Erythropoietic Defect Associated with Reduced Cell Proliferation in Mice Lacking the 26S Proteasome Shuttling Factor Rad23b

Author:

Bergink Steven1,Theil Arjan F.1,Toussaint Wendy1,De Cuyper Iris M.2,Kulu Divine I.3,Clapes Thomas34,van der Linden Reinier5,Demmers Jeroen A.67,Mul Eric P.8,van Alphen Floris P.8,Marteijn Jurgen A.1,van Gent Teus39,Maas Alex3,Robin Catherine3410,Philipsen Sjaak379,Vermeulen Wim17,Mitchell James R.111,Gutiérrez Laura23

Affiliation:

1. Department of Genetics, Erasmus MC, Rotterdam, The Netherlands

2. Department of Blood Cell Research, Sanquin Research and Landsteiner Laboratory, Academic Medical Center, University of Amsterdam, Amsterdam, The Netherlands

3. Department of Cell Biology, Erasmus MC, Rotterdam, The Netherlands

4. Hubrecht Institute, Royal Netherlands Academy of Arts and Sciences, Utrecht, The Netherlands

5. Erasmus Stem Cell Institute for Regenerative Medicine, Erasmus MC, Rotterdam, The Netherlands

6. Department of Biomics, Erasmus MC, Rotterdam, The Netherlands

7. Netherlands Proteomics Centre, Erasmus MC, Rotterdam, The Netherlands

8. Department of Molecular Cell Biology, Sanquin Research and Landsteiner Laboratory, Academic Medical Center, University of Amsterdam, Amsterdam, The Netherlands

9. Netherlands Consortium for Systems Biology, Erasmus MC, Rotterdam, The Netherlands

10. Department of Cell Biology, University Medical Centre, Utrecht, The Netherlands

11. Department of Genetics and Complex Diseases, Harvard School of Public Health, Boston, Massachusetts, USA

Abstract

ABSTRACT Rad23a and Rad23b proteins are linked to nucleotide excision DNA repair (NER) via association with the DNA damage recognition protein xeroderma pigmentosum group C (XPC) are and known to be implicated in protein turnover by the 26S proteasome. Rad23b-null mice are NER proficient, likely due to the redundant function of the Rad23b paralogue, Rad23a. However, Rad23b-null midgestation embryos are anemic, and most embryos die before birth. Using an unbiased proteomics approach, we found that the majority of Rad23b-interacting partners are associated with the ubiquitin-proteasome system (UPS). We tested the requirement for Rad23b-dependent UPS activity in cellular proliferation and more specifically in the process of erythropoiesis. In cultured fibroblasts derived from embryos lacking Rad23b, proliferation rates were reduced. In fetal livers of Rad23b-null embryos, we observed reduced proliferation, accumulation of early erythroid progenitors, and a block during erythroid maturation. In primary wild-type (WT) erythroid cells, knockdown of Rad23b or chemical inhibition of the proteasome reduced survival and differentiation capability. Finally, the defects linked to Rad23b loss specifically affected fetal definitive erythropoiesis and stress erythropoiesis in adult mice. Together, these data indicate a previously unappreciated requirement for Rad23b and the UPS in regulation of proliferation in different cell types.

Publisher

American Society for Microbiology

Subject

Cell Biology,Molecular Biology

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