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Multiple miscarriages in two sisters of Thai origin with the rare Pk phenotype caused by a novel nonsense mutation at the B3GALNT1 locus.

Transfus Med. 2019 Jun;29(3):202-208. doi:10.1111/tme.12544. Epub 2018 Jun 06
J Ricci Hagman 1 , A K Hult 1 , J S Westman 2 , B Hosseini-Maaf 1 , P Jongruamklang 2 , J Saipin 3 , S Bejrachandra 3 , M L Olsson 1
J Ricci Hagman 1 , A K Hult 1 , J S Westman 2 , B Hosseini-Maaf 1 , P Jongruamklang 2 , J Saipin 3 , S Bejrachandra 3 , M L Olsson 1
+ et al

[No authors listed]

Author information
  • 1 Clinical Immunology and Transfusion Medicine, Division of Laboratory Medicine, Office of Medical Services, Region Skåne, Sweden.
  • 2 Division of Hematology and Transfusion Medicine, Department of Laboratory Medicine, Lund University, Lund, Sweden.
  • 3 Department of Transfusion Medicine, Faculty of Medicine Siriraj Hospital, Mahidol University, Bangkok, Thailand.

摘要


OBJECTIVES:To determine the genetic background underlying the Pk phenotype in two Thai sisters suffering from multiple spontaneous abortions. BACKGROUND:The P antigen is carried by globoside, an abundant glycosphingolipid in the red blood cell (RBC) membrane. Inactivating mutations in the 3-β-N-acetylgalactosaminyltransferase gene (B3GALNT1) give rise to the rare Pk phenotype, which lack the P and PX2 antigens. Consequently, naturally occurring anti-P may cause recurrent miscarriages following the cytotoxic attack of the globoside-rich fetal portion of the placenta. METHODS/MATERIALS:P/P1/PX2/Pk antigens on RBCs and their corresponding antibodies were detected by haemagglutination and flow cytometry. The B3GALNT1 coding region was sequenced, and an allele-specific polymerase chain reaction (PCR) was developed. RESULTS:The two sisters had suffered 8 and 11 miscarriages, most of which occurred in the first trimester. Anti-P and anti-PX2 were identified in their plasmas, and the RBCs typed as P-PX2-Pk +, i.e. had the Pk phenotype. Sequencing revealed homozygosity for a nonsense mutation, c.420T>G, in B3GALNT1. This substitution introduces a premature stop codon, p.Tyr140Ter, which is predicted to abolish enzymatic activity. Screening of 384 Thai donors indicated an allele frequency of 0·13%. CONCLUSION:We describe a novel nonsense mutation (c.420T>G) in B3GALNT1 (GLOB*01N·13), which was added to the 12 alleles already known in the GLOB system.

KEYWORDS: B3GALNT1, Pk phenotype, anti-P, glycosyltransferase, miscarriage