Erfordert Authentifizierung

The Rh blood group system: the first 60 years of discovery


Zitieren

Issitt PD, Anstee DJ. Applied blood group serology. 4th ed. Durham, NC: Montgomery Scientific Publications, 1998.Search in Google Scholar

Daniels G. Human blood groups. Oxford, England: Blackwell Science, 1995.Search in Google Scholar

Race RR, Sanger R. Blood groups in man. 6th ed. Oxford, England: Blackwell Scientific Publications, 1975.Search in Google Scholar

Huang C-H. Molecular insights into the Rh protein family and associated antigens. Current Opinion in Hematology 1997;4:94–103.10.1097/00062752-199704020-00004Search in Google Scholar

Cartron J-P, Bailly P, Le van Kim C, et al. Insights into the structure and function of membrane polypeptides carrying blood group antigens. Vox Sang 1998; 74: (Suppl 2):29-64.10.1111/j.1423-0410.1998.tb05397.xSearch in Google Scholar

Avent ND, Reid ME. The Rh blood group system: a review. Blood 2000; 95:375–87.10.1182/blood.V95.2.375Search in Google Scholar

Daniels GL, Anstee DJ, Cartron J-P, et al. Terminology for red cell surface antigens. ISBT working party Oslo report. Vox Sang 1999; 77:52–7.8. Tippett P. A speculative model for the Rh blood groups. Ann Hum Genet 1986; 50:241–7.10.1111/j.1469-1809.1986.tb01045.xSearch in Google Scholar

Smythe JS, Avent ND, Judson PA, Parsons SF, Martin PG, Anstee DJ. Expression of RH D and R HC E gene products using retroviral transduction of K562 cells establishes the molecular basis of Rh blood group antigens. Blood 1996;87:2968–73.10.1182/blood.V87.7.2968.bloodjournal8772968Search in Google Scholar

Mouro I, Colin Y, Chérif-Zahar B, Cartron J-P, Le van Kim C. Molecular genetic basis of the human Rhesus blood group system. Nature Genet 1993; 5:62–510.1038/ng0993-62Search in Google Scholar

Carritt B, Kemp TJ, Poulter M. Evolution of the human RH (rhesus) blood group genes:a 50 year old prediction (partially) fulfilled. Hum Mol Genet 1997; 6:843–50.10.1093/hmg/6.6.843Search in Google Scholar

Okuda H, Suganuma H, Tsudo N, Omi T, Iwamoto S, Kajii E. Sequence analysis of the spacer region between the R H D and R H C E genes. Biochem Biophys Res Commun 1999;263:378–83.10.1006/bbrc.1999.1370Search in Google Scholar

Chérif-Zahar B, Le van Kim C, Rouillac C, Raynal V, Cartron J-P, Colin Y. Organization of the gene (RH CE) encoding the human blood group RhCcEe antigens and characterization of the promoter region. Genomics 1994; 19:68–74.10.1006/geno.1994.1014Search in Google Scholar

Hartel-Schenk S, Agre P. Mammalian red cell membrane Rh polypeptides are selectively palmitoylated subunits of a macromolecular complex. J Biol Chem 1992;267:5569–74.10.1016/S0021-9258(18)42803-7Search in Google Scholar

Huang C-H. The human Rh50 glycoprotein gene: structural organization and associated splicing defect resulting in Rhnull disease. J Biol Chem 1998; 273:2207–13.10.1074/jbc.273.4.2207Search in Google Scholar

Moore S, Green C. The identification of specific Rhesus polypeptide blood group ABH-active glycoprotein complexes in the human red-cell membrane. Biochem J 1987;244:735–41.10.1042/bj2440735Search in Google Scholar

Mallinson G, Anstee DJ, Avent ND, et al. Murine monoclonal antibody MB-2D10 recognizes Rh-related glycoproteins in the human red cell membrane. Transfusion 1990; 30:222–5.10.1046/j.1537-2995.1990.30390194341.xSearch in Google Scholar

Matassi G, Chérif-Zahar B, Pesole G, Raynal V, Cartron J-P. The members of the RH gene family (R H5 0 and RH 3 0) fol lowed different evol utionary pathways. J Mol Evol 1999;48:151–9.10.1007/PL00006453Search in Google Scholar

Liu W, Smythe JS, Scott ML, et al. Site-directed mutagenesis of the human D antigen:definition of D epitopes on the sixth external domain of the D protein expressed on K562 cells. Transfusion 1999;39:17–25.10.1046/j.1537-2995.1999.39199116890.xSearch in Google Scholar

Green FA. Erythrocyte membrane sulfhydryl groups and Rh antigen activity. Immunochemistry 1967; 4:247–57.10.1016/0019-2791(67)90186-3Search in Google Scholar

Suyama K, Lunn R, Goldstein J. Red cell surface cysteine residue (285) of D polypeptide is not essential for D antigenicity. Transfusion 1995;35:653–9.10.1046/j.1537-2995.1995.35895357896.x7631405Search in Google Scholar

Smythe JS, Anstee DJ. K562 cells expressing RhD polypeptide with a Cys285 to Ala mutation have a normal D antigen (abstract). Transfus Med 1997; 7 (Suppl 1):29.Search in Google Scholar

Westhoff CM, Silberstein LE, Sipherd B, et al. Altered “e”antigen expression associated with 16Cys in exon 1 of the RH ce gene (abstract). Transfusion 1998; 38 (Suppl):64S.Search in Google Scholar

Huang C-H, Reid ME, Chen Y, et al. Deletion of Arg229 in RhCE polypeptide alters expression of RhE and CE-associated Rh6 (abstract). Blood 1997; 90 (Suppl 1):272a.Search in Google Scholar

Daniels GL, Faas BHW, Green CA, et al. The VS and V blood group polymorphisms in Africans: a serological and molecular analysis. Transfusion 1998; 38: 951–8.10.1046/j.1537-2995.1998.381098440860.x9767746Search in Google Scholar

Noizat-Pirenne F, Mouro I, Le Pennec P, et al. Evidence that serine at position 103 is not sufficient for complete C antigen expression (abstract). Transfusion 1999; 39 (Suppl):103S.Search in Google Scholar

Lomas C, Mougey R. Rh antigen D: variable expression in DVI phenotypes; a possible subdivision of category VI by a low- frequency antigen (abstract). Transfusion 1989; 29 (Suppl):14S.Search in Google Scholar

Westhoff CM, Silberstein LE, Wylie DE, et al. Characterization of the Rh locus of the New World c a p u chin (Cebus apella) monkey (ab s trac t). Transfusion 1998;38 (Suppl):102S.Search in Google Scholar

Faas BHW, Ligthart PC, Lomas-Francis C, Overbeeke MAM, von dem Borne AEGKr, van der Schoot CE. Involvement of Gly96 in the formation of the RH:26 epitope. Transfusion 1997;37:1123–30.10.1046/j.1537-2995.1997.37111298088040.x9426634Search in Google Scholar

Noizat-Pirenne F, Mouro I, Gane P, et al. Heterogeneity of blood group RhE variants revealed by serological analysis and molecular alteration of the R H CE gene and transcript. Br J Haematol 1998; 103:429–36.10.1046/j.1365-2141.1998.01004.x9827916Search in Google Scholar

Noizat-Pirenne F, Mouro I, Le Pennec P, et al. Molecular basis of category EIV variant phenotype (abstract). Transfusion 1999; 39 (Suppl):103S.Search in Google Scholar

Tippett P, Lomas-Francis C, Wallace M. The Rh antigen D: partial D antigens and associated low incidence antigens. Vox Sang 1996; 70:123–3110.1111/j.1423-0410.1996.tb01309.xSearch in Google Scholar

Jones J, Scott ML, Voak D. Monoclonal anti-D specificity and Rh D structure: criteria for selection of monoclonal anti-D reagents for routine typing of patients and donors. Transfus Med 1995;5:171–84.10.1111/j.1365-3148.1995.tb00225.xSearch in Google Scholar

Scott M. Rh serology—Coordinator’s report. Trans Clin Biol 1996; 6:333–7.10.1016/S1246-7820(96)80040-1Search in Google Scholar

Wagner FF, Gassner C, Eicher N, et al. Characterization of D category IV type IV, DFW, and DNB (abstract). Transfusion 1998; 38 (Suppl):63S.Search in Google Scholar

Jones J, Finning K, Mattock R, et al. The serological profile and molecular basis of a new partial D phe- notype, DHR. Vox Sang 1997; 73:252–6.10.1159/000461941Search in Google Scholar

Wagner FF, Gassner C, Müller TH, et al. Three molecular structures cause rhesus D category VI phenotypes with distinct immunohematological features. Blood 1998;91:2157–68.10.1182/blood.V91.6.2157Search in Google Scholar

Omi T, Takahashi J, Tsudo N, et al. The genomic organization of the partial D category DVa : the presence of a new partial D associated with the DVa phenotype. Biochem Biophys Res Commun 1999; 254:786–94.10.1006/bbrc.1998.0121Search in Google Scholar

Rios M, Storry JR, Hue-Roye K, Reid ME, Castilho LL, Pelegrino JJ. Incidence of partial D, DIIIa, in black donors as determined by PCR-RFLP analysis (abstract). Transfusion 1998; 38 (Suppl):63S.Search in Google Scholar

Rouillac C, Gane P, Cartron J, Le Pennec PY, Cartron J-P, Colin Y. Molecular basis of the altered expression of RhD in weak D(DU) and RhC/e in RN phenotype (abstract). Blood 1996; 87:4853–61.10.1182/blood.V87.11.4853.bloodjournal87114853Search in Google Scholar

Beckers EAM, Faas BHW, Overbeeke MAM, von dem Borne AEGKr, van Rhenen DJ, van der Schoot CE. Molecular aspects of the weak-D phenotype (abstract). Transfusion 1995; 35 (Suppl):50S.Search in Google Scholar

Wagner FF, Gassner C, Müller TH, et al. Molecular basis of weak D phenotypes. Blood 1999; 93:385–93.10.1182/blood.V93.1.385Search in Google Scholar

Okuda H, Kawano M, Iwamoto S, et al. The RH D gene is highly detectable in RhD-negative Japanese donors. J Clin Invest 1997; 100:373–9.10.1172/JCI119543Search in Google Scholar

Daniels G, Green C, Smart E. Differences between RhD-negative Africans and RhD-negative Europeans. Lancet 1997; 350:862–4.10.1016/S0140-6736(05)62031-4Search in Google Scholar

Daniels GL, Faas BHW, Green CA, et al. The VS and V blood group polymorphisms in Africans: a serological and molecular analysis. Transfusion 1998; 38:951–8.10.1046/j.1537-2995.1998.381098440860.xSearch in Google Scholar

Sausais L, Øen R, Rios M, et al. DAK, a low incidence antigen shared by DIIIa and RN RBCs (abstract). Transfusion 1999; 39 (Suppl):79S.Search in Google Scholar

Cartron J-P, Agre P. Rh blood groups and Rh deficiency syndrome. Blood Cell Biochem 1995; 6:189–225.10.1007/978-1-4757-9537-0_6Search in Google Scholar

Eye rs SA, R i d g well K, M aw by W J, Tanner MJ. Topology and organization of human Rh (rhesus) blood group-related polypeptides. J Biol Chem 1994;269:6417–23.10.1016/S0021-9258(17)37388-XSearch in Google Scholar

Beckmann R, Smythe J, Anstee D, Tanner M. Functional cell surface expression of band 3, the human red blood cell anion exchange protein (AE1), in K562 erythroleukemia cells: band 3 enhances the cell surface reactivity of Rh antigens. Blood 1998;92:4428–38.10.1182/blood.V92.11.4428Search in Google Scholar

Huang C-H, Chen Y, Reid ME, Seidl C. Rhnull disease: the amorph type results from a novel double mutation in R hC egene on D-negative background. Blood 1998;92:664–71.10.1182/blood.V92.2.664Search in Google Scholar

Huang C-H, Cheng G-J, Reid ME, Chen Y. Rhmod syn- drome:a family study of the translation-initiator mutation in the Rh50 glycoprotein gene. Am J Hum Genet 1999; 64:108–17.10.1086/302215Search in Google Scholar

Hyland CA, Chérif-Zahar B, Cowley N, et al. A novel single missense mutation identified along the R H 50 gene in a composite heterozygous Rhnull blood donor of the regulator type. Blood 1998; 91:1458–63.10.1182/blood.V91.4.1458Search in Google Scholar

Huang C-H, Lui Z, Cheng G, Chen Y. Rh50 glycoprotein gene and Rhnull disease:a silent splice donor is trans to a Gly279÷ Glu missense mutation in the conserved transmembrane segment. Blood 1998; 92:1776–84.10.1182/blood.V92.5.1776Search in Google Scholar

Chérif-Zahar B, Matassi G, Raynal V, et al. Rh-defi- ciency of the regulator type caused by splicing mutations in the human RH 5 0 gene. Blood 1998; 92:2535–40.10.1182/blood.V92.7.2535Search in Google Scholar

Marini A M, U rrestarazuA, B e a u wens R, André B. The Rh (rhesus) blood group polypeptides are related to NH4+ transporters. Trends in Biochemical Sciences 1997;22:460–1.10.1016/S0968-0004(97)01132-8Search in Google Scholar

Reid M, Yazdanbakhsh K. Molecular insights into blood groups and implications for blood transfusion. Current Opinion in Hematology 1998; 5:93–102.10.1097/00062752-199803000-000039570701Search in Google Scholar

Flegel W, Wagner F, Müller T, Gassner C. Rh phenotype prediction by DNA typing and its application to practice. Transfus Med 1998;8:281–302.10.1046/j.1365-3148.1998.00173.x9881423Search in Google Scholar

eISSN:
1930-3955
Sprache:
Englisch
Zeitrahmen der Veröffentlichung:
4 Hefte pro Jahr
Fachgebiete der Zeitschrift:
Medizin, Klinische Medizin, Laboratoriumsmedizin