1.Molecular basis of a new O61 allele in ABO blood group.
Su-Dan TAO ; Yan-Ming HE ; Yan-Ling YING ; Xiao-Zhen HONG ; Xian-Guo XU ; Fa-Ming ZHU ; Hang-Jun LÜ ; Li-Xing YAN
Journal of Experimental Hematology 2010;18(5):1327-1330
Objective of this study was to explore the molecular basis of a new O61 allele in ABO blood group. The ABO group antigens on red cells of the blood samples were identified by monoclonal antibodies and the ABO antibody in serum was detected by the standard A, B, O red cells. The coding region sequences of exon 5 to exon 7 in ABO gene were amplified by polymerase chain reaction (PCR) and the amplification products were purified with double enzyme digestion and directly sequenced for exon 6 and 7. The diploid of the individual with B phenotype was separated into its haploid components with a haplotype specific extraction method. The exons 6 to 7 of the two single ABO haplotypes were then amplified and sequenced separately. The results indicated that 3 samples had mutation at 743 site in total 417 individuals, in which 2 individuals were with O phenotype and 1 individual was with B phenotype. The DNA sequencing of exon 6 and 7 in 2 samples with O phenotype showed 261G deletion and 743G/C heterozygotes. The DNA sequencing of exon 6 and 7 in the sample with B phenotype showed 261G/deletion and 297A/G, 526C/G, 743G/C, 657C/T, 703G/A, 796C/A, 803G/C, 930G/A heterozygotes. After separating of the 2 single strands in the B sample with haplotype specific extraction, an O and B101 allele were identified after sequencing. The novel allele was submitted to the Blood Group Antigen Gene Mutation database and is named as O61. It is concluded that 743G>C is a novel mutation in exon 7 of ABO and a novel O61 allele with 743G>C has been identified.
ABO Blood-Group System
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classification
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genetics
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Alleles
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Exons
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Humans
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Molecular Sequence Data
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Phenotype
2.Serologic characteristics and population distribution of subtypes B2 and AB2 of ABO blood group.
Fu-Cai DUAN ; Ming-Lu WANG ; Ke-Li ZHOU ; Da-Yuan LI ; Qin-Yong ZHANG ; Ai-Ping MA ; He-Ying YANG ; Jian-Hua LI ; Yuan-Yuan LIU ; Fang XIAO ; Ying-Xue GAO
Journal of Experimental Hematology 2010;18(5):1331-1334
This study was aimed to investigate the serologic characteristics, genetic background and population distribution of B2 and AB2 subtype in Chinese ABO blood group. The classic blood group serological technology was used to detect ABO blood group of the propositus and their family members, the anti-B1 serum prepared by yourself was used to investigate the distribution of B1/B2 and AB1/AB2 subtype of the blood donor. The results indicated that the antigen of propositus was AB2 subtype and that of his child was B2 subtype. The anti-B1 antibody was detected in blood serum of propositus; the antigen of 3 from 2318 blood donors with B blood group were found to be B2 subtype, the antigen of 2 from 826 blood donors with AB blood group were found to be AB2 subtype. The investigation on propositus and the 3 B2 blood donor families showed that B2 antigen displays genetic characteristics of blood group. It is concluded that B2/AB2 subtype is from family inheritance, while B2 subtype is amounted to 0.129% in B blood group, and AB2 subtype is amounted to 0.224% in AB blood group.
ABO Blood-Group System
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classification
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genetics
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immunology
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Blood Grouping and Crossmatching
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China
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Female
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Genetics, Population
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Humans
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Male
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Middle Aged
3.A Case of ABO*Ael02/O04 Genotype with Typical Phenotype O.
Shin Young JOO ; Yeong Sook SHIM ; Mi Jung KIM ; Hye Lin KWON ; Kyung LEE ; Ho Eun CHANG ; Sang Hoon SONG ; Kyoung Un PARK ; Junghan SONG ; Kyou Sup HAN
The Korean Journal of Laboratory Medicine 2008;28(4):319-324
Ael is a rare blood type which has the least amount of A antigen among A subgroups. It can be detected by special tests performed to resolve the discrepancy between red cell and serum typing in routine serological typing. The presence of A antigen on Ael red cell is demonstrable only by adsorption and elution tests. An Ael individual does not secret A substance in the saliva and may have anti-A antibody in the serum which is usually less reactive with the reagent red cells than anti-B antibody. In Korea, Ael02 has been reported more frequently than other Ael alleles. We report a case of Ael02/O04 who presented as typical phenotype O with strong anti-A and anti-B antibodies and no A antigen detected even by adsorption and elution tests. The case has been proved to be Ael02/O04 by direct sequencing analysis. In individuals with history of discrepancies in the results of ABO phenotyping, ABO genotyping is needed for an accurate evaluation of their blood type.
ABO Blood-Group System/classification/*genetics
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Alleles
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Child
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Genotype
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Heterozygote
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Humans
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Male
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Pedigree
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Phenotype
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Sequence Analysis, DNA
4.Molecular basis and clinical transfusion of a family with Bw subtype of ABO blood group system.
Gang DENG ; Dan-dan HUANG ; Wen-yu GUO ; De-yi XU ; Yong DU ; You-li MA ; Zhe ZHANG
Chinese Journal of Medical Genetics 2013;30(4):473-476
OBJECTIVETo study a family with Bw subtype of ABO blood group system, and to review safety issues in relation with clinical transfusion.
METHODSThe molecular basis for the blood type was studied with serological assay, polymerase chain reaction-sequence specific primer (PCR-SSP) and DNA sequencing, TA clone and haplotype analysis in one blood donor whose ABO blood group were difficulty typed and her family. The bioinformatics analysis was carried out by biological analysis software to investigate the change of structure and function of enzymes influenced by the change amino acid. A retrospective survey was carried out to investigate what is the actual position that the donor blood was used in the clinical transfusion.
RESULTSThree members from the family were found to have a Bw subtype. A substitution of nucleotide C by T at position 721 in exon 7 was discovered, which resulted in replacement of amino acid Arg to Trp. Review of clinical record suggested that there has been no significant abnormality association with past three blood transfusions.
CONCLUSIONA 721C>T mutation of the ABO gene probably underlies the Bw subtype. Further research is needed for understanding the clinical significance of this subtype in the blood transfusion.
ABO Blood-Group System ; classification ; genetics ; Adult ; Amino Acid Sequence ; Base Sequence ; Blood Transfusion ; Exons ; Female ; Humans ; Male ; Molecular Sequence Data ; Pedigree ; Polymerase Chain Reaction ; Retrospective Studies
5.Preparation of transfusable human universal red blood cell with recombinant alpha-galactosidase.
Feng GONG ; Qiu-Shuang LÜ ; Ying YOU ; Hong-Wei GAO ; Guo-Qiang BAO ; Xin GAO ; Su-Bo LI ; Li-Li LI ; Ying-Li WANG ; Shu-Guang TIAN ; Zhi-Xin ZHANG ; Ping ZHANG ; Yang-Pei ZHANG
Journal of Experimental Hematology 2005;13(2):313-316
In order to meet the demand for safe transfusion in special conditions and to utilize the donated blood supply efficiently, technology has been developed to convert erythrocytes from type A, B, or AB to "universal donor" blood. Conversion of blood type B to O was performed by means of recombinant alpha-galactosidase digestion. The results showed that blood type B to O was converted successfully, 1 transfusion unit of red cells of group B (100 ml totally) could converted to universal blood cells in the optimal conditions including pH 5.6, 26 degrees C, 2 hours, obturation and sterilization. It is concluded that the universal red blood cells converted from group B to group O are conformed to demand of identification rules of biological products, no harmful effects of alpha-galactosidase on cell structure and function are observed. The converted red cells can stored in 4 degrees C for 21 days.
ABO Blood-Group System
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classification
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immunology
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Blood Group Incompatibility
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prevention & control
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Blood Transfusion
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methods
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Coffee
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enzymology
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Electrophoresis, Polyacrylamide Gel
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Enzyme-Linked Immunosorbent Assay
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Erythrocytes
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immunology
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metabolism
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Humans
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Isoantigens
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drug effects
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metabolism
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Recombinant Proteins
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metabolism
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pharmacology
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alpha-Galactosidase
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genetics
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metabolism
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pharmacology
6.Investigation of von Willebrand Factor Gene Mutations in Korean von Willebrand Disease Patients.
Jaewoo SONG ; Jong Rak CHOI ; Kyung Soon SONG
The Korean Journal of Laboratory Medicine 2007;27(3):169-176
BACKGROUND: We intended to find the mutations of von Willebrand factor (VWF) gene as the most important contributing factor of von Willebrand disease (VWD) in Korean patients. METHODS: In 40 known vWD patients mutations of vWF gene were sought by direct sequencing of PCR products targeting exons 18, 19, 20, 26, 28 and 52 frequently implicated as the locations of mutation. For factors other than VWF gene contributing to VWD phenotype, we tested ABO blood group and measured ADAMTS13 activity in VWD patients. RESULTS: Twenty-seven cases (67.5%) were type 1 vWD, 3 cases (7.5%) type 3, and 5 cases (12.5%) type 2A. Three cases were type 2A or 2B (7.5%) and 2 cases were suspected to be type 2N (5.0%). Among them six candidate missense mutations were found: V1279I, R1306W, R1308C, and V1316M were previously reported in type 2B and type 1 vWD, and C858W and T1477I were novel findings. All patients were heterozygotes. Blood group O was overly represented in VWD patients, while ADAMTS13 activity of the patients was not significantly different from that of normal control. CONCLUSIONS: Mutation of VWF gene detected by genetic studies can significantly improve the diagnostic accuracy, especially in subtype assignment of VWD. Two novel mutations, C858W and T1477I associated with VWD were found and expected to contribute to the elucidation of its pathophysiology.
ABO Blood-Group System
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ADAM Proteins/analysis
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Heterozygote
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Humans
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Korea
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*Mutation, Missense
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Polymerase Chain Reaction
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Polymorphism, Genetic
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Sequence Analysis, DNA
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von Willebrand Disease/classification/diagnosis/*genetics
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von Willebrand Factor/analysis/*genetics