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Titlebook: Membrane Spectroscopy; Ernst Grell Book 1981 Springer-Verlag Berlin Heidelberg 1981 Biomembran.Membrane.Spectroscopy.Spektroskopie.protein

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書目名稱Membrane Spectroscopy
編輯Ernst Grell
視頻videohttp://file.papertrans.cn/631/630397/630397.mp4
叢書名稱Molecular Biology, Biochemistry and Biophysics‘ Molekularbiologie, Biochemie und Biophysik
圖書封面Titlebook: Membrane Spectroscopy;  Ernst Grell Book 1981 Springer-Verlag Berlin Heidelberg 1981 Biomembran.Membrane.Spectroscopy.Spektroskopie.protein
描述The last 10 years have seen an enormous growth in our understanding of the molecular organisation of biological membranes. Experimental methods have been devised to meas- ure the translational and rotational mobility of lipids and proteins, thereby furnishing a quantitative basis for the concept of membrane fluidity. Likewise, the asymmetry of bi- layer membranes as evidenced by the asymmetric insertion of proteins and lipids has been put on firm experimental ground. At higher molecular resolution it has been possible to provide a detailed pi2ture of the molecular conformation and dynamics of lipids and, to some extent, even of small peptides embedded in a bilayer matrix. Many of these achieve- ments would not have been possible without the application of modem spectroscopic methods. Since these techniques are scattered in a variety of specialized textbooks the present monograph attempts to describe the key spectroscopic methods employed in present-day membrane research at an intermediate level. There is no question that the elusive detailed structure of the biological membrane demands a multiplicity of experi- mental approaches and that no single spectroscopic method can cover the
出版日期Book 1981
關(guān)鍵詞Biomembran; Membrane; Spectroscopy; Spektroskopie; proteins
版次1
doihttps://doi.org/10.1007/978-3-642-81537-9
isbn_softcover978-3-642-81539-3
isbn_ebook978-3-642-81537-9Series ISSN 0077-0221
issn_series 0077-0221
copyrightSpringer-Verlag Berlin Heidelberg 1981
The information of publication is updating

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0077-0221 ods have been devised to meas- ure the translational and rotational mobility of lipids and proteins, thereby furnishing a quantitative basis for the concept of membrane fluidity. Likewise, the asymmetry of bi- layer membranes as evidenced by the asymmetric insertion of proteins and lipids has been p
地板
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Raman Spectroscopy of Membrane Constituents and Related Molecules,and it will be understood that lasers are used as the source of excitation. The rapid growth of biological Raman spectroscopy that followed the development of the laser has resulted in a bibliography with few references prior to 1967.
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Nuclear Magnetic Resonance Studies of the Phospholipid Bilayer Membrane,phenomena as maintenance of ionic gradients and transmembrane potentials, activities of membrane-bound enzymes, interactions between membrane proteins, transmembrane signal transmission, intercellular communication, and manifestations of cellular development and cell transformation all depend on the structure and fluidity of the lipid bilayer.
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Nuclear Magnetic Resonance Studies of the Phospholipid Bilayer Membrane,s efforts have been directed toward determining the motional state of the lipid components of the membrane, the motivation being the contention that the lipid bilayer is the basic matrix in which membrane proteins are embedded to form the biological membrane. As such, it is likely that such diverse
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Absorption and Circular Dichroism Spectroscopies,ing correct and meaningful information from these spectra is not so simple and quick. In this chapter an effort will be made stepwise to present the problem of the application to the study of biomembranes of the physical methods of ultraviolet absorption and circular dichroism spectroscopies. This w
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Optical Spectroscopy of Monolayers, Multilayer Assemblies, and Single Model Membranes,ticular — have greatly contributed to that progress. The success of the probe approach depends on the ability to introduce the probe into a selected region of the membrane and to observe interpretable signals from it.
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