GATA1 controls numbers of hematopoietic progenitors and their response to autoimmune neuroinflammation

Author:

Hwang Daniel1ORCID,Ishikawa Larissa Lumi Watanabe1ORCID,Seyedsadr Maryam S.1,Mari Elisabeth1,Kasimoglu Ezgi1,Sahin Ziver1,Boehm Alexandra1ORCID,Jang Soohwa1,Rasouli Javad1ORCID,Vaccaro Courtney2,Gonzalez Michael23,Hakonarson Hakon2,Rostami Abdolmohamad1,Zhang Guang-Xian1,Ciric Bogoljub1

Affiliation:

1. 1Department of Neurology, Jefferson Hospital for Neuroscience, Thomas Jefferson University, Philadelphia, PA

2. 2Center for Applied Genomics, Leonard and Madlyn Abramson Pediatric Research Center, Children’s Hospital of Philadelphia Research Institute, Philadelphia, PA

3. 3Center for Cytokine Storm Treatment & Laboratory, Perelman School of Medicine, University of Pennsylvania, Philadelphia, PA

Abstract

AbstractGATA-binding factor 1 (GATA1) is a transcription factor that governs the development and function of multiple hematopoietic cell lineages. GATA1 is expressed in hematopoietic stem and progenitor cells (HSPCs) and is essential for erythroid lineage commitment; however, whether it plays a role in hematopoietic stem cell (HSC) biology and the development of myeloid cells, and what that role might be, remains unclear. We initially set out to test the role of eosinophils in experimental autoimmune encephalomyelitis (EAE), a model of central nervous system autoimmunity, using mice lacking a double GATA-site (ΔdblGATA), which lacks eosinophils due to the deletion of the dblGATA enhancer to Gata1, which alters its expression. ΔdblGATA mice were resistant to EAE, but not because of a lack of eosinophils, suggesting that these mice have an additional defect. ΔdblGATA mice with EAE had fewer inflammatory myeloid cells than the control mice, suggesting that resistance to EAE is caused by a defect in myeloid cells. Naïve ΔdblGATA mice also showed reduced frequency of CD11b+ myeloid cells in the blood, indicating a defect in myeloid cell production. Examination of HSPCs revealed fewer HSCs and myeloid cell progenitors in the ΔdblGATA bone marrow (BM), and competitive BM chimera experiments showed a reduced capacity of the ΔdblGATA BM to reconstitute immune cells, suggesting that reduced numbers of ΔdblGATA HSPCs cause a functional deficit during inflammation. Taken together, our data show that GATA1 regulates the number of HSPCs and that reduced GATA1 expression due to dblGATA deletion results in a diminished immune response following the inflammatory challenge.

Publisher

American Society of Hematology

Subject

Hematology

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