vacuum UV by spectrometer
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