Targeted disruption of Zfp36l2, encoding a CCCH tandem zinc finger RNA-binding protein, results in defective hematopoiesis

Author:

Stumpo Deborah J.1,Broxmeyer Hal E.23,Ward Toni1,Cooper Scott23,Hangoc Giao23,Chung Yang Jo4,Shelley William C.56,Richfield Eric K.78,Ray Manas K.9,Yoder Mervin C.56,Aplan Peter D.4,Blackshear Perry J.110

Affiliation:

1. Laboratory of Signal Transduction, National Institute of Environmental Health Sciences, Research Triangle Park, NC;

2. Department of Microbiology and Immunology, Indiana University School of Medicine, Indianapolis;

3. Walther Oncology Center, Indiana University School of Medicine, Indianapolis;

4. Genetics Branch, Center for Cancer Research, National Cancer Institute, Bethesda, MD;

5. Department of Pediatrics, Indiana University School of Medicine, Indianapolis;

6. Wells Center for Pediatric Research, Indiana University School of Medicine, Indianapolis;

7. Department of Pathology and Laboratory Medicine, Robert Wood Johnson Medical School, New Brunswick, NJ;

8. Molecular Histology Center, Environmental and Occupational Health Sciences Institute, University of Medicine and Dentistry, Piscataway, NJ;

9. Knock Out Core, National Institute of Environmental Health Sciences, Research Triangle Park, NC; and

10. Departments of Medicine and Biochemistry, Duke University Medical Center, Durham, NC

Abstract

AbstractMembers of the tristetraprolin family of tandem CCCH finger proteins can bind to AU-rich elements in the 3′-untranslated region of mRNAs, leading to their deadenylation and subsequent degradation. Partial deficiency of 1 of the 4 mouse tristetraprolin family members, Zfp36l2, resulted in complete female infertility because of early embryo death. We have now generated mice completely deficient in the ZFP36L2 protein. Homozygous Zfp36l2 knockout (KO) mice died within approximately 2 weeks of birth, apparently from intestinal or other hemorrhage. Analysis of peripheral blood from KO mice showed a decrease in red and white cells, hemoglobin, hematocrit, and platelets. Yolk sacs from embryonic day 11.5 (E11.5) Zfp36l2 KO mice and fetal livers from E14.5 KO mice gave rise to markedly reduced numbers of definitive multilineage and lineage-committed hematopoietic progenitors. Competitive reconstitution experiments demonstrated that Zfp36l2 KO fetal liver hematopoietic stem cells were unable to adequately reconstitute the hematopoietic system of lethally irradiated recipients. These data establish Zfp36l2 as a critical modulator of definitive hematopoiesis and suggest a novel regulatory pathway involving control of mRNA stability in the life cycle of hematopoietic stem and progenitor cells.

Publisher

American Society of Hematology

Subject

Cell Biology,Hematology,Immunology,Biochemistry

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