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Differences in Steap3 expression are a mechanism of genetic variation of RBC storage and oxidative damage in mice

机译:Steap3表达的差异是小鼠RBC遗传变异和氧化损伤的遗传机制

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摘要

Red blood cells (RBCs) are the most numerous cell type in the body and serve a vital purpose of delivering oxygen to essentially all tissues. In addition to the central role of RBCs in health and disease, RBC storage is a requirement for the >90 million units of RBC transfusions given to millions of recipients each year, worldwide. It is well known that there is genetic donor-to-donor variability in how human RBCs store, rendering blood a nonstandardized therapeutic with a wide range of biological properties from unit to unit, by the time it is transfused. As with humans, genetic variation exists in how murine RBCs, from different strains of mice, store and perform after transfusion. The genetic mechanisms for variation, in humans and mice, both remain obscure. Combining advanced metabolomics, genetics, and molecular and cellular biology approaches, we identify genetic variation in six-transmembrane epithelial antigen of prostate 3 (Steap3) expression as a critical and previously unrecognized mechanism of oxidative damage of RBCs during storage. Increased levels of Steap3 result in degradation of cellular membrane through lipid peroxidation, leading to failure of RBC homeostasis and hemolysis/clearance of RBCs. This article is the first report of a role of Steap3 in mature RBCs; it defines a new mechanism of redox biology in RBCs with a substantial effect upon RBC function and provides a novel mechanistic determinant of genetic variation of RBC storage.
机译:红细胞(RBC)是人体中数量最多的细胞类型,并具有将氧气输送到基本上所有组织的重要目的。除了RBC在健康和疾病中的核心作用外,全球每年向数百万的接收者提供超过9000万单位的RBC输血,RBC的存储也是必需的。众所周知,人类红细胞的存储方式存在供体之间的遗传差异,使血液成为输血时具有不同生物学特性的非标准化治疗剂。与人类一样,遗传变异存在于来自不同品系小鼠的鼠红细胞在输血后如何储存和运行。在人类和小鼠中,变异的遗传机制仍然不清楚。结合先进的代谢组学,遗传学以及分子和细胞生物学方法,我们鉴定出前列腺3(Steap3)表达的六跨膜上皮抗原的遗传变异是RBC在存储过程中氧化损伤的关键和先前未被认识的机制。增加的Steap3水平会导致脂质过氧化作用导致细胞膜降解,从而导致RBC动态平衡失败和RBC溶血/清除。本文是有关Steap3在成熟RBC中的作用的首次报道。它定义了一种红细胞氧化还原生物学的新机制,对红细胞功能具有实质性影响,并为红细胞储存的遗传变异提供了新的机制决定因素。

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