A novel role for Lyl1 in primitive erythropoiesis

Author:

Chiu Sung K.1,Saw Jesslyn1,Huang Yizhou23,Sonderegger Stefan E.1,Wong Nicholas C.45,Powell David R.5,Beck Dominic23,Pimanda John E.267,Tremblay Cedric S.1,Curtis David J.18

Affiliation:

1. Australian Centre for Blood Diseases, Monash University, Melbourne, Australia

2. Lowy Cancer Research Centre and the Prince of Wales Clinical School, University of New South Wales, Sydney, Australia

3. Centre for Health Technologies, School of Biomedical Engineering and the School of Software, University of Technology, Sydney, Australia

4. Central Clinical School, Monash University, Melbourne, Australia

5. Bioinformatics Platform, Monash University, Melbourne, Australia

6. Department of Haematology, Prince of Wales Hospital, Sydney, Australia

7. Department of Pathology, School of Medical Sciences, University of New South Wales, Sydney, Australia

8. Department of Clinical Haematology, The Alfred Hospital, Melbourne, Australia

Abstract

Stem Cell Leukemia (Scl or Tal1) and Lymphoblastic Leukemia 1 (Lyl1) are highly related members of the basic helix-loop-helix (bHLH) family of transcription factors that are co- expressed in the erythroid lineage. Previous studies suggest that Scl is essential for primitive erythropoiesis. However, analysis of single-cell RNA-sequencing data of early embryos showed that primitive erythroid cells express both Scl and Lyl1. Therefore, to determine whether Lyl1 can function in primitive erythropoiesis, we crossed conditional Scl knockout mice with mice expressing a Cre recombinase under the control of the Epo receptor, active in erythroid progenitors. Embryos with 20% expression of Scl from E9.5 survived to adulthood. However, mice with reduced expression of Scl and absence of Lyl1 (double knockout; DKO) died at E10.5 due to progressive loss of erythropoiesis. Gene expression profiling of DKO yolk sacs revealed loss of Gata1 and many of the known target genes of the SCL-GATA1 complex. ChIP-seq analyses showed that LYL1 exclusively bound a small subset of SCL targets including GATA1. Together, these data show for the first time that Lyl1 can maintain primitive erythropoiesis.

Funder

National Health and Medical Research Council

Sylvia and Charles Viertel Charitable Foundation

Publisher

The Company of Biologists

Subject

Developmental Biology,Molecular Biology

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