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首页> 外文期刊>Journal of Membrane Biology >Derangement of Erythrocytic AE1 in Beta-Thalassemia by Caspase 3: Pathogenic Mechanisms and Implications in Red Blood Cell Senescence
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Derangement of Erythrocytic AE1 in Beta-Thalassemia by Caspase 3: Pathogenic Mechanisms and Implications in Red Blood Cell Senescence

机译:Caspase 3:β-地中海贫血中的红细胞AE1的紊乱:发病机理及其在红细胞衰老中的意义

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摘要

Considering its complex molecular pathophysiology, beta-thalassemia could be a good in vivo model to study some aspects related to erythrocyte functions with potential therapeutic implications not only within the frame of this particular hemoglobinopathy but also with respect to conditions in which the cellular milieu, altered by a deranged anion exchanger, could display a significant pathogenetic role (i.e., erythrocyte senescence, complications of red cell storage, renal tubular acidosis and some abnormal protein thesaurismosis). This work evaluates the anionic influx across band 3 protein in normal and beta-thalassemic red blood cells (RBCs) and ghosts. Since redox-mediated injury is an important pathway in the destruction of beta-thalassemic RBCs, we studied the anion transport and the activity of caspase 3 in the absence and presence of t-butylhydroperoxide in order to evaluate the effect of an increase of cellular oxidative stress. Interestingly, beta-thalassemic erythrocytes show a faster rate of anion exchange than normal RBCs and absence of any modulation mechanism of anion influx. These findings led us to formulate a hypothesis about the metabolic characteristics of beta-thalassemic erythrocytes, outlining that one of the main targets of caspase 3 in RBCs is the cytoplasmic domain of band 3 protein. Keywords Hemoglobinopathy - Beta-thalassemia - Anion exchanger 1 - Red blood cell - Oxygen transport - Glucose-6-phosphate metabolism
机译:考虑到其复杂的分子病理生理学,β地中海贫血可能是研究体内与红细胞功能有关的某些方面的良好体内模型,不仅在这种特定的血红蛋白病的范围内,而且在改变细胞环境的条件方面,都具有潜在的治疗意义。通过错位的阴离子交换剂,可以显示出重要的致病作用(即,红细胞衰老,红细胞存储并发症,肾小管酸中毒和某些异常的蛋白质尿蛋白病)。这项工作评估了正常和β-地中海贫血红细胞(RBC)和鬼魂中带3蛋白的阴离子流入。由于氧化还原介导的损伤是破坏β-地中海贫血RBC的重要途径,我们评估了在不存在和存在叔丁基过氧化氢的情况下阴离子转运和caspase 3的活性,以评估细胞氧化性增加的作用。强调。有趣的是,β-地中海贫血红细胞显示出比正常RBC更快的阴离子交换速率,并且没有任何阴离子流入调节机制。这些发现使我们提出了关于β-地中海贫血红细胞代谢特征的假设,概述了红细胞中胱天蛋白酶3的主要靶标之一是带3蛋白的胞质结构域。关键词血红蛋白病-β地中海贫血-阴离子交换剂1-红细胞-氧转运-6磷酸葡萄糖代谢

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