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標(biāo)題: Titlebook: Membrane Protein Structure; Experimental Approac Stephen H. White (Professor of Physiology and Biop Book 1994 American Physiological Societ [打印本頁]

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書目名稱Membrane Protein Structure影響因子(影響力)




書目名稱Membrane Protein Structure影響因子(影響力)學(xué)科排名




書目名稱Membrane Protein Structure網(wǎng)絡(luò)公開度




書目名稱Membrane Protein Structure網(wǎng)絡(luò)公開度學(xué)科排名




書目名稱Membrane Protein Structure被引頻次




書目名稱Membrane Protein Structure被引頻次學(xué)科排名




書目名稱Membrane Protein Structure年度引用




書目名稱Membrane Protein Structure年度引用學(xué)科排名




書目名稱Membrane Protein Structure讀者反饋




書目名稱Membrane Protein Structure讀者反饋學(xué)科排名





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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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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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Jean-Luc Popot,Catherine de Vitry,Ariane Atteiaciplinary science and .Principles and Methods in Landscape Ecology. reconciles the geological, botanical, zoological and human perspectives. In particular ,new paradigms and theories such as percolation, metapopulation, hierarchies, source-sink models have been integrated in this last edition with t
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ciplinary science and .Principles and Methods in Landscape Ecology. reconciles the geological, botanical, zoological and human perspectives. In particular ,new paradigms and theories such as percolation, metapopulation, hierarchies, source-sink models have been integrated in this last edition with t
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David S. Cafisociplinary science and .Principles and Methods in Landscape Ecology. reconciles the geological, botanical, zoological and human perspectives. In particular ,new paradigms and theories such as percolation, metapopulation, hierarchies, source-sink models have been integrated in this last edition with t
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L. Mario Amzel,Mario A. Blanchet,Peter L. Pedersenciplinary science and .Principles and Methods in Landscape Ecology. reconciles the geological, botanical, zoological and human perspectives. In particular ,new paradigms and theories such as percolation, metapopulation, hierarchies, source-sink models have been integrated in this last edition with t
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Robert W. Williamsconcepts and interpretations emerge quite spontaneously and these are then discussed, used, discarded or subsumed into the prevailing subject paradigm. Sometimes these innovative concepts coalesce into a new sub-discipline within the broad subject tapestry of control and signal processing. This prel
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Wayne L. Hubbell,Christian Altenbachconcepts and interpretations emerge quite spontaneously and these are then discussed, used, discarded or subsumed into the prevailing subject paradigm. Sometimes these innovative concepts coalesce into a new sub-discipline within the broad subject tapestry of control and signal processing. This prel
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Stanley J. Opellady-made practical assignments and examination guidance.The rThe topics of control engineering and signal processing continue to flourish and develop. In common with general scientific investigation, new ideas, concepts and interpretations emerge quite spontaneously and these are then discussed, used
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Lukas K. Tammconcepts and interpretations emerge quite spontaneously and these are then discussed, used, discarded or subsumed into the prevailing subject paradigm. Sometimes these innovative concepts coalesce into a new sub-discipline within the broad subject tapestry of control and signal processing. This prel
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Membrane Protein Structure and Stability: Implications of the First Crystallographic Analyses basis of protein folding and stability. In contrast to water-soluble proteins, the tertiary structures of integral membrane proteins are adopted in the predominantly nonaqueous and apolar environment of the lipid bilayer. Consequently, hydrophobic interactions, believed to contribute substantially
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Hydropathy Plots and the Prediction of Membrane Protein Topology1978; Rose and Roy, 1980; Kyte and Doolittle, 1982) and membrane (Argos et al., 1982; Kyte and Doolittle, 1982; Engelman et al., 1986) proteins. They have been especially important for membrane proteins, however, because the determination of three-dimensional structures is more problematic. The data
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Use of Gene Fusions to Determine Membrane Protein Topologyded within it. The topological model can be considered a set of constraints on the possible three-dimensional structures for the protein. As such, a simple topological model contains a great deal of information about the structure of the protein, since it greatly limits the number of possible three-
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Structure of F0F1ATPases Determined by Direct and Indirect Methodsmical pathway. The reaction involves the utilization of the proton electrochemical gradient, produced by either the oxidation of substrates or the utilization of light quanta, for the generation of ATP levels up to 10. times the concentration expected from the hydrolytic equilibrium (ATP + H.O = ADP
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Experimental Determination of Membrane Protein Secondary Structure Using Vibrational and CD Spectrosue: the measurements must be reliable and specific enough to help distinguish between competing models of structure or function. An example of how this issue plays itself out can be seen in a series of papers beginning with that of Jap et al. (1983), in which it was proposed that some of the images
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High-Resolution Electron Crystallography of Membrane Proteinsrecently, x-ray crystallography seemed to be the only promising method. Progress with this technique, however, has not been as rapid as originally hoped because it is difficult to grow large and sufficiently well-ordered three-dimensional crystals. Electron crystallography of two-dimensional crystal
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Structure of Integral Membrane Proteins within Membranes via X-Ray and Neutron Diffraction: From Orin and the host lipid bilayer in determining the structure and function of that protein in the biological membrane. As a result, it has been important to develop physical techniques capable of determining, initially, the structure of an integral membrane protein and the host lipid bilayer within the
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Physical Studies of Peptide—Bilayer Interactionsaccompany nascent polypeptide chains during their transfer from the ribosomes to the lipid bilayer and that catalyze the targeting of these polypeptides to the correct membrane in the cell have been identified and characterized in recent years, the actual process of polypeptide insertion and folding
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Use of Synthetic Peptides for the Study of Membrane Protein Structureick in their lipid bilayer membranes. Protein “pumps” embedded in these membranes create the gradients, and protein ion channels modulate their discharge in response to various stimuli. Physiological processes involving ion channels range from the very elementary sensory systems of single-celled org
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Nuclear Magnetic Resonance Approaches to Membrane Protein Structurent to crystallization than water-soluble globular proteins; the multidimensional NMR methods that are so successful in determining the structures of globular proteins in solution are severely limited by the slow reorientation rates of proteins complexed with lipids; and molecular dynamics calculatio
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Physical Studies of Peptide—Bilayer Interactionse insertion process is catalyzed by other proteins in vivo, the final product, i.e., the folded polypeptide in the membrane, must eventually attain a low energy state in the lipid bilayer. A thorough knowledge of the thermodynamic laws that describe the pertinent protein—lipid and protein—protein in
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Book 1994evelopment 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
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ositions. These images show and mark the anatomical points of the patient lying in the position that breast radiation therapy would be performed. .This text serves as a valuable resource for clinicians, residents and fellows practicing and learning breast cancer radiotherapy..978-1-4899-9251-2978-1-4614-5116-7
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