The autophagy protein Atg7 is essential for hematopoietic stem cell maintenance

Author:

Mortensen Monika1,Soilleux Elizabeth J.11,Djordjevic Gordana1,Tripp Rebecca1,Lutteropp Michael1,Sadighi-Akha Elham1,Stranks Amanda J.1,Glanville Julie1,Knight Samantha1,W. Jacobsen Sten-Eirik1,Kranc Kamil R.2,Simon Anna Katharina11

Affiliation:

1. Nuffield Department of Clinical Medicine, Nuffield Department of Clinical Laboratory Sciences, and Haematopoietic Stem Cell Laboratory, Weatherall Institute of Molecular Medicine; Department of Cellular Pathology; and Translational Immunology Laboratory and Genetics and Pathology Theme, National Institute for Health Research Oxford Biomedical Research Centre, Wellcome Trust Centre for Human Genet

2. Paul O’Gorman Leukaemia Research Centre, Institute of Cancer Sciences, College of Medical, Veterinary, and Life Sciences, University of Glasgow, Glasgow G12 0XB, Scotland, UK

Abstract

The role of autophagy, a lysosomal degradation pathway which prevents cellular damage, in the maintenance of adult mouse hematopoietic stem cells (HSCs) remains unknown. Although normal HSCs sustain life-long hematopoiesis, malignant transformation of HSCs leads to leukemia. Therefore, mechanisms protecting HSCs from cellular damage are essential to prevent hematopoietic malignancies. In this study, we crippled autophagy in HSCs by conditionally deleting the essential autophagy gene Atg7 in the hematopoietic system. This resulted in the loss of normal HSC functions, a severe myeloproliferation, and death of the mice within weeks. The hematopoietic stem and progenitor cell compartment displayed an accumulation of mitochondria and reactive oxygen species, as well as increased proliferation and DNA damage. HSCs within the Lin−Sca-1+c-Kit+ (LSK) compartment were significantly reduced. Although the overall LSK compartment was expanded, Atg7-deficient LSK cells failed to reconstitute the hematopoietic system of lethally irradiated mice. Consistent with loss of HSC functions, the production of both lymphoid and myeloid progenitors was impaired in the absence of Atg7. Collectively, these data show that Atg7 is an essential regulator of adult HSC maintenance.

Publisher

Rockefeller University Press

Subject

Immunology,Immunology and Allergy

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