PUM1 mediates the posttranscriptional regulation of human fetal hemoglobin

Author:

Elagooz Reem1,Dhara Anita R.1,Gott Rose M.1,Adams Sarah E.1ORCID,White Rachael A.1,Ghosh Arnab2,Ganguly Shinjini3,Man Yuncheng4ORCID,Owusu-Ansah Amma5ORCID,Mian Omar Y.3,Gurkan Umut A.46ORCID,Komar Anton A.12789ORCID,Ramamoorthy Mahesh22ORCID,Gnanapragasam Merlin Nithya129ORCID

Affiliation:

1. 1Department of Biological, Geological and Environmental Sciences, Cleveland State University, Cleveland, OH

2. 2Center for Gene Regulation in Health and Disease, Cleveland State University, Cleveland, OH

3. 3Department of Translational Hematology and Oncology Research, Taussig Cancer Institute, Cleveland Clinic, Cleveland, OH

4. 4Department of Mechanical and Aerospace Engineering, University Hospitals Rainbow Babies and Children’s Hospital, Case Western Reserve University, Cleveland, OH

5. 5Department of Pediatrics, Division of Hematology and Oncology, University Hospitals Rainbow Babies and Children’s Hospital, Case Western Reserve University, Cleveland, OH

6. 6Department of Biomedical Engineering, Case Western Reserve University, Cleveland, OH

7. 7Genomic Medicine Institute, Lerner Research Institute, Cleveland Clinic, Cleveland, OH

8. 8Department of Biochemistry, Case Western Reserve University, Cleveland, OH

9. 9Center for RNA Science and Therapeutics, Case Western Reserve University, Cleveland, OH

Abstract

Abstract The fetal-to-adult hemoglobin switching at about the time of birth involves a shift in expression from γ-globin to β-globin in erythroid cells. Effective re-expression of fetal γ-globin can ameliorate sickle cell anemia and β-thalassemia. Despite the physiological and clinical relevance of this switch, its posttranscriptional regulation is poorly understood. Here, we identify Pumilo 1 (PUM1), an RNA-binding protein with no previously reported functions in erythropoiesis, as a direct posttranscriptional regulator of β-globin switching. PUM1, whose expression is regulated by the erythroid master transcription factor erythroid Krüppel-like factor (EKLF/KLF1), peaks during erythroid differentiation, binds γ-globin messenger RNA (mRNA), and reduces γ-globin (HBG1) mRNA stability and translational efficiency, which culminates in reduced γ-globin protein levels. Knockdown of PUM1 leads to a robust increase in fetal hemoglobin (∼22% HbF) without affecting β-globin levels in human erythroid cells. Importantly, targeting PUM1 does not limit the progression of erythropoiesis, which provides a potentially safe and effective treatment strategy for sickle cell anemia and β-thalassemia. In support of this idea, we report elevated levels of HbF in the absence of anemia in an individual with a novel heterozygous PUM1 mutation in the RNA-binding domain (p.(His1090Profs∗16); c.3267_3270delTCAC), which suggests that PUM1-mediated posttranscriptional regulation is a critical player during human hemoglobin switching.

Publisher

American Society of Hematology

Subject

Hematology

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