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带3(AE1)基因靶向失活小鼠的红细胞中血型糖蛋白A完全缺乏。

Complete deficiency of glycophorin A in red blood cells from mice with targeted inactivation of the band 3 (AE1) gene.

作者信息

Hassoun H, Hanada T, Lutchman M, Sahr K E, Palek J, Hanspal M, Chishti A H

机构信息

Laboratory of Tumor Cell Biology, Department of Biomedical Research, St. Elizabeth's Medical Center, Tufts University School of Medicine, Boston, MA 02135, USA.

出版信息

Blood. 1998 Mar 15;91(6):2146-51.

PMID:9490702
Abstract

Glycophorin A is the major transmembrane sialoglycoprotein of red blood cells. It has been shown to contribute to the expression of the MN and Wright blood group antigens, to act as a receptor for the malaria parasite Plasmodium falciparum and Sendai virus, and along with the anion transporter, band 3, may contribute to the mechanical properties of the red blood cell membrane. Several lines of evidence suggest a close interaction between glycophorin A and band 3 during their biosynthesis. Recently, we have generated mice where the band 3 expression was completely eliminated by selective inactivation of the AE1 anion exchanger gene, thus allowing us to study the effect of band 3 on the expression of red blood cell membrane proteins. In this report, we show that the band 3 -/- red blood cells contain protein 4.1, adducin, dematin, p55, and glycophorin C. In contrast, the band 3 -/- red blood cells are completely devoid of glycophorin A (GPA), as assessed by Western blot and immunocytochemistry techniques, whereas the polymerase chain reaction (PCR) confirmed the presence of GPA mRNA. Pulse-label and pulse-chase experiments show that GPA is not incorporated in the membrane and is rapidly degraded in the cytoplasm. Based on these findings and other published evidence, we propose that band 3 plays a chaperone-like role, which is necessary for the recruitment of GPA to the red blood cell plasma membrane.

摘要

血型糖蛋白A是红细胞主要的跨膜唾液酸糖蛋白。研究表明,它有助于MN和赖特血型抗原的表达,是恶性疟原虫和仙台病毒的受体,并且与阴离子转运蛋白带3一起,可能对红细胞膜的机械性能有影响。几条证据线索表明,血型糖蛋白A和带3在生物合成过程中存在密切相互作用。最近,我们培育出了通过选择性失活AE1阴离子交换基因而使带3表达完全消除的小鼠,从而使我们能够研究带3对红细胞膜蛋白表达的影响。在本报告中,我们表明带3基因敲除的红细胞含有蛋白4.1、内收蛋白、肌动蛋白结合蛋白、p55和血型糖蛋白C。相比之下,通过蛋白质印迹法和免疫细胞化学技术评估,带3基因敲除的红细胞完全缺乏血型糖蛋白A(GPA),而聚合酶链反应(PCR)证实存在GPA mRNA。脉冲标记和脉冲追踪实验表明,GPA没有掺入膜中,而是在细胞质中迅速降解。基于这些发现和其他已发表的证据,我们提出带3起着伴侣样作用,这是将GPA招募到红细胞质膜所必需的。

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