Biophysical Approaches for the Study of Membrane Structure Part A

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Gebonden, blz. | Engels
Elsevier Science | 2024
ISBN13: 9780443293047
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Elsevier Science e druk, 2024 9780443293047
Onderdeel van serie Methods in Enzymology
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Biophysical Approaches for the Study of Membrane Structure, Part A, Volume 700 explores lipid membrane asymmetry and lateral heterogeneity. A burst of recent research has shown that bilayers whose leaflets differ in their physical properties—such as composition, phase state, or lateral stress—exhibit many fascinating new characteristics, but also pose a host of new challenges related to their creation, characterization, simulation, and theoretical description. Chapters in this new release include Evaluation of functional transbilayer coupling in live cells by controlled lipid exchange and imaging FCS, Effects of lateral and hydrostatic pressure on membrane structure and properties, and much more.

Other sections cover Using the yeast vacuole as a system to test the lipid drivers of membrane heterogeneity in living cells, Direct quantification of cellular membrane lipids using ratiometric fluorescence sensors, The spectral phasor approach to resolving membrane order with environmentally sensitive dyes, The use of hemifusion to create asymmetric giant unilamellar vesicles: Insights on induced order domains, Advanced microscopy methods to study membrane pores, Use of cryo-EM to study membrane phase separation, and much more.

Specificaties

ISBN13:9780443293047
Taal:Engels
Bindwijze:Gebonden

Inhoudsopgave

Preface<br>Tobias Baumgart and Markus Deserno<br>1. Evaluation of functional transbilayer coupling in live cells by controlled lipid exchange and imaging FCS<br>Nirmalya Bag, Arpita Tripathy and Sudipti Priyadarsinee<br>2. Fluorescence imaging of lamellipodin mediated biomolecular condensates on solid supported lipid bilayer membranes<br>Tobias Baumgart<br>3. Effects of lateral and hydrostatic pressure on membrane structure and properties<br>Nick Brooks<br>4. Using the yeast vacuole as a system to test the lipid drivers of membrane heterogeneity in living cells<br>Itay Budin, Israel Juarez-Contreras and Hyesoo Kim<br>5. The spectral phasor approach to resolving membrane order with environmentally sensitive dyes<br>Rumiana Dimova and Agustín Mangiarotti<br>6. The use of hemifusion to create asymmetric giant unilamellar vesicles: Insights on induced order domains<br>Thais A. Enoki<br>7. Advanced microscopy methods to study membrane pores<br>Ana J. García-Sáez<br>8. Use of cryo-EM to study membrane phase separation<br>Frederick Heberle and M. Neal Waxham<br>9. Using lipid binding proteins and advanced microscopy to study lipid domains<br>TOSHIHIDE KOBAYASHI, NARIO TOMISHIGE, KOHTA TAKAHASHI, BRIGITTE POLLET, LUDOVIC RICHERT and YVES MÉLY<br>10. Structural characterization of lateral phase separation in polymer-lipid hybrid membranes<br>Cecília Leal, Nurila Kambar, Minh N. Do, Corey Snyder and Yoo Kyung Go<br>11. Applications of phase-separating multi-bilayers in protein-membrane domain interactions<br>Kandice R. Levental and Hong-Yin Wang<br>12. Studying lipid flip-flop using NMR and TR-SANS<br>Drew Marquardt, Dominik Dziura and Maksymilian Dziura<br>13. Thickness determination of hydroperoxidized lipid bilayers from medium-resolution cryo-TEM images<br>Carlos Marques, André Schroder, Marc Schmutz, Pierre Muller and Eulalie J. Lafarge<br>14. Structure of symmetric and asymmetric lipid membranes from joint SAXS/SANS<br>Georg Pabst, Enrico Semeraro and Moritz Frewein<br>15. Quantification of membrane geometry and protein sorting on cell membrane protrusions using fluorescence microscopy<br>Zheng Shi and Shilong Yang<br>16. A TIRF microscopy-based method for observing the uptake of individual particles by clathrin mediated endocytosis<br>Jeanne Stachowiak, Grant Ashby, Kayla Keng and Carl Hayden<br>17. Pore-spanning membranes as a tool to investigate lateral lipid membrane heterogeneity<br>Claudia Steinem and Larissa Socrier<br>18. MαCD based plasma membrane outer leaflet lipid exchange in mammalian cells to study insulin receptor activity<br>Pavana Suresh and Erwin London
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        Biophysical Approaches for the Study of Membrane Structure Part A