Bosman Giel J C G M, Lasonder Edwin, Luten Marleen, Roerdinkholder-Stoelwinder Bregt, Novotný Vera M J, Bos Harry, De Grip Willem J
Department of Biochemistry, the Center for Molecular and Biomolecular Informatics, Nijmegen Center of Molecular Life Sciences, Radboud University Nijmegen Medical Center, Nijmegen, The Netherlands.
Transfusion. 2008 May;48(5):827-35. doi: 10.1111/j.1537-2995.2007.01630.x. Epub 2008 Mar 12.
During storage of red cells (RBCs) for transfusion, RBCs undergo a number of biochemical and morphologic changes. To be able to identify the mechanisms underlying these storage lesions, a proteomic analysis of the membranes of RBCs and their vesicles was performed during various periods of storage in blood bank conditions.
RBCs and vesicles were isolated from RBCs after various storage periods. The proteins of RBC membranes and vesicles were separated by gel electrophoresis and identified by a semiquantitative proteomic analysis.
Our findings confirm previous data, such as a storage-associated increase in hemoglobin binding to the membrane and aggregation and degradation of the integral membrane protein band 3, suggesting a remodeling of the RBC membrane during storage. Our data also show storage-dependent changes in the membrane association of proteasome and chaperone proteins, metabolic enzymes, small G proteins, and signal transduction proteins. Vesicles display similar changes in their protein composition during storage.
The results of this analysis indicate that the storage-related changes in the RBC membrane are the results of disturbance and/or acceleration of physiologic processes such as cellular aging, including vesicle formation. The latter may serve to remove damaged membrane patches that would otherwise lead to accelerated RBC removal. These data provide a framework for future studies toward the development of better storage conditions and a reduction of the side effects of RBC transfusion.
在用于输血的红细胞(RBC)储存期间,红细胞会经历许多生化和形态学变化。为了能够识别这些储存损伤背后的机制,在血库条件下的不同储存时期对红细胞及其囊泡的膜进行了蛋白质组学分析。
在不同储存期后从红细胞中分离出红细胞和囊泡。通过凝胶电泳分离红细胞膜和囊泡的蛋白质,并通过半定量蛋白质组学分析进行鉴定。
我们的研究结果证实了先前的数据,例如储存相关的血红蛋白与膜结合增加以及整合膜蛋白带3的聚集和降解,这表明在储存期间红细胞膜发生了重塑。我们的数据还显示了蛋白酶体、伴侣蛋白、代谢酶、小G蛋白和信号转导蛋白的膜结合的储存依赖性变化。囊泡在储存期间其蛋白质组成也显示出类似的变化。
该分析结果表明,红细胞膜中与储存相关的变化是细胞衰老等生理过程的干扰和/或加速的结果,包括囊泡形成。后者可能有助于去除受损的膜片,否则会导致红细胞清除加速。这些数据为未来研究开发更好的储存条件和减少红细胞输血的副作用提供了框架。