Ciana Annarita, Achilli Cesare, Balduini Cesare, Minetti Giampaolo
University of Pavia, Department of Biochemistry, Pavia, Italy.
Biochim Biophys Acta. 2011 Jan;1808(1):183-90. doi: 10.1016/j.bbamem.2010.08.019. Epub 2010 Aug 31.
Lipid rafts are local inhomogeneities in the composition of the plasma membrane of living cells, that are enriched in sphingolipids and cholesterol in a liquid-ordered state, and proteins involved in receptor-mediated signalling. Interactions between lipid rafts and the cytoskeleton have been observed in various cell types. They are isolated as a fraction of the plasma membrane that resists solubilization by nonionic detergents at 4°C (detergent-resistant membranes, DRMs). We have previously described that DRMs are anchored to the spectrin-based membrane skeleton in human erythrocytes and can be released by increasing the pH and ionic strength of the solubilization medium with sodium carbonate. It was unexplained why this carbonate treatment was necessary and why this requirement was not reported by other workers in this area. We show here that when contaminating leukocytes are present in erythrocyte preparations that are subjected to detergent treatment, the isolation of DRMs can occur without the requirement for carbonate treatment. This is due to the uncontrolled breakdown of erythrocyte membrane components by hydrolases that are released from contaminating neutrophils that lead to proteolytic disruption of the supramolecular assembly of the membrane skeleton. Results presented here corroborate the concept that DRMs are anchored to the membrane skeleton through electrostatic interactions that most likely involve the spectrin molecule.
脂筏是活细胞质膜成分中的局部不均匀区域,富含处于液晶态的鞘脂和胆固醇以及参与受体介导信号传导的蛋白质。在各种细胞类型中都观察到了脂筏与细胞骨架之间的相互作用。它们作为质膜的一部分被分离出来,在4℃下能抵抗非离子去污剂的溶解作用(抗去污剂膜,DRMs)。我们之前曾描述过,在人类红细胞中,DRMs锚定在基于血影蛋白的膜骨架上,并且可以通过用碳酸钠提高溶解介质的pH值和离子强度来释放。之前无法解释为什么需要这种碳酸盐处理,以及为什么该领域的其他研究人员没有报道这一要求。我们在此表明,当受去污剂处理的红细胞制剂中存在污染的白细胞时,DRMs的分离无需碳酸盐处理即可发生。这是由于从污染的中性粒细胞释放的水解酶导致红细胞膜成分不受控制地分解,进而导致膜骨架超分子组装的蛋白水解破坏。此处给出的结果证实了DRMs通过最有可能涉及血影蛋白分子的静电相互作用锚定在膜骨架上这一概念。