Please use this identifier to cite or link to this item: http://repositorio.unicamp.br/jspui/handle/REPOSIP/85889
Type: Artigo de periódico
Title: Brij Detergents Reveal New Aspects Of Membrane Microdomain In Erythrocytes
Author: Casadei B.R.
De Oliveira Carvalho P.
Riske K.A.
Barbosa R.D.M.
De Paula E.
Domingues C.C.
Abstract: Membrane microdomains enriched in cholesterol, sphingolipids (rafts), and specific proteins are involved in important physiological functions. However their structure, size and stability are still controversial. Given that detergent-resistant membranes (DRMs) are in the liquid-ordered state and are rich in raft-like components, they might correspond to rafts at least to some extent. Here we monitor the lateral order of biological membranes by characterizing DRMs from erythrocytes obtained with Brij-98, Brij-58, and TX-100 at 4°C and 37°C. All DRMs were enriched in cholesterol and contained the raft markers flotillin-2 and stomatin. However, sphingomyelin (SM) was only found to be enriched in TX-100-DRMs-a detergent that preferentially solubilizes the membrane inner leaflet-while Band 3 was present solely in Brij-DRMs. Electron paramagnetic resonance spectra showed that the acyl chain packing of Brij-DRMs was lower than TX-100-DRMs, providing evidence of their diverse lipid composition. Fatty acid analysis revealed that the SM fraction of the DRMs was enriched in lignoceric acid, which should specifically contribute to the resistance of SM to detergents. These results indicate that lipids from the outer leaflet, particularly SM, are essential for the formation of the liquid-ordered phase of DRMs. At last, the differential solubilization process induced by Brij-98 and TX-100 was monitored using giant unilamellar vesicles. This study suggests that Brij and TX-100-DRMs reflect different degrees of lateral order of the membrane microdomains. Additionally, Brij DRMs are composed by both inner and outer leaflet components, making them more physiologically relevant than TX-100-DRMs to the studies of membrane rafts.
Editor: Informa Healthcare
Rights: fechado
Identifier DOI: 10.3109/09687688.2014.949319
Address: http://www.scopus.com/inward/record.url?eid=2-s2.0-84907176337&partnerID=40&md5=6bb250dcc4973c8a8b71d968ff9871f6
Date Issue: 2014
Appears in Collections:Unicamp - Artigos e Outros Documentos

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