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Titlebook: Membrane Biophysics; New Insights and Met Hongda Wang,Guohui Li Book 2018 Springer Nature Singapore Pte Ltd. 2018 Membrane structure.Atomic

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Electron Microscopic Analysis of the Plasma Membrane and Cell Surface Molecules,tion achieved by electron microscopy varies in different cases and largely depends on the quality of sample preparation. For thin samples such as proteins, plunge freezing is the most popular fixation method which can preserve the details of macromolecules at atomic or near-atomic resolution. But fo
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Solid-State Nuclear Magnetic Resonance Spectroscopy of Membrane Proteins, and mechanisms of membrane proteins in their lipid-embedded environments. There are two main methods of ssNMR that have been used in membrane protein characterization; oriented sample ssNMR (OS-ssNMR) and magic-angle-spinning ssNMR (MAS-ssNMR). The former is powerful to determine the orientation of
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Mass Spectrometry of Membrane Proteins,structural characterization. The introduction of mass spectrometry to membrane proteins analyses has accelerated the identification and functional understanding of membrane proteins. In this chapter, several MS-based approaches and applications to membrane proteins were presented, such as bottom-up
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Computer Simulations to Explore Membrane Organization and Transport, to a versatile methodology for studying a broad range of biological systems at the atomic resolution. Recent advances in computer hardware and atomistic simulation algorithms have tremendously increased the timescales accessible to MD simulation by several orders of magnitude from nanosecond timesc
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https://doi.org/10.1007/978-981-10-6823-2Membrane structure; Atomic force microscopy; Single molecule force spectroscopy; Super-resolution fluor
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