## Abstract In the originally published version of this article the first and surnames of the authorship were transposed. This notice is being published to amend the error and corrected online files of the original article are now available. J. Cell. Biochem. 108: 536, 2009. ยฉ 2009 WileyโLiss, Inc.
Hypoxia-induced modifications in plasma membranes and lipid microdomains in A549 cells and primary human alveolar cells
โ Scribed by Laura Botto; Egidio Beretta; Alessandra Bulbarelli; Ilaria Rivolta; Barbara Lettiero; Biagio Eugenio Leone; Giuseppe Miserocchi; Paola Palestini
- Publisher
- John Wiley and Sons
- Year
- 2008
- Tongue
- English
- Weight
- 527 KB
- Volume
- 105
- Category
- Article
- ISSN
- 0730-2312
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โฆ Synopsis
Abstract
We evaluated the response to mild hypoxia exposure of A549 alveolar human cells and of a continuous alveolar cell line from human excised lungs (A30) exposed to 5% O~2~ for 5 and 24 h. No signs of increased peroxidation and of early apoptosis were detected. After 24 h of hypoxia total cell proteins/DNA ratio decreased significantly by about 20%. Similarly, we found a decrease in membrane phospholipid and cholesterol content. The membrane fluidity assessed by fluorescence anisotropy measurements was unchanged. We also prepared the detergent resistant membrane fraction (DRM) to analyze the distribution of the two types of lipid microdomains, caveolae and lipid rafts. The DRM content of Cavโ1, marker of caveolae, was decreased, while CD55, marker of lipid rafts, increased in both cell lines. Total content of these markers in the membranes was unchanged indicating remodelling of their distribution between detergentโresistant and detergentโsoluble fraction of the cellular membrane. The changes in protein markers distribution did not imply changes in the corresponding mRNA, except in the case of Cavโ1 for A30 line. In the latter case we found a parallel decrease in Cavโ1 and in the corresponding mRNA. We conclude that an exposure to a mild degree of hypoxia triggers a significant remodelling of the lipid microdomains expression, confirming that they are highly dynamic structures providing a prompt signalling platform to changes of the pericellular microenvironment. J. Cell. Biochem. 105: 503โ513, 2008. ยฉ 2008 WileyโLiss, Inc.
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