Department of Biochemistry, The Faculty of Medicine, The Hebrew University of Jerusalem, Jerusalem 9112001, Israel.
Blood Bank, Hadassah University Hospital, Jerusalem 9112001, Israel.
Int J Mol Sci. 2023 Aug 13;24(16):12755. doi: 10.3390/ijms241612755.
Red blood cell (RBC) deformability, expressing their ability to change their shape, allows them to minimize their resistance to flow and optimize oxygen delivery to the tissues. RBC with reduced deformability may lead to increased vascular resistance, capillary occlusion, and impaired perfusion and oxygen delivery. A reduction in deformability, as occurs during RBC physiological aging and under blood storage, is implicated in the pathophysiology of diverse conditions with circulatory disorders and anemias. The change in RBC deformability is associated with metabolic and structural alterations, mostly uncharacterized. To bridge this gap, we analyzed the membrane protein levels, using mass spectroscopy, of RBC with varying deformability determined by image analysis. In total, 752 membrane proteins were identified. However, deformability was positively correlated with the level of only fourteen proteins, with a highly significant inter-correlation between them. These proteins are involved in membrane rafting and/or the membrane-cytoskeleton linkage. These findings suggest that the reduction of deformability is a programmed (not arbitrary) process of remodeling and shedding of membrane fragments, possibly mirroring the formation of extracellular vesicles. The highly significant inter-correlation between the deformability-expressing proteins infers that the cell deformability can be assessed by determining the level of a few, possibly one, of them.
红细胞(RBC)的变形能力,即其改变形状的能力,使它们能够最大限度地降低流动阻力,优化向组织输送氧气。变形能力降低的 RBC 可能导致血管阻力增加、毛细血管阻塞以及灌注和氧气输送受损。在 RBC 生理老化和血液储存期间发生的变形能力降低与伴有循环障碍和贫血的多种病症的病理生理学有关。RBC 变形能力的变化与代谢和结构改变有关,但大多数改变尚未阐明。为了弥补这一空白,我们使用质谱法分析了通过图像分析确定的具有不同变形能力的 RBC 的膜蛋白水平。总共鉴定出 752 种膜蛋白。然而,变形能力仅与 14 种蛋白质的水平呈正相关,它们之间存在高度显著的相关性。这些蛋白质参与膜筏和/或膜-细胞骨架连接。这些发现表明,变形能力的降低是一个程序性(而非任意的)重塑和脱落膜片段的过程,可能反映了细胞外囊泡的形成。表达变形能力的蛋白质之间的高度显著相关性推断,可以通过确定其中少数几种(可能是一种)蛋白质的水平来评估细胞的变形能力。