Glycophorin A dimerization and band 3 interaction during erythroid membrane biogenesis: in vivo studies in human glycophorin A transgenic mice

被引:70
作者
Auffray, I
Marfatia, S
de Jong, K
Lee, G
Huang, CH
Paszty, C
Tanner, MJA
Mohandas, N
Chasis, JA
机构
[1] Univ Calif Berkeley, Lawrence Berkeley Lab, Div Life Sci, Berkeley, CA 94720 USA
[2] Childrens Hosp Oakland, Res Inst, Oakland, CA 94609 USA
[3] New York Blood Ctr, Lindsley F Kimball Res Inst, New York, NY 10021 USA
[4] Univ Bristol, Bristol BS8 1TH, Avon, England
关键词
D O I
10.1182/blood.V97.9.2872
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Band 3 and glycophorin A (GPA) are the 2 most abundant integral proteins in the human erythrocyte membrane. Earlier studies suggested that the 2 proteins may associate not only in the mature erythrocyte membrane, but also during their posttranslational processing and intracellular trafficking. The purpose of this study was to directly examine the CPA-band 3 interaction in vivo and determine the nature of this association during erythroid membrane biogenesis. Transgenic mice were generated expressing the human glycophorin A gene and were used to examine how the induction of hu-man GPA expression affected the levels of murine GPA and band 3 expression in the red cell membrane. Murine CPA expression was reduced in erythrocytes expressing human GPA, whereas the level of band 3 expression remained constant, implying a tight coupling of band 3 and GPA expression in the membrane of mature red cells. In vivo GPA dimerization was not modulated solely by the GPA transmembrane motif, but the distance between this motif and the basic residues on the cytoplasmic side of the transmembrane domain may also be important. In addition, GPA monomers with varying degrees of glycosylation dimerized, providing clear evidence that carbohydrate structures on the extracellular domain do not affect dimerization. The association between the multiple transmembrane-spanning protein, band 3, and the single transmembrane-spanning sialoglycoprotein, GPA, may serve as a model for interactions of other multi-pass and single-pass polypep tides during membrane biogenesis. (Blood, 2001;91:2872-2878) (C) 2001 by The American Society of Hematology.
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页码:2872 / 2878
页数:7
相关论文
共 42 条
[1]   MONOCLONAL-ANTIBODIES TO HUMAN-ERYTHROCYTES [J].
ANSTEE, DJ ;
EDWARDS, PAW .
EUROPEAN JOURNAL OF IMMUNOLOGY, 1982, 12 (03) :228-232
[2]   BLOOD-GROUP-ACTIVE SURFACE MOLECULES OF THE HUMAN RED-BLOOD-CELL [J].
ANSTEE, DJ .
VOX SANGUINIS, 1990, 58 (01) :1-20
[3]  
BORMANN BJ, 1989, J BIOL CHEM, V264, P4033
[4]  
Brosig B, 1998, PROTEIN SCI, V7, P1052
[5]  
BRUCE LJ, 1994, BLOOD, V84, P916
[6]  
BRUCE LJ, 1995, BLOOD, V85, P541
[7]  
CARTRON J-P, 1992, Transfusion Medicine Reviews, V6, P63, DOI 10.1016/S0887-7963(92)70158-8
[8]   RH blood group system and molecular basis of Rh-deficiency [J].
Cartron, JP .
BEST PRACTICE & RESEARCH CLINICAL HAEMATOLOGY, 1999, 12 (04) :655-689
[9]   Anion exchangers in the red cell and beyond [J].
Casey, JR ;
Reithmeier, RAF .
BIOCHEMISTRY AND CELL BIOLOGY-BIOCHIMIE ET BIOLOGIE CELLULAIRE, 1998, 76 (05) :709-713
[10]  
CHASIS JA, 1992, BLOOD, V80, P1869