Matches in SemOpenAlex for { <https://semopenalex.org/work/W3128721888> ?p ?o ?g. }
- W3128721888 abstract "This perspective describes advances in determining membrane protein structures in lipid bilayers using small-angle neutron scattering (SANS). Differentially labeled detergents with a homogeneous scattering length density facilitate contrast matching of detergent micelles; this has previously been used successfully to obtain the structures of membrane proteins. However, detergent micelles do not mimic the lipid bilayer environment of the cell membrane in vivo . Deuterated vesicles can be used to obtain the radius of gyration of membrane proteins, but protein-protein interference effects within the vesicles severely limits this method such that the protein structure cannot be modeled. We show herein that different membrane protein conformations can be distinguished within the lipid bilayer of the bicontinuous cubic phase using contrast-matching. Time-resolved studies performed using SANS illustrate the complex phase behavior in lyotropic liquid crystalline systems and emphasize the importance of this development. We believe that studying membrane protein structures and phase behavior in contrast-matched lipid bilayers will advance both biological and pharmaceutical applications of membrane-associated proteins, biosensors and food science." @default.
- W3128721888 created "2021-02-15" @default.
- W3128721888 creator A5009029749 @default.
- W3128721888 creator A5027967044 @default.
- W3128721888 creator A5067713493 @default.
- W3128721888 creator A5069486109 @default.
- W3128721888 creator A5074402443 @default.
- W3128721888 creator A5087229395 @default.
- W3128721888 date "2021-02-09" @default.
- W3128721888 modified "2023-10-18" @default.
- W3128721888 title "Membrane Protein Structures in Lipid Bilayers; Small-Angle Neutron Scattering With Contrast-Matched Bicontinuous Cubic Phases" @default.
- W3128721888 cites W111537035 @default.
- W3128721888 cites W1486757980 @default.
- W3128721888 cites W1549136544 @default.
- W3128721888 cites W1971045943 @default.
- W3128721888 cites W1976821550 @default.
- W3128721888 cites W1987134040 @default.
- W3128721888 cites W1990136319 @default.
- W3128721888 cites W1997394451 @default.
- W3128721888 cites W2007462737 @default.
- W3128721888 cites W2014270699 @default.
- W3128721888 cites W2029235012 @default.
- W3128721888 cites W2031091369 @default.
- W3128721888 cites W2032216665 @default.
- W3128721888 cites W2036295204 @default.
- W3128721888 cites W2036862423 @default.
- W3128721888 cites W2037608127 @default.
- W3128721888 cites W2050063833 @default.
- W3128721888 cites W2050123241 @default.
- W3128721888 cites W2056104015 @default.
- W3128721888 cites W2059845571 @default.
- W3128721888 cites W2069036023 @default.
- W3128721888 cites W2072013068 @default.
- W3128721888 cites W2077232761 @default.
- W3128721888 cites W2077698008 @default.
- W3128721888 cites W2084444974 @default.
- W3128721888 cites W2085979534 @default.
- W3128721888 cites W2094405470 @default.
- W3128721888 cites W2111893693 @default.
- W3128721888 cites W2129333842 @default.
- W3128721888 cites W2141198131 @default.
- W3128721888 cites W2144639363 @default.
- W3128721888 cites W2154663309 @default.
- W3128721888 cites W2158832659 @default.
- W3128721888 cites W2168691609 @default.
- W3128721888 cites W2183696852 @default.
- W3128721888 cites W2185050045 @default.
- W3128721888 cites W2262336296 @default.
- W3128721888 cites W2307321068 @default.
- W3128721888 cites W2318092931 @default.
- W3128721888 cites W2326859466 @default.
- W3128721888 cites W2418297362 @default.
- W3128721888 cites W2425778551 @default.
- W3128721888 cites W2435925910 @default.
- W3128721888 cites W2440038312 @default.
- W3128721888 cites W2475289418 @default.
- W3128721888 cites W2560701124 @default.
- W3128721888 cites W2571471998 @default.
- W3128721888 cites W2574849687 @default.
- W3128721888 cites W2594539488 @default.
- W3128721888 cites W2735711324 @default.
- W3128721888 cites W2742174779 @default.
- W3128721888 cites W2752707778 @default.
- W3128721888 cites W2770586211 @default.
- W3128721888 cites W2773930975 @default.
- W3128721888 cites W2785749944 @default.
- W3128721888 cites W2808722599 @default.
- W3128721888 cites W2890035512 @default.
- W3128721888 cites W2891924330 @default.
- W3128721888 cites W2905193590 @default.
- W3128721888 cites W2911956563 @default.
- W3128721888 cites W2912675332 @default.
- W3128721888 cites W2917973694 @default.
- W3128721888 cites W2943987854 @default.
- W3128721888 cites W2944996382 @default.
- W3128721888 cites W2945040192 @default.
- W3128721888 cites W2984199398 @default.
- W3128721888 cites W3016341291 @default.
- W3128721888 cites W3043621420 @default.
- W3128721888 cites W3049602153 @default.
- W3128721888 cites W4234094017 @default.
- W3128721888 cites W4236227874 @default.
- W3128721888 cites W4251061645 @default.
- W3128721888 doi "https://doi.org/10.3389/fchem.2020.619470" @default.
- W3128721888 hasPubMedCentralId "https://www.ncbi.nlm.nih.gov/pmc/articles/7903247" @default.
- W3128721888 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/33644002" @default.
- W3128721888 hasPublicationYear "2021" @default.
- W3128721888 type Work @default.
- W3128721888 sameAs 3128721888 @default.
- W3128721888 citedByCount "4" @default.
- W3128721888 countsByYear W31287218882022 @default.
- W3128721888 countsByYear W31287218882023 @default.
- W3128721888 crossrefType "journal-article" @default.
- W3128721888 hasAuthorship W3128721888A5009029749 @default.
- W3128721888 hasAuthorship W3128721888A5027967044 @default.
- W3128721888 hasAuthorship W3128721888A5067713493 @default.
- W3128721888 hasAuthorship W3128721888A5069486109 @default.
- W3128721888 hasAuthorship W3128721888A5074402443 @default.
- W3128721888 hasAuthorship W3128721888A5087229395 @default.
- W3128721888 hasBestOaLocation W31287218881 @default.