首页> 外文期刊>The Journal of Clinical Investigation: The Official Journal of the American Society for Clinical Investigation >Protein 4.1R-deficient mice are viable but have erythroid membrane skeleton abnormalities.
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Protein 4.1R-deficient mice are viable but have erythroid membrane skeleton abnormalities.

机译:蛋白 4.1R 缺陷的小鼠是有活力的,但有红细胞膜骨架异常。

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摘要

A diverse family of protein 4.1R isoforms is encoded by a complex gene on human chromosome 1. Although the prototypical 80-kDa 4.1R in mature erythrocytes is a key component of the erythroid membrane skeleton that regulates erythrocyte morphology and mechanical stability, little is known about 4.1R function in nucleated cells. Using gene knockout technology, we have generated mice with complete deficiency of all 4.1R protein isoforms. These 4.1R-null mice were viable, with moderate hemolytic anemia but no gross abnormalities. Erythrocytes from these mice exhibited abnormal morphology, lowered membrane stability, and reduced expression of other skeletal proteins including spectrin and ankyrin, suggesting that loss of 4. 1R compromises membrane skeleton assembly in erythroid progenitors. Platelet morphology and function were essentially normal, indicating that 4.1R deficiency may have less impact on other hematopoietic lineages. Nonerythroid 4.1R expression patterns, viewed using histochemical staining for lacZ reporter activity incorporated into the targeted gene, revealed focal expression in specific neurons in the brain and in select cells of other major organs, challenging the view that 4.1R expression is widespread among nonerythroid cells. The 4.1R knockout mice represent a valuable animal model for exploring 4.1R function in nonerythroid cells and for determining pathophysiological sequelae to 4.1R deficiency.
机译:蛋白质 4.1R 亚型的多样化家族由人类 1 号染色体上的复杂基因编码。尽管成熟红细胞中的典型 80-kDa 4.1R 是调节红细胞形态和机械稳定性的红细胞膜骨架的关键成分,但对有核细胞中 4.1R 的功能知之甚少。使用基因敲除技术,我们产生了完全缺乏所有4.1R蛋白亚型的小鼠。这些4.1R无效小鼠存活,有中度溶血性贫血,但没有明显异常。这些小鼠的红细胞表现出异常形态,膜稳定性降低,其他骨骼蛋白(包括血影蛋白和锚蛋白)的表达降低,表明丢失了 4.1R 损害红系祖细胞的膜骨架组装。血小板形态和功能基本正常,表明4.1R缺乏对其他造血谱系的影响较小。使用组织化学染色观察掺入靶基因的 lacZ 报告基因活性的非红系 4.1R 表达模式揭示了大脑中特定神经元和其他主要器官的特定细胞中的局灶性表达,挑战了 4.1R 表达在非红系细胞中广泛表达的观点。4.1R基因敲除小鼠代表了一种有价值的动物模型,用于探索非红系细胞中的4.1R功能和确定4.1R缺乏症的病理生理后遗症。

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