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K Hue-Roye

Publications and source records attributed to K Hue-Roye.

8 recordsLinked to original sources

Case report:DNA testing resolves unusual results in the Dombrock system.

Typing for antigens in the Dombrock blood group system and identifying the corresponding antibodies are notoriously difficult tasks. The reagents are scarce and the antibodies are weakly reactive. When RBCs from family members of a patient with an antibody to a high-prevalence Dombrock antigen were tested for compatibility,an unusual pattern of inheritance was observed:RBCs from the patient's children and one niece, in addition to those from some of the patient's siblings,were compatible. This prompted the performance of DNA-based assays for DO alleles and the results obtained were consistent with and explained the compatibility test results. It was possible to study this large kindred because of the cooperation of family members, hospital personnel, and reference laboratory staff.

ADP Ribose Transferases↗

Novel molecular basis of an Inab phenotype.

The Cromer blood group system consists of ten high-prevalence and three low-prevalence antigens carried on decay-accelerating factor (DAF). DAF is found in the cell membranes of RBCs, granulocytes, platelets, and lymphocytes and is widely represented in other body tissues. Sequence analyses of DNA were performed on a blood sample from a 91-year-old Japanese woman whose serum contained an alloantibody to a high-prevalence antigen in the Cromer blood group system (anti-IFC). A blood sample from her daughter was also studied. Sequence analysis revealed a substitution of 508C7>T in exon 4 of DAF in the proband. The proband's daughter was heterozygous for 508C/T. This study describes an Inab phenotype in which the 508C>T nonsense mutation is predicted to change arginine at amino acid residue 136 to a stop codon. This change is in SCR 3 of DAF. This study reports on the molecular basis of a new proband with the Inab phenotype who had no history of intestinal disorders.

Aged↗

Analysis of SERF in Thai blood donors.

The Cromer blood group system consists of nine high-prevalence and three low-prevalence antigens carried on decay-accelerating factor (DAF). We recently described one of these Cromer highprevalence antigens,SERF, the absence of which was found in a Thai woman. The lack of SERF antigen in this proband was associated with a substitution of nucleotide 647C>T in exon 5 of DAF, which is predicted to be a change of proline to leucine at amino acid position 182 in short consensus repeat (SCR) 3 of DAF. This study reports on PCR-RFLP analysis of the SERF allele with BstNI restriction endonuclease on more than one thousand Thai blood donor samples. One new donor homozygous (647T) and 21 donors heterozygous (647C/T) for the SERF allele were found. Among this cohort of random Thai blood donors, the SERF allele frequency was 1.1 percent. Thus, like other alleles in the Cromer blood group system, SERF is found in a certain ethnic group.

Alleles↗

SERF: a new antigen in the Cromer blood group system.

The Cromer blood group system consists of eight high incidence and three low incidence antigens carried on decay-accelerating factor (DAF). This report describes the identification and characterization of a new Cromer high incidence antigen, named SERF. Sequence analyses of DNA from a Thai female whose serum contained the alloantibody to a high incidence antigen in the Cromer blood group system (anti-SERF) and from her two children were performed. Reverse transcriptase-polymerase chain reaction (RT-PCR) and sequence analysis on cDNA from the proband and PCR-restriction fragment length polymorphism analysis on DNA from Thais were also performed. To map the epitope, DAF deletion mutants were tested by immunoblotting with anti-SERF. Sequence analysis revealed a substitution of 647C>T in exon 5 DAF in the proband. The proband's two children and two of 100 Thais were heterozygotes 647C/T. Analysis using DAF deletion mutants revealed the antigenic determinant to be within short consensus repeat 3 (SCR3), which is encoded by exon 5. This study describes a novel high incidence antigen (SERF) in the Cromer blood group system characterized by the amino acid proline at position 182 in SCR3 of DAF. The SERF-negative proband has a substitution mutation that predicts for leucine at this position. SERF has been provisionally assigned the International Society of Blood Transfusion number 021.012 (CROM 12).

Base Sequence↗

DNA analysis for donor screening of Dombrock blood group antigens.

Due to the scarcity of reliable antibodies, RBC typing for Doa and Dob is notoriously difficult. Inaccurate typing can place patients at risk for hemolytic transfusion reactions. The molecular basis of the DOA/DOB polymorphism is associated with three nucleotide changes:378 C>T, 624 T>C,and 793 A>G of DO. While the 378 C>T and 624 T>C are silent mutations, the 793A>G polymorphism in codon 265 encodes asparagine for Doa and aspartic acid for Dob. We describe here the use of a PCR-RFLP assay as an alternative to traditional hemagglutination for typing donor blood for Dombrock. Primers were designed to amplify the region of DO containing the 793A>G polymorphism. DNA samples from blood donors were amplified and subjected to RFLP analysis. A total of 613 samples were tested for the Dombrock polymorphism (793 A>G) by PCRRFLP. PCR-RFLP can be used to screen for Do(a-) or Do(b-) donors. This approach overcomes the scarcity of the reagents required for testing by hemagglutination.

Journal Article↗

DNA analysis for the Dombrock polymorphism.

BACKGROUND: RBC typing for Do(a) and Do(b) is notoriously difficult, and inaccurate typing can predispose patients to hemolytic transfusion reactions. The DO1/DO2 polymorphism is associated with three nucleotide changes: 378 C>T, 624 T>C and 793 A>G. While the 378 C>T- and 624 T>C-containing codons are silent mutations, the 793 A>G polymorphism in codon 265 encodes asparagine for Do(a) and aspartic acid for Do(b). STUDY DESIGN AND METHODS: Described here are two PCR-RFLP assays, one using the Mnl I site associated with 624C (DO2) and the other altering two nucleotides within the sense primer, which allows recognition of 793G by the Eam 1105 I. RESULTS: The assays have been performed on over 100 samples for which the RBC typing of one or both antigens was known. Eight samples had been historically mistyped by hemagglutination. CONCLUSION: This RFLP assay provides a practical method for typing donor blood for Dombrock alleles.

Base Sequence↗

Molecular basis of the Dombrock null phenotype.

BACKGROUND: The Dombrock blood group system consists of two antithetical antigens, Do(a) and Do(b), and three high-incidence antigens, Gregory (Gy(a)), Holley (Hy), and Joseph (Jo(a)). The null phenotype of the Dombrock blood group system (Do(null)) was identified when it was found that Gy(a-) RBCs also lack Do(a), Do(b), Hy, and Jo(a). STUDY DESIGN AND METHODS: DNA from three Gy(a-) persons was analyzed. PCR products for each of the three DO exons and their flanking intronic regions were sequenced in both directions. The cDNA from two of the people was subjected to PCR using primers in exon 1 and exon 3, and the products were sequenced. RESULTS: The Do(null) phenotype is associated with a single nucleotide mutation in the acceptor splice site of DO (IVS1-2a>g), which results in outsplicing of exon 2. CONCLUSION: Outsplicing of exon 2 is predicted to cause a -1 frameshift and a premature stop codon. Any product of such a transcript would lack the glycosyl-phosphatidylinositol-anchor motif, and RBCs would be devoid of the Do glycoprotein.

Amino Acid Sequence↗

Cell typing the sensitized transfusion-dependent patient.

Extended red cell typing is required for the management of transfusion-dependent patients to confirm the identity of suspected alloantibodies or determine the specificity of potential additional antibodies that may be formed in the future. Typing may be complicated by the presence of circulating allogeneic cells or a positive direct antiglobulin test. Phenotyping such individuals by hemagglutination is dependent on the separation of a reticulocyte-enriched fraction by differential centrifugation. Flow cytometric typing of reticulocytes is also possible. The effectiveness of these techniques is limited in those who are heavily transfused or have low reticulocyte counts. Heavily transfused patients with sickle cell anemia may be typed, however, following hypotonic lysis of allogeneic cells. In patients with a positive direct antiglobulin test, sensitized cells are usually typed with either direct agglutinating antisera and/or IgG antisera following elution of the autoantibody. Inactivation of some antigens during the elution process or the lack of some antisera specificities limit such typing. By designing appropriate oligonucleotide primers, polymerase chain reaction (PCR) amplification of target gene sequences for most blood group systems and the identification of a large number of their allelic specificities is now possible. Peripheral blood leukocytes can be used as the DNA source. Restriction fragment length polymorphism determination is widely adopted for the identification of allelic specificity of the amplified target sequence. Alternate strategies, including allele-specific PCR, are often employed if the genetic basis of the polymorphism is more complex than a single nucleotide substitution, or if it does not create or ablate a restriction endonuclease cleavage site. These techniques may permit genotyping of sensitized transfusion-dependent patients, and can improve transfusion safety and efficacy.

Blood Group Antigens↗