Abstract

Lan is a high-incidence blood group antigen expressed in more than 99.9% of the population. Identification of the human ABC transporter ABCB6 as the molecular basis of Lan has opened the way for studies assessing the relation of ABCB6 function and expression to health and disease. To date, 34 ABCB6 sequence variants have been described in association with reduced ABCB6 expression based on the genotyping of stored blood showing weak or no reactivity with anti-Lan antibodies. In the present study we examined the red blood cell (RBC) surface expression of ABCB6 by quantitative flow cytometry in a cohort of 47 healthy individuals. Sequencing of the entire coding region of the ABCB6 gene in low RBC ABCB6 expressors identified a new allele (IVS9+1G>A, affecting a putative splice site at the boundary of exon 9) and two nonsynonymous SNPs listed in the SNP database (R192Q (rs150221689) and G588 S (rs145526996)). The R192Q mutation showed co-segregation with reduced RBC ABCB6 expression in a family, and we found the G588 S mutation in a compound heterozygous individual with undetectable ABCB6 expression, suggesting that both mutations result in weak or no expression of ABCB6 on RBCs. Analysis of the intracellular expression pattern in HeLa cells by confocal microscopy indicated that these mutations do not compromise overall expression or the endolysosomal localization of ABCB6. Genotyping of two large cohorts, containing 235 and 1039 unrelated volunteers, confirmed the high allele frequency of Lan-mutations. Our results suggest that genetic variants linked to lower or absent cell surface expression of ABCB6/Langereis may be more common than previously thought.

Highlights

  • ATP-binding cassette (ABC) transporters make up one of the largest protein families from bacteria to man [1]

  • ABCB6 expression was measured with the OSK43 monoclonal antibody recognizing the Lan blood group antigen that is carried by ABCB6 [16]

  • Differences in red blood cell (RBC) ABCB6 expression could not be attributed to age or sex

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Summary

Introduction

ATP-binding cassette (ABC) transporters make up one of the largest protein families from bacteria to man [1]. Heterozygous mutations result in reduced erythrocytic protein levels, indicating bi-allelic expression of ABCB6. We show that RBC ABCB6 expression levels display a large variation in healthy individuals, with an unexpectedly high frequency of low expressors.

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