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Titlebook: Membrane Protein Structure; Experimental Approac Stephen H. White (Professor of Physiology and Biop Book 1994 American Physiological Societ

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書目名稱Membrane Protein Structure
副標(biāo)題Experimental Approac
編輯Stephen H. White (Professor of Physiology and Biop
視頻videohttp://file.papertrans.cn/631/630379/630379.mp4
概述Focuses on membrane protein structure.The reviews presented here emphasize fundamental ideas and provide an entry to the diverse and complex literature.The four major sections deal with the general na
叢書名稱Methods in Physiology
圖書封面Titlebook: Membrane Protein Structure; Experimental Approac Stephen H. White (Professor of Physiology and Biop Book 1994 American Physiological Societ
描述Studies of receptors, ion channels, and other membrane proteins require a solid understanding of the structural principles of these important biomolecules. Membrane protein structure is, however, a very challenging field. The structures of only three types of transmembrane proteins have been determined to moderate or high resolution during the last two decades, a period during which the amino acid sequences of hundreds, if not thousands, of membrane proteins have been reported. As a result, the creation of structural models to serve as guides for studies of receptors, channels, and other membrane proteins has become crucially important. This book has been assembled in order to share the experiences and findings of expert researchers in protein structure and structure-prediction methods as well as membrane biophysics and lipid physical chemistry, whose work establishes the basis for the development of suitable model structures. The reviews presented here emphasize fundamental ideas and provide an entry to the diverse and complex literature. The four major sections deal with the general nature of the membrane protein structure problem, biochemical and molecular biological approaches
出版日期Book 1994
關(guān)鍵詞biomolecules; biophysics; gene; membrane; physiology; protein structure; proteins; topology
版次1
doihttps://doi.org/10.1007/978-1-4614-7515-6
isbn_ebook978-1-4614-7515-6Series ISSN 2628-7471 Series E-ISSN 2628-748X
issn_series 2628-7471
copyrightAmerican Physiological Society 1994
The information of publication is updating

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2628-7471 literature.The four major sections deal with the general naStudies of receptors, ion channels, and other membrane proteins require a solid understanding of the structural principles of these important biomolecules. Membrane protein structure is, however, a very challenging field. The structures of
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High-Resolution Electron Crystallography of Membrane Proteinsed because it is difficult to grow large and sufficiently well-ordered three-dimensional crystals. Electron crystallography of two-dimensional crystals is now a viable alternative that is particularly suitable for structural studies of membrane proteins because of their natural propensity to form two-dimensional arrays.
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Structure of Integral Membrane Proteins within Membranes via X-Ray and Neutron Diffraction: From Orimembrane in as much detail as possible and, ultimately, of determining the response of each of these structures to a perturbation (e.g., the physical state of the solvating lipid), including protein function.
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Folding and Assembly of Integral Membrane Proteins: An Introductionof a bundle of transmembrane .-helices. Since spectroscopic data on bacterial outer membrane porins (Rosenbusch, 1974) indicated that these integral proteins were primarily made up of .-sheets, it was clear that the model offered by BR was not universally transposable.
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cludes a dedicated atlas section.Includes supplementary mate.Breast cancer is the most common malignancy among the female population. With advances in systemic therapies and modern radiotherapy techniques, breast cancer patients can have a long life-expectancy. However, it is crucial that radiation
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