Background And Objectives: The molecular basis of the weak D phenotype has been investigated for many years, and more than 80 different alleles producing weak D phenotypes have been identified. Most alleles producing weak D phenotypes have a single missense mutation in exons corresponding to a transmembrane domain of the RhD polypeptide. We report here RHD alleles with single nucleotide mutations in Japanese accounting for weak expression of D antigen.
Methods: Seventy-five blood samples with a weak D phenotype were detected from 763 408 blood donors by standard serological methods. Forty-five of the 75 blood donors were available for RHD gene analysis by PCR and sequencing using genomic DNA and reticulocyte mRNA. Real-time PCR was performed to estimate the relative amounts of the RHD transcripts.
Results: We detected 16 different RHD alleles in the 45 individuals with weak D by nucleotide sequencing; 12 were newly identified. Thirty-two of the 45 individuals had an RHD allele with a single missense mutation, while the other 13 individuals had RHD with a c.960G>A silent mutation in exon 7. Red blood cells of these 13 individuals showed direct agglutination with anti-D at a strength of 3+ or less. Semi-quantitative analysis of the RHD transcripts by real-time PCR revealed that the cDNA samples with the c.960G>A mutation showed a significant increment of exon 7 skipping compared with the common RHD.
Conclusion: Reduced expression of D antigen is caused not only by missense mutation of the RHD gene, but also by silent mutation that may affect splicing.
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http://dx.doi.org/10.1111/vox.12322 | DOI Listing |
Genes (Basel)
December 2024
Laboratory of Medical Genetics, Clinical Pathology UOC, Fondazione IRCCS Ca' Granda Ospedale Maggiore Policlinico, 20122 Milan, Italy.
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January 2025
Kirov Hematology and Blood Transfusion Research Institute Under the Federal Medicine and Biology Agency, Federal State Budget Research Institution, Kirov, Russia.
Nucleic Acids Res
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SynVaccine Ltd, Ramat Hachayal, 3 Golda Meir Street, Science Park, Nes Ziona 7403648, Israel.
Many viruses of the Flaviviridae family, including the Zika virus (ZIKV), are human pathogens of significant public health concerns. Despite extensive research, there are currently no approved vaccines available for ZIKV and specifically no live-attenuated Zika vaccine. In this current study, we suggest a novel computational algorithm for generating live-attenuated vaccines via the introduction of silent mutation into regions that undergo selection for strong or weak local RNA folding or into regions that exhibit medium levels of sequence conservation.
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January 2025
Department of Endocrinology, The Second Affiliated Hospital of Fujian Medical University, No. 950 Donghai Street, Fengze District, Quanzhou, 362000, Fujian, China.
The significance of ALKBH5 in erasing mRNA methylation in mRNA biogenesis, decay, and translation control has emerged as a prominent research focus. Additionally, ALKBH5 is associated with the development of numerous human cancers. However, it remains unclear whether ALKBH5 regulates the growth and metastasis of papillary thyroid carcinoma (PTC).
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