ETV6 represses inflammatory response genes and regulates HSPC function during stress hematopoiesis in mice

Author:

Bloom Mackenzie12ORCID,Oak Ninad2ORCID,Baskin-Doerfler Rebekah3,Feng Ruopeng4,Iacobucci Ilaria5,Baviskar Pradyumna5,Zhao Xujie6,Stroh Alexa N.2,Li Chunliang7ORCID,Ozark Patrick2ORCID,Tillman Heather S.5ORCID,Li Yichao4ORCID,Verbist Katherine C.8,Albeituni Sabrin2,Scott Danny C.9ORCID,King Moeko T.9,McKinney-Freeman Shannon L.4,Weiss Mitchell J.4,Yang Jun J.6,Nichols Kim E.2ORCID

Affiliation:

1. 1St. Jude Graduate School of Biomedical Sciences, Memphis, TN

2. 2Department of Oncology, St. Jude Children’s Research Hospital, Memphis, TN

3. 3Flow Cytometry & Cell Sorting Resource, St. Jude Children’s Research Hospital, Memphis, TN

4. 4Department of Hematology, St. Jude Children’s Research Hospital, Memphis, TN

5. 5Department of Pathology, St. Jude Children’s Research Hospital, Memphis, TN

6. 6Department of Pharmaceutical Sciences, St. Jude Children’s Research Hospital, Memphis, TN

7. 7Department of Tumor Cell Biology, St. Jude Children’s Research Hospital, Memphis, TN

8. 8Department of Immunology, St. Jude Children’s Research Hospital, Memphis, TN

9. 9Department of Structural Biology, St. Jude Children’s Research Hospital, Memphis, TN

Abstract

Abstract ETS variant 6 (ETV6) encodes a transcriptional repressor expressed in hematopoietic stem and progenitor cells (HSPCs), where it is required for adult hematopoiesis. Heterozygous pathogenic germline ETV6 variants are associated with thrombocytopenia 5 (T5), a poorly understood genetic condition resulting in thrombocytopenia and predisposition to hematologic malignancies. To elucidate how germline ETV6 variants affect HSPCs and contribute to disease, we generated a mouse model harboring an Etv6R355X loss-of-function variant, equivalent to the T5-associated variant ETV6R359X. Under homeostatic conditions, all HSPC subpopulations are present in the bone marrow (BM) of Etv6R355X/+ mice; however, these animals display shifts in the proportions and/or numbers of progenitor subtypes. To examine whether the Etv6R355X/+ mutation affects HSPC function, we performed serial competitive transplantation and observed that Etv6R355X/+ lineage−sca1+cKit+ (LSK) cells exhibit impaired reconstitution, with near complete failure to repopulate irradiated recipients by the tertiary transplant. Mechanistic studies incorporating cleavage under target and release under nuclease assay, assay for transposase accessible chromatin sequencing, and high-throughput chromosome conformation capture identify ETV6 binding at inflammatory gene loci, including multiple genes within the tumor necrosis factor (TNF) signaling pathway in ETV6-sufficient mouse and human HSPCs. Furthermore, single-cell RNA sequencing of BM cells isolated after transplantation reveals upregulation of inflammatory genes in Etv6R355X/+ progenitors when compared to Etv6+/+ counterparts. Corroborating these findings, Etv6R355X/+ HSPCs produce significantly more TNF than Etv6+/+ cells post-transplantation. We conclude that ETV6 is required to repress inflammatory gene expression in HSPCs under conditions of hematopoietic stress, and this mechanism may be critical to sustain HSPC function.

Publisher

American Society of Hematology

Subject

Hematology

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