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体内和体外红细胞衰老的比较蛋白质组学研究。

Comparative proteomics of erythrocyte aging in vivo and in vitro.

机构信息

Department of Biochemistry, Nijmegen Centre for Molecular Life Sciences, Radboud University Nijmegen Medical Centre, The Netherlands.

出版信息

J Proteomics. 2010 Jan 3;73(3):396-402. doi: 10.1016/j.jprot.2009.07.010. Epub 2009 Aug 4.

Abstract

During aging in vivo and in vitro, erythrocytes display removal signals. Phagocytosis is triggered by binding of autologous IgG to a senescent cell antigen originating on band 3. Erythrocytes generate vesicles as an integral part of the aging process in vivo and in vitro, i.e. during storage. These vesicles display senescent cell antigens as well as phosphatidylserine, that is recognized by scavenger receptors. Recent comparative proteomic analyses of erythrocytes and their vesicles support the hypothesis that aging is accompanied by increased binding of modified hemoglobins to band 3, disruption of the band 3-mediated anchorage of the cytoskeleton to the lipid bilayer, vesicle formation, and antigenic changes in band 3 conformation. Proteomic data also suggest an, until then unknown, involvement of chaperones, stress proteins, and proteasomes. Thus, the presently available comparative proteomic analyses not only confirm previous immunochemical and functional data, but also (1) provide new clues to the mechanisms that maintain erythrocyte homeostasis; (2) open new roads to elucidate the processes that regulate physiological erythrocyte aging and removal, and thereby; (3) provide the foundation for rational interventions to prevent untimely erythrocyte removal, and unwanted interactions between the erythrocyte and the immune system, especially after transfusion.

摘要

在体内和体外衰老过程中,红细胞会显示出清除信号。吞噬作用是通过自身 IgG 与源自 band 3 的衰老细胞抗原结合触发的。红细胞在体内和体外衰老过程中会产生囊泡,即作为其衰老过程的一个组成部分,即在储存过程中。这些囊泡显示出衰老细胞抗原以及磷脂酰丝氨酸,后者被清道夫受体识别。最近对红细胞及其囊泡的比较蛋白质组学分析支持以下假说:衰老伴随着修饰的血红蛋白与 band 3 的结合增加、band 3 介导的细胞骨架与脂质双层的锚定的破坏、囊泡形成以及 band 3 构象的抗原性改变。蛋白质组学数据还表明,(到目前为止)未知的伴侣蛋白、应激蛋白和蛋白酶体的参与。因此,目前可用的比较蛋白质组学分析不仅证实了以前的免疫化学和功能数据,而且还为以下方面提供了新的线索:(1)阐明维持红细胞内稳态的机制;(2)阐明调节生理红细胞衰老和清除的过程;(3)为合理干预提供基础,以防止红细胞过早清除和红细胞与免疫系统之间的不必要相互作用,尤其是在输血后。

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