Polycombs and microRNA-223 regulate human granulopoiesis by transcriptional control of target gene expression

Author:

Zardo Giuseppe12,Ciolfi Alberto12,Vian Laura13,Starnes Linda M.1,Billi Monia4,Racanicchi Serena4,Maresca Carmen12,Fazi Francesco13,Travaglini Lorena1,Noguera Nelida56,Mancini Marco2,Nanni Mauro2,Cimino Giuseppe2,Lo-Coco Francesco67,Grignani Francesco4,Nervi Clara138

Affiliation:

1. San Raffaele Bio-medical Park Foundation, Rome, Italy;

2. Department of Cellular Biotechnologies and Hematology, University La Sapienza, Rome, Italy;

3. Department of Medical-Surgical Sciences and Biotechnologies, University La Sapienza, Latina, Italy;

4. Department of Clinical and Experimental Medicine, General Pathology, University of Perugia, Perugia, Italy;

5. Department of Chemical Biochemistry (Hematology), Universidad Nacional de Rosario, Rosario, Argentina;

6. Laboratorio di Neuro-Oncoematologia, Fondazione Santa Lucia, Rome, Italy;

7. Department of Biopathology, University Tor Vergata, Rome, Italy; and

8. Centro di Ricerca per le Malattie Sociali, Rome, Italy

Abstract

Abstract Epigenetic modifications regulate developmental genes involved in stem cell identity and lineage choice. NFI-A is a posttranscriptional microRNA-223 (miR-223) target directing human hematopoietic progenitor lineage decision: NFI-A induction or silencing boosts erythropoiesis or granulopoiesis, respectively. Here we show that NFI-A promoter silencing, which allows granulopoiesis, is guaranteed by epigenetic events, including the resolution of opposing chromatin “bivalent domains,” hypermethylation, recruitment of polycomb (PcG)–RNAi complexes, and miR-223 promoter targeting activity. During granulopoiesis, miR-223 localizes inside the nucleus and targets the NFI-A promoter region containing PcGs binding sites and miR-223 complementary DNA sequences, evolutionarily conserved in mammalians. Remarkably, both the integrity of the PcGs-RNAi complex and DNA sequences matching the seed region of miR-223 are required to induce NFI-A transcriptional silencing. Moreover, ectopic miR-223 expression in human myeloid progenitors causes heterochromatic repression of NFI-A gene and channels granulopoiesis, whereas its stable knockdown produces the opposite effects. Our findings indicate that, besides the regulation of translation of mRNA targets, endogenous miRs can affect gene expression at the transcriptional level, functioning in a critical interface between chromatin remodeling complexes and the genome to direct fate lineage determination of hematopoietic progenitors.

Publisher

American Society of Hematology

Subject

Cell Biology,Hematology,Immunology,Biochemistry

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