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由于膜骨架蛋白4.1的质量和数量缺陷导致的遗传性椭圆形红细胞增多症。

Hereditary elliptocytosis due to both qualitative and quantitative defects in membrane skeletal protein 4.1.

作者信息

Conboy J G, Shitamoto R, Parra M, Winardi R, Kabra A, Smith J, Mohandas N

机构信息

Lawrence Berkeley Laboratory, University of California, Berkeley 94720.

出版信息

Blood. 1991 Nov 1;78(9):2438-43.

PMID:1932756
Abstract

Protein 4.1 is an important structural component of the membrane skeleton that helps determine erythrocyte morphology and membrane mechanical properties. In a previous study we identified a case of human hereditary elliptocytosis (HE) in which decreased membrane mechanical stability was due to deletion of 80 amino acids encompassing the entire 10-Kd spectrin-actin binding domain. A portion of this domain (21 amino acids) is encoded by an alternatively spliced exon that is expressed in late but not early erythroid cells. We now report a case of canine HE in which the abnormal phenotype is caused by failure to express this alternative peptide in the mature red blood cell (RBC) membrane skeleton, in conjunction with quantitative deficiency of protein 4.1. Western blotting of RBC membranes from a dog with HE showed a truncated protein 4.1 that did not react with antibodies directed against the alternative peptide. In addition, sequencing of cloned reticulocyte protein 4.1 cDNA showed a precise deletion of 63 nucleotides comprising this exon. Normal dog reticulocytes did express this exon. Expression of this 21 amino acid peptide during erythroid maturation is therefore essential for proper assembly of a mechanically competent membrane skeleton, because RBCs lacking this peptide have unstable membranes.

摘要

蛋白4.1是膜骨架的重要结构成分,有助于确定红细胞形态和膜的机械性能。在先前的一项研究中,我们鉴定了一例人类遗传性椭圆形红细胞增多症(HE),其中膜机械稳定性降低是由于包含整个10-Kd血影蛋白-肌动蛋白结合域的80个氨基酸缺失所致。该结构域的一部分(21个氨基酸)由一个选择性剪接的外显子编码,该外显子在晚期而非早期红系细胞中表达。我们现在报告一例犬类HE,其中异常表型是由于成熟红细胞(RBC)膜骨架中未能表达这种替代肽,同时伴有蛋白4.1的定量缺乏。对一只患有HE的犬的红细胞膜进行蛋白质印迹分析显示,有一种截短的蛋白4.1,它不与针对替代肽的抗体发生反应。此外,对克隆的网织红细胞蛋白4.1 cDNA进行测序显示,包含该外显子的63个核苷酸精确缺失。正常犬网织红细胞确实表达该外显子。因此,在红系成熟过程中表达这种21个氨基酸的肽对于构建具有机械功能的膜骨架至关重要,因为缺乏这种肽的红细胞具有不稳定的膜。

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