TFIIIC as a Potential Epigenetic Modulator of Histone Acetylation in Human Stem Cells

Author:

Vezzoli Marco1ORCID,de Llobet Cucalon Lara Isabel2ORCID,Di Vona Chiara34ORCID,Morselli Marco1,Montanini Barbara1ORCID,de la Luna Susana345ORCID,Teichmann Martin6,Dieci Giorgio1ORCID,Ferrari Roberto1ORCID

Affiliation:

1. Department of Chemistry, Life Sciences and Environmental Sustainability, University of Parma, Parco Area delle Scienze 23/A, 43124 Parma, Italy

2. Vall d’Hebron Institute of Oncology (VHIO), C/Natzaret 115-117, 08035 Barcelona, Spain

3. Genome Biology Program, Center for Genomic Regulation (CRG), Barcelona Institute of Science and Technology (BIST) and Universitat Pompeu Fabra (UPF), 08003 Barcelona, Spain

4. CIBER of Rare Diseases (CIBERER), 08003 Barcelona, Spain

5. Institució Catalana de Recerca i Estudis Avançats (ICREA), 08010 Barcelona, Spain

6. Université de Bordeaux INSERM U1312 (Bordeaux Institute of Oncology) 146, rue Léo Saignat, 33076 Bordeaux, France

Abstract

Regulation of histone acetylation dictates patterns of gene expression and hence cell identity. Due to their clinical relevance in cancer biology, understanding how human embryonic stem cells (hESCs) regulate their genomic patterns of histone acetylation is critical, but it remains largely to be investigated. Here, we provide evidence that acetylation of histone H3 lysine-18 (H3K18ac) and lysine-27 (H3K27ac) is only partially established by p300 in stem cells, while it represents the main histone acetyltransferase (HAT) for these marks in somatic cells. Our analysis reveals that whereas p300 marginally associated with H3K18ac and H3K27ac in hESCs, it largely overlapped with these histone marks upon differentiation. Interestingly, we show that H3K18ac is found at “stemness” genes enriched in RNA polymerase III transcription factor C (TFIIIC) in hESCs, whilst lacking p300. Moreover, TFIIIC was also found in the vicinity of genes involved in neuronal biology, although devoid of H3K18ac. Our data suggest a more complex pattern of HATs responsible for histone acetylations in hESCs than previously considered, suggesting a putative role for H3K18ac and TFIIIC in regulating “stemness” genes as well as genes associated with neuronal differentiation of hESCs. The results break ground for possible new paradigms for genome acetylation in hESCs that could lead to new avenues for therapeutic intervention in cancer and developmental diseases.

Funder

Bando Galileo 2022

AIRC IG

Spanish Ministry of Science and Innovation

Centro de Excelencia Severo Ochoa

CERCA Programme/Generalitat de Catalunya

Ligue Contre le Cancer, committees des Landes et de la Dordogne

Publisher

MDPI AG

Subject

Inorganic Chemistry,Organic Chemistry,Physical and Theoretical Chemistry,Computer Science Applications,Spectroscopy,Molecular Biology,General Medicine,Catalysis

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