A novel nonsense variant in RHAG underlies a Nordic Rhnull phenotype

Author:

Hellberg Åsa1,Arsenovic Mirjana Grujic2,Sørvoll Ingvild Hausberg2,Lubenow Norbert3,Sareneva Inna4,Haimila Katri4,Nordström Magnus5,Olsson Martin L.16ORCID,Storry Jill R.16ORCID

Affiliation:

1. Department of Clinical Immunology and Transfusion Medicine Office for Medical Services Region Skåne Sweden

2. Department of Laboratory Medicine University Hospital of North Norway Tromsø Norway

3. Department of Clinical Immunology and Transfusion Medicine Uppsala University Hospital Uppsala Sweden

4. Finnish Red Cross Blood Service Helsinki Finland

5. Division of Clinical Immunology and Transfusion Medicine, Department of Laboratory Medicine Region Västerbotten Sweden

6. Division of Hematology and Transfusion Medicine, Department of Laboratory Medicine Lund University Lund Sweden

Abstract

AbstractBackground and ObjectivesThe extremely rare Rhnull phenotype is characterized by the absence of all Rh antigens on erythrocytes. It is divided into the regulator and amorph types based on the underlying genetic background. The more common regulator type depends on critical variants silencing RHAG, which encodes RhAG glycoprotein, necessary for RhD/RhCE expression. Rhnull cells have altered expression of glycophorin B and LW glycoprotein.Materials and MethodsFour unrelated Rhnull individuals were investigated. Serological testing was performed according to standard blood bank practice. RHD/RHCE and S/s allele‐specific Polymerase chain reaction (PCR) genotyping was done on genomic DNA using in‐house PCR assays. RHAG, and in some cases also RHD/RHCE, were sequenced. Initial s phenotyping results triggered additional serological investigation.ResultsAnti‐Rh29 was identified in all four individuals. Extended typing with anti‐S and anti‐s showed that the three samples predicted to type as s+ failed to react with 2 of 5 anti‐s. Sequence analysis of all 10 RHAG exons and the immediate intron/exon boundaries revealed a single nucleotide variant in the 3′‐end of intron 6, c.946 −2a>g in all samples. RHD/RHCE showed no alterations.ConclusionA novel Nordic Rhnull allele was identified. In addition, it was shown that s+ Rhnull red blood cells are not only U− but also have qualitative changes in their s antigen expression.

Publisher

Wiley

Subject

Hematology,General Medicine

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