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1.
Elife ; 92020 02 21.
Article in English | MEDLINE | ID: mdl-32081131

ABSTRACT

Polypyrimidine tract-binding protein 1 (PTBP1) is a RNA-binding protein (RBP) expressed throughout B cell development. Deletion of Ptbp1 in mouse pro-B cells results in upregulation of PTBP2 and normal B cell development. We show that PTBP2 compensates for PTBP1 in B cell ontogeny as deletion of both Ptbp1 and Ptbp2 results in a complete block at the pro-B cell stage and a lack of mature B cells. In pro-B cells PTBP1 ensures precise synchronisation of the activity of cyclin dependent kinases at distinct stages of the cell cycle, suppresses S-phase entry and promotes progression into mitosis. PTBP1 controls mRNA abundance and alternative splicing of important cell cycle regulators including CYCLIN-D2, c-MYC, p107 and CDC25B. Our results reveal a previously unrecognised mechanism mediated by a RBP that is essential for B cell ontogeny and integrates transcriptional and post-translational determinants of progression through the cell cycle.


Subject(s)
B-Lymphocytes/metabolism , Heterogeneous-Nuclear Ribonucleoproteins/physiology , Polypyrimidine Tract-Binding Protein/physiology , Animals , Cell Cycle , Cell Differentiation , Cell Proliferation , Female , Flow Cytometry , Gene Expression Regulation , Heterogeneous-Nuclear Ribonucleoproteins/metabolism , Male , Mice , Nerve Tissue Proteins/metabolism , Nerve Tissue Proteins/physiology , Polypyrimidine Tract-Binding Protein/metabolism , RNA-Binding Proteins/metabolism , RNA-Binding Proteins/physiology
3.
J Clin Invest ; 127(6): 2206-2221, 2017 Jun 01.
Article in English | MEDLINE | ID: mdl-28436936

ABSTRACT

Mutations of the splicing factor-encoding gene U2AF1 are frequent in the myelodysplastic syndromes (MDS), a myeloid malignancy, and other cancers. Patients with MDS suffer from peripheral blood cytopenias, including anemia, and an increasing percentage of bone marrow myeloblasts. We studied the impact of the common U2AF1S34F mutation on cellular function and mRNA splicing in the main cell lineages affected in MDS. We demonstrated that U2AF1S34F expression in human hematopoietic progenitors impairs erythroid differentiation and skews granulomonocytic differentiation toward granulocytes. RNA sequencing of erythroid and granulomonocytic colonies revealed that U2AF1S34F induced a higher number of cassette exon splicing events in granulomonocytic cells than in erythroid cells. U2AF1S34F altered mRNA splicing of many transcripts that were expressed in both cell types in a lineage-specific manner. In hematopoietic progenitors, the introduction of isoform changes identified in the U2AF1S34F target genes H2AFY, encoding an H2A histone variant, and STRAP, encoding serine/threonine kinase receptor-associated protein, recapitulated phenotypes associated with U2AF1S34F expression in erythroid and granulomonocytic cells, suggesting a causal link. Furthermore, we showed that isoform modulation of H2AFY and STRAP rescues the erythroid differentiation defect in U2AF1S34F MDS cells, suggesting that splicing modulators could be used therapeutically. These data have critical implications for understanding MDS phenotypic heterogeneity and support the development of therapies targeting splicing abnormalities.


Subject(s)
Myelodysplastic Syndromes/genetics , Splicing Factor U2AF/genetics , Case-Control Studies , Cell Lineage , Cell Proliferation , Cells, Cultured , Erythropoiesis , Gene Ontology , Granulocytes/physiology , Humans , Mutation, Missense , Myelodysplastic Syndromes/pathology , Protein Isoforms/genetics , Protein Isoforms/metabolism , RNA Splicing , Splicing Factor U2AF/metabolism
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