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The LAN blood group system: a review

   | 01 déc. 2019
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van der Hart M, Moes M, van der Veer M, van Loghem JJ. Ho and Lan—two new blood group antigens (conference abstract). Proceedings of the 8th Congress of the European Society of Haematology, Vienna (Austria). 1961:493–505.Search in Google Scholar

Clancey M, Bonds S, van Eys J. A new example of anti-Lan and two families with Lan-negative members. Transfusion 1972;12:106–8.10.1111/j.1537-2995.1972.tb05894.x5032405Search in Google Scholar

Ferraro ML, Trich MB, Smith JF. The rare red cell phenotype, Lan–, in an African American. Transfusion 2000; 40(Suppl):121S–2S (abstract).Search in Google Scholar

Frank S, Schmidt RP, Baugh M. Three new antibodies to high-incidence antigenic determinants (anti-El, anti-Dp, and antiSo). Transfusion 1970;10:254–7.10.1111/j.1537-2995.1970.tb00739.x4097024Search in Google Scholar

Grindon AJ, McGinniss MH, Issitt PD, Reihart JK, Allen FH, Jr. A second example of anti-Lan. Vox Sang 1968;15:293–6.10.1111/j.1423-0410.1968.tb01762.x5684529Search in Google Scholar

Okubo Y, Yamaguchi H, Seno T, et al. The rare red cell phenotype Lan negative in Japanese. Transfusion 1984;24:534–5.10.1046/j.1537-2995.1984.24685066820.x6506188Search in Google Scholar

Shertz WT, Carty L, Wolford F. Hemolytic disease of the newborn caused by anti-Lan, anti-Jka, and anti-c. Transfusion 1987;27:117.10.1046/j.1537-2995.1987.27187121460.x3101246Search in Google Scholar

Smart EA, Reddy V, Fogg P. Anti-Lan and the rare Lan-negative phenotype in South Africa. Vox Sang 1998;74(Suppl 1):1433 (abstract).Search in Google Scholar

Smith DS, Stratton F, Johnson T, Brown R, Howell P, Riches R. Haemolytic disease of the newborn caused by anti-Lan antibody. Br Med J 1969;3:90–2.10.1136/bmj.3.5662.9019838635790273Search in Google Scholar

Sturgeon JK, Ames TL, Howard SD, Waxman DA, Danielson CF. Report of an anti-Lan in an African American. Transfusion 2000;40(Suppl):115S (abstract).Search in Google Scholar

Fox JA, Taswell HF. Anti-Gna, a new antibody reacting with a high-incidence erythrocytic antigen. Transfusion 1969;9: 265–9.10.1111/j.1537-2995.1969.tb04935.x4980792Search in Google Scholar

Nesbitt R. The red cell antigen Gna. Transfusion 1979;19:354 (abstract).10.1046/j.1537-2995.1979.19379204230.x452083Search in Google Scholar

Frank S, Schmidt RP, Baugh M. Three new antibodies to high-incidence new antigenic determinants (anti-El, anti-Dp; and anti-So). Transfusion 1970;10:254.10.1111/j.1537-2995.1970.tb00739.xSearch in Google Scholar

Lewis M, Anstee DJ, Bird GWG, et al. Blood group terminology 1990. The ISBT Working Party on Terminology for Red Cell Surface Antigens. Vox Sang 1990;58:152–69.10.1159/000461106Search in Google Scholar

Reid ME. The ISBT 700 series of low-incidence and 901 series of high-incidence blood group antigens. Immunohematology 2011;27:131–5.10.21307/immunohematology-2019-186Search in Google Scholar

Helias V, Saison C, Ballif BA, et al. ABCB6 is dispensable for erythropoiesis and specifies the new blood group system Langereis. Nat Genet 2012;44:170–3.10.1038/ng.1069366420422246506Search in Google Scholar

Storry JR, Castilho L, Daniels G, et al. International Society of Blood Transfusion Working Party on red cell immunogenetics and blood group terminology: Cancun report (2012). Vox Sang 2013; In press (DOI: 10.1111/vox.12127).Search in Google Scholar

Daniels G. Human blood groups. 3rd ed. Oxford: Blackwell Science Ltd, 2013.10.1002/9781118493595Search in Google Scholar

Reid ME, Lomas-Francis C, Olsson ML. The blood group antigen factsbook. 3rd ed. Waltham, MA: Academic Press, 2012.10.1016/B978-0-12-415849-8.00026-0Search in Google Scholar

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

Tani Y, Takahashi H, Hirashima M. Establishment and characterization of human anti-Lan. Vox Sang 2007;93(Suppl 2):P071 (abstract).Search in Google Scholar

Dean M, Rzhetsky A, Allikmets R. The human ATP-binding cassette (ABC) transporter superfamily. Genome Res 2001; 11:1156–66.10.1101/gr.18490111435397Search in Google Scholar

Krishnamurthy PC, Du G, Fukuda Y, et al. Identification of a mammalian mitochondrial porphyrin transporter. Nature 2006;443:586–9.10.1038/nature0512517006453Search in Google Scholar

Paterson JK, Shukla S, Black CM, et al. Human ABCB6 localizes to both the outer mitochondrial membrane and the plasma membrane. Biochemistry 2007;46:9443–52.10.1021/bi700015m17661442Search in Google Scholar

Tsuchida M, Emi Y, Kida Y, Sakaguchi M. Human ABC transporter isoform B6 (ABCB6) localizes primarily in the Golgi apparatus. Biochem Biophys Res Commun 2008;369:369–75.10.1016/j.bbrc.2008.02.02718279659Search in Google Scholar

Kiss K, Brozik A, Kucsma N, et al. Shifting the paradigm: the putative mitochondrial protein ABCB6 resides in the lysosomes of cells and in the plasma membrane of erythrocytes. PLoS One 2012;7:e37378.10.1371/journal.pone.0037378336004022655043Search in Google Scholar

Chavan H, Khan MM, Tegos G, Krishnamurthy P. Efficient purification and reconstitution of ATP binding cassette transporter B6 (ABCB6) for functional and structural studies. J Biol Chem 2013;288:22658–69.10.1074/jbc.M113.485284382935123792964Search in Google Scholar

Emadi-Konjin HP, Zhang H, Anandan V, Sun D, Schuetz J, Furuya KN. Isolation of a genomic clone containing the promoter region of the human ATP binding cassette (ABC) transporter, ABCB6. Biochim Biophys Acta 2002;1574: 117–30.10.1016/S0167-4781(01)00340-2Search in Google Scholar

Higgins CF. ABC transporters: from microorganisms to man. Annu Rev Cell Biol 1992;8:67–113.10.1146/annurev.cb.08.110192.0004351282354Search in Google Scholar

Walker JE, Saraste M, Runswick MJ, Gay NJ. Distantly related sequences in the alpha- and beta-subunits of ATP synthase, myosin, kinases and other ATP-requiring enzymes and a common nucleotide binding fold. EMBO J 1982;1:945–51.10.1002/j.1460-2075.1982.tb01276.x5531406329717Search in Google Scholar

Fukuda Y, Aguilar-Bryan L, Vaxillaire M, et al. Conserved intramolecular disulfide bond is critical to trafficking and fate of ATP-binding cassette (ABC) transporters ABCB6 and sulfonylurea receptor 1 (SUR1)/ABCC8. J Biol Chem 2011;286:8481–92.10.1074/jbc.M110.174516304873221199866Search in Google Scholar

Mitsuhashi N, Miki T, Senbongi H, et al. MTABC3, a novel mitochondrial ATP-binding cassette protein involved in iron homeostasis. J Biol Chem 2000;275:17536–40.10.1074/jbc.275.23.1753610837493Search in Google Scholar

Lynch J, Fukuda Y, Krishnamurthy P, Du G, Schuetz JD. Cell survival under stress is enhanced by a mitochondrial ATP-binding cassette transporter that regulates hemoproteins. Cancer Res 2009;69:5560–7.10.1158/0008-5472.CAN-09-0078332640819549895Search in Google Scholar

Polireddy K, Chavan H, Abdulkarim BA, Krishnamurthy P. Functional significance of the ATP-binding cassette transporter B6 in hepatocellular carcinoma. Mol Oncol 2011;5:410–25.10.1016/j.molonc.2011.07.005320437221849266Search in Google Scholar

Reid ME, Hue-Roye K, Huang A, et al. Alleles of the LAN blood group system: molecular and serologic investigations. Transfusion 2013 Jun 13 [Epub ahead of print].10.1111/trf.1228523763549Search in Google Scholar

Saison C, Helias V, Peyrard T, Merad L, Cartron JP, Arnaud L. The ABCB6 mutation p.Arg192Trp is a recessive mutation causing the Lan– blood type. Vox Sang 2013;104:159–65.10.1111/j.1423-0410.2012.01650.x22958180Search in Google Scholar

Zelinski T, Hue-Roye K, Coghlan G, Lomas-Francis C, Westhoff CM, Reid ME. Molecular characterization of alleles of the Lan blood group system. Transfusion 2012;52(Suppl):42A–3A (abstract).Search in Google Scholar

Storry JR, Oyen R. Variation in Lan expression. Transfusion 1999;39:109–10.10.1046/j.1537-2995.1999.39199116904.x9920176Search in Google Scholar

Wang L, He F, Bu J, et al. ABCB6 mutations cause ocular coloboma. Am J Hum Genet 2012;90:40–8.10.1016/j.ajhg.2011.11.026325732222226084Search in Google Scholar

Andolfo I, Alper SL, Delaunay J, et al. Missense mutations in the ABCB6 transporter cause dominant familial pseudohyperkalemia. Am J Hematol 2013;88:66–72.10.1002/ajh.2335723180570Search in Google Scholar

Zhang C, Li D, Zhang J, et al. Mutations in ABCB6 cause dyschromatosis universalis hereditaria. J Invest Dermatol 2013;133:2221–8.10.1038/jid.2013.14523519333Search in Google Scholar

Krishnamurthy P, Schuetz JD. The role of ABCG2 and ABCB6 in porphyrin metabolism and cell survival. Current Pharm Biotechnol 2011;12:647–55.10.2174/13892011179516399521118089Search in Google Scholar

Saison C, Helias V, Ballif BA, et al. Null alleles of ABCG2 encoding the breast cancer resistance protein define the new blood group system Junior. Nat Genet 2012;44:174–7.10.1038/ng.1070365363122246505Search in Google Scholar

Zutz A, Gompf S, Schägger H, Tampé R. Mitochondrial ABC proteins in health and disease. Biochim Biophys Acta 2009;1787:681–90.10.1016/j.bbabio.2009.02.00919248758Search in Google Scholar

Arndt PA, Garratty G. A retrospective analysis of the value of monocyte monolayer assay results for predicting the clinical significance of blood group alloantibodies. Transfusion 2004;44:1273–81.10.1111/j.1537-2995.2004.03427.x15318848Search in Google Scholar

Pope J, Lubenko A, Lai WYY. A survey of the IgG subclasses of antibodies to high frequency red cell antigens. Transfusion medicine 1991;1(Suppl):58 (abstract).Search in Google Scholar

Vengelen-Tyler V, Morel PA. The relationship of anti-Lan and-Jra‘HTLA’ antibodies. Transfusion 1981;21:603 (abstract).10.1046/j.1537-2995.1981.21381201804.x7233514Search in Google Scholar

Dzik W, Blank J, Getman E, Benson D, Kruskall M, Westover J. Hemolytic anemia and RBC destruction due to auto anti-Lan. Transfusion 1985;25:462 (abstract).Search in Google Scholar

Judd WJ, Oberman HA, Silenieks A, Steiner EA. Clinical significance of anti-Lan. Transfusion 1984;24:181.10.1046/j.1537-2995.1984.24284173358.x6585080Search in Google Scholar

Page PL. Hemolytic disease of the newborn due to anti-Lan. Transfusion 1983;23:256–7.10.1046/j.1537-2995.1983.23383224909.x6679383Search in Google Scholar

Nance SJ, Arndt PA, Garratty G. The effect of fresh normal serum on monocyte monolayer assay reactivity. Transfusion 1988;28:398–9.10.1046/j.1537-2995.1988.28488265281.x3388490Search in Google Scholar

Reesink HW, Engelfriet CP, Schennach H, et al. Donors with a rare pheno (geno) type. Vox Sang 2008;95:236–53.10.1111/j.1423-0410.2008.01084.x19121189Search in Google Scholar

Nance ST. How to find, recruit and maintain rare blood donors. Curr Opin Hematol 2009;16:503–8.10.1097/MOH.0b013e3283316bed19730262Search in Google Scholar

Poole J, Daniels G. Blood group antibodies and their significance in transfusion medicine. Transfus Med Rev 2007;21:58–71.10.1016/j.tmrv.2006.08.00317174221Search in Google Scholar

Castilho L, Reid, ME. A review of the JR blood group system. Immunohematology 2013;29:63–68.10.21307/immunohematology-2019-126Search in Google Scholar

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Medicine, Clinical Medicine, Laboratory Medicine