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Ribosomal protein mutations in Korean patients with Diamond-Blackfan anemia

  • Hyojin Chae
  • , Joonhong Park
  • , Seungok Lee
  • , Myungshin Kim*
  • , Yonggoo Kim
  • , Jae Wook Lee
  • , Nack Gyun Chung
  • , Bin Cho
  • , Dae Chul Jeong
  • , Jiyeon Kim
  • , Jung Rok Kim
  • , Geon Park
  • *Corresponding author for this work
  • The Catholic University of Korea
  • Chosun University

Research output: Contribution to journalJournal articlepeer-review

Abstract

Diamond-Blackfan anemia (DBA) is a congenital bone marrow failure syndrome characterized by hypoproliferative anemia, associated physical malformations and a predisposition to cancer. DBA has been associated with mutations and deletions in the large and small ribosomal protein genes, and genetic aberrations have been detected in ∼50-60% of patients. In this study, nine Korean DBA patients were screened for mutations in eight known DBA genes (RPS19, RPS24, RPS17, RPS10, RPS26, RPL35A, RPL5 and RPL11) using the direct sequencing method. Mutations in RPS19, RPS26 and RPS17 were detected in four, two and one patient, respectively. Among the mutations detected in RPS19, two mutations were novel (c.26T>A, c.357- 2A>G). For the mutation-negative cases, array-CGH analysis was performed to identify copy-number variations, and no deletions involving the known DBA gene regions were identified. The relative mRNA expression of RPS19 estimated using realtime quantitative PCR analysis revealed two- to fourfold reductions in RPS19 mRNA expression in three patients with RPS19 mutations, and p53 protein expression analysis by immunohistochemistry showed variable but significant nuclear staining in the DBA patients. In conclusion, heterozygous mutations in the known DBA genes RPS19, RPS26 and RPS17 were detected in seven out of nine Korean DBA patients. Among these patients, RPS19 was the most frequently mutated gene. In addition, decreased RPS19 mRNA expression and p53 overexpression were observed in the Korean DBA patients, which supports the hypothesis that haploinsufficiency and p53 hyperactivation represent a central pathway underlying the pathogenesis of DBA.

Original languageEnglish
Article numbere88
JournalExperimental and Molecular Medicine
Volume46
Issue number3
DOIs
StatePublished - 2014.03

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 3 - Good Health and Well-being
    SDG 3 Good Health and Well-being

Keywords

  • Array-CGH
  • Diamond-Blackfan anemia
  • Ribosomal protein
  • Sequencing

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