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TOPICAL COLLECTIONS

3D Chromatin Structure Dynamics During Cardiac Embryonic Development: A Technological Update

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Michel Pucéat

Michel Pucéat

National Institute for Health and Medical Research (INSERM France) & Aix-Marseille University

<p>Dr. Michel Puc&eacute;at is an INSERM research director. He is the principal investigator of an INSERM team named &ldquo;Physiopathology of cardiac development&rdquo; at the Medical School La Timone (Marseilles, France). His main field of interest is cardiac biology of development. He has focused his research on the epigenetic regulation of this developmental process. Using mouse and human iPS cell models of rare diseases including an epigenetic component, his research group aims at deciphering the molecular mechanisms of the diseases to uncover molecular targets of chromatin modifiers to develop pharmacological therapies for these diseases. Using a single-cell RNA-seq approach, the team also studies cell heterogeneity within cardiac lineages at the origin of the embryonic and adult heart. He has also been a coordinator of and partnered with international networks of excellence such as the Leducq foundation network.</p>

Collection Overview

The dynamic changes of the genome structure ensure a proper expression of the genetic program and is a mandatory process for embryonic development. The heart is the first organ to be formed and to be functional in the embryo. Many congenital cardiac diseases cannot be explained by gene mutations. An epigenetic origin including alterations in the 3D chromatin structure is likely to play a key causative role in these diseases. In recent years, technical approaches to address this biological question have been developed. These include chromosome configuration capture (3C), 3C combined to DNA sequencing(4C), ChIP-loop, Hi-C, ATAC-seq, and more recently high-resolution microscopy. The current Methods Collection will present how to apply these techniques within cardiac developmental biology research projects.

Articles

Nuclei Isolation from Mouse Cardiac Progenitor Cells for Epigenome and Gene Expression Profiling at Single-Cell Resolution
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Nuclei Isolation from Mouse Cardiac Progenitor Cells for Epigenome and Gene Expression Profiling at Single-Cell Resolution

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Cited by 5

2023

Abstracts

<p>Open chromatin profiling of cardiac progenitor cells</p>

Sonia Stefanovic*1

1Aix Marseille University , INSERM U1251, Marseille Medical Genetics, 13005 Marseille, France