Proteostasis and metabolic dysfunction characterize a subset of storage-induced senescent erythrocytes targeted for posttransfusion clearance.

IF 13.6 1区 医学 Q1 MEDICINE, RESEARCH & EXPERIMENTAL Journal of Clinical Investigation Pub Date : 2025-03-11 eCollection Date: 2025-05-01 DOI:10.1172/JCI183099
Sandy Peltier, Mickaël Marin, Monika Dzieciatkowska, Michaël Dussiot, Micaela Kalani Roy, Johanna Bruce, Louise Leblanc, Youcef Hadjou, Sonia Georgeault, Aurélie Fricot, Camille Roussel, Daniel Stephenson, Madeleine Casimir, Abdoulaye Sissoko, François Paye, Safi Dokmak, Papa Alioune Ndour, Philippe Roingeard, Emilie-Fleur Gautier, Steven L Spitalnik, Olivier Hermine, Pierre A Buffet, Angelo D'Alessandro, Pascal Amireault
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Abstract

Although refrigerated storage slows the metabolism of volunteer donor RBCs, which is essential in transfusion medicine, cellular aging still occurs throughout this in vitro process. Storage-induced microerythrocytes (SMEs) are morphologically altered senescent RBCs that accumulate during storage and are cleared from circulation following transfusion. However, the molecular and cellular alterations that trigger clearance of this RBC subset remain to be identified. Using a staining protocol that sorts long-stored SMEs (i.e., CFSEhi) and morphologically normal RBCs (CFSElo), these in vitro aged cells were characterized. Metabolomics analysis identified depletion of energy, lipid-repair, and antioxidant metabolites in CFSEhi RBCs. By redox proteomics, irreversible protein oxidation primarily affected CFSEhi RBCs. By proteomics, 96 proteins, mostly in the proteostasis family, had relocated to CFSEhi RBC membranes. CFSEhi RBCs exhibited decreased proteasome activity and deformability; increased phosphatidylserine exposure, osmotic fragility, and endothelial cell adherence; and were cleared from the circulation during human spleen perfusion ex vivo. Conversely, molecular, cellular, and circulatory properties of long-stored CFSElo RBCs resembled those of short-stored RBCs. CFSEhi RBCs are morphologically and metabolically altered, have irreversibly oxidized and membrane-relocated proteins, and exhibit decreased proteasome activity. In vitro aging during storage selectively alters metabolism and proteostasis in these storage-induced senescent RBCs targeted for clearance.

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蛋白质停滞和代谢功能障碍是储存诱导的红细胞在输血后清除的一个亚群的特征。
尽管冷冻储存减缓了志愿者捐献红细胞的代谢,这在输血医学中是必不可少的,但细胞衰老仍然发生在体外过程中。储存诱导的微红细胞(SMEs)是一种形态改变的衰老红细胞,在储存过程中积累,输血后从循环中清除。然而,触发红细胞亚群清除的分子和细胞改变仍有待确定。使用一种对长期储存的SMEs(即CFSEhigh)和形态正常的红细胞(CFSElow)进行分类的染色方案,对这些体外老化细胞进行了表征。代谢组学分析确定了cfse高红细胞的能量消耗、脂质修复和抗氧化代谢物。通过氧化还原蛋白质组学,不可逆蛋白氧化主要影响cfse高的红细胞。通过蛋白质组学分析,96个蛋白(大部分属于蛋白酶抑制家族)迁移到cfse高的RBC膜上。cfse高的红细胞表现为蛋白酶体活性和变形能力降低;增加磷脂酰丝氨酸暴露,渗透脆弱性和内皮细胞粘附性;在离体人脾灌注过程中被清除。相反,长期储存的cfsellow红细胞的分子、细胞和循环特性与短期储存的红细胞相似。cfse高的红细胞在形态和代谢上发生改变,具有不可逆的氧化和膜定位蛋白,并表现出蛋白酶体活性降低。体外储存过程中的老化选择性地改变了这些储存诱导的衰老红细胞的代谢和蛋白质平衡。
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来源期刊
Journal of Clinical Investigation
Journal of Clinical Investigation 医学-医学:研究与实验
CiteScore
24.50
自引率
1.30%
发文量
1034
审稿时长
2 months
期刊介绍: The Journal of Clinical Investigation, established in 1924 by the ASCI, is a prestigious publication that focuses on breakthroughs in basic and clinical biomedical science, with the goal of advancing the field of medicine. With an impressive Impact Factor of 15.9 in 2022, it is recognized as one of the leading journals in the "Medicine, Research & Experimental" category of the Web of Science. The journal attracts a diverse readership from various medical disciplines and sectors. It publishes a wide range of research articles encompassing all biomedical specialties, including Autoimmunity, Gastroenterology, Immunology, Metabolism, Nephrology, Neuroscience, Oncology, Pulmonology, Vascular Biology, and many others. The Editorial Board consists of esteemed academic editors who possess extensive expertise in their respective fields. They are actively involved in research, ensuring the journal's high standards of publication and scientific rigor.
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