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RHD gene polymorphism among RhD-negative Han Chinese
Authors:Xu Qun  Zhang Jianye  Wang Qinyou  Zhang Shixun  Si Guiling
Affiliation:1. Central Laboratory, Blood Center of Shandong Province, Jinan 250014, China
2. Biochemistry and Molecular Biology Institute, Medical School of Shandong University, Jinan 250011, China
Abstract:Objective To evaluate the status of eight RHD specific exons in 131 Han Chinese blood donors who were classified as RhD-negative by serological methods and explore the genomic structure of RHD gene among the Han Chinese. The Rh blood group system has the highest prevalence of polymorphisms among human blood group systems and is clinically significant in transfusion medicine. The Rh antigens are expressed on polypeptides encoded by two highly homologous genes, RHD and RHCE. Recent molecular studies have shown that the RhD-negative trait could be generated by multiple genetic mechanisms and is ethnic group-dependent. Methods The polymerase chain reaction using-sequence specific primers (PCR-SSP) was used to amplify exons 2, 3, 4, 5, 6, 7, 9 and 10 of RHD gene and exons 1, 2 and 5 of RHCE gene, as well as intron 4 in each of them.Results The 131 cases of RhD-negative phenotypes consisted of 60 ccee, 58 Ccee, 5 ccEe, 5 CcEe and 3 CCee. Among them, 83 with the Rh ccee or ccEe phenotypes (63.4%) lacked the eight RHD exons indicated above, while 26 cases with the Rh Ccee, CCee, CcEe phenotypes (19.9%) had all the RHD exons examined. Twenty-two individuals with the Ccee, CCee, CcEe phenotypes (16.8%) carried at least one RHD exon. The phenotypes of the RhD negative individuals carrying the RHD gene were Rh CC or Cc, but not cc. Conclusions Three classes of RhD-negative polymorphisms among a population of Han Chinese were observed. Antigen association analysis suggested the existence of a novel class of RhD-negative associated haplotype in Han Chinese. This haplotype consisted of a normal RHCE allele and a nonfunctional RHD gene. It may be beneficial to redefine the RhD-negative blood group among Chinese populations upon clarification of the mechanisms of RHD gene expression and RhD antigen immunization.
Keywords:polymerase chain reaction-sequence specific primer  Rh-Hr blood group system  genotyping polymorphism
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