A new murine Rpl5 (uL18) mutation provides a unique model of variably penetrant Diamond-Blackfan anemia

Author:

Yu Lei1,Lemay Philippe2,Ludlow Alexander3,Guyot Marie-Claude2,Jones Morgan4,Mohamed Fatma F.5,Saroya Ghazi-Abdullah5,Panaretos Christopher5,Schneider Emily1ORCID,Wang Yu1,Myers Greggory1ORCID,Khoriaty Rami14ORCID,Li Qing14ORCID,Franceschi Renny5ORCID,Engel James Douglas1ORCID,Kaartinen Vesa5ORCID,Rothstein Thomas L.3,Justice Monica J.67ORCID,Kibar Zoha2,Singh Sharon A.38ORCID

Affiliation:

1. Department of Cell and Developmental Biology, University of Michigan Medical School, Ann Arbor, MI;

2. Department of Neurosciences, CHU Sainte Justine Research Center, University of Montréal, Montreal, QC, Canada;

3. Center for Immunobiology and Department of Investigative Medicine,Western Michigan University Homer Stryker M.D. School of Medicine, Kalamazoo, MI;

4. Department of Internal Medicine, University of Michigan Medical School, Ann Arbor, MI;

5. Department of Biologic and Materials Sciences, University of Michigan School of Dentistry, Ann Arbor, MI;

6. Department of Molecular and Human Genetics, Baylor College of Medicine, Houston, TX;

7. Program in Genetics and Genome Biology, The Hospital for Sick Children, Toronto, ON, Canada; and

8. Department of Pediatrics, University of Michigan Medical School, Ann Arbor, MI

Abstract

Abstract Ribosome dysfunction is implicated in multiple abnormal developmental and disease states in humans. Heterozygous germline mutations in genes encoding ribosomal proteins are found in most individuals with Diamond-Blackfan anemia (DBA), whereas somatic mutations have been implicated in a variety of cancers and other disorders. Ribosomal protein-deficient animal models show variable phenotypes and penetrance, similar to human patients with DBA. In this study, we characterized a novel ENU mouse mutant (Skax23m1Jus) with growth and skeletal defects, cardiac malformations, and increased mortality. After genetic mapping and whole-exome sequencing, we identified an intronic Rpl5 mutation, which segregated with all affected mice. This mutation was associated with decreased ribosome generation, consistent with Rpl5 haploinsufficiency. Rpl5Skax23-Jus/+ animals had a profound delay in erythroid maturation and increased mortality at embryonic day (E) 12.5, which improved by E14.5. Surviving mutant animals had macrocytic anemia at birth, as well as evidence of ventricular septal defect (VSD). Surviving adult and aged mice exhibited no hematopoietic defect or VSD. We propose that this novel Rpl5Skax23-Jus/+ mutant mouse will be useful in studying the factors influencing the variable penetrance that is observed in DBA.

Publisher

American Society of Hematology

Subject

Hematology

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