EpiRetention · Mechanisms of selective transmission of epigenetic marks through the male germ line
Horizon 2020 — Marie Skłodowska-Curie Actions
- Duration
- 2017-08-01 → 2019-07-31
- EU contribution
- €158,122
- Participants
- 1
- Scheme
- MSCA-IF-EF-ST
Lines connect the coordinator with its partners.
Results in brief
Mechanisms of selective transmission of epigenetic marks through the male germ line
In mammals, the production of mature sperm relies on a complex multi-step process through the development. Important nuclar rearrangements are occuring in order to obtain these highly specialised cells. Interestingly, one of the major remodeling event occuring during sperm formation if the eviction of histones from the DNA. Histones are small basic proteins associating with the DNA and playing an important role in the expression of the genome in all cell types. However, at a late stage of spermatogenesis, the majority of those histones are evicted and replaced by small basic proteins called protamine that allow the compaction of the genome in the small head of the sperm cell. It is thought that the eviction of these histones might be important to prevent or minimise the transmission of information acquired during development or resulting from changes in the environment, thus minimising the transmission of acquired information, non carried by the DNA itself, that could be deleterious to the progeny. In the recent years, it has become clear that although the majority of histones are removed in the sperm, a small proportion, 1 to 10% in mice, are retained at specific loci and might carry information hat could affect the progeny. In the recent years, it was shown that the environment (diet, stress, toxines..)that a father is subjected to can affect the fitness of his progeny. Some of these changes seem to be transmitted without any changes in the DNA sequence suggesting that other molecules might carry the information. It is therefore very important to understand how and to what extent this acquired information is transmitted to the next generation. Since histones are able to carry information through cell division, we decided to investigate the role of the histones that are maintained in the mature sperm and whether these histones might transmit non-genetic information from one generation to the next. The study of this process has been hindered until recently, since cells going through this histone to protamine exchnage are scarce and very difficult to isolate Male gametogenesis has recently been successfully recapitulated in vitro leading to the production of embryonic stem cell (ESC)-derived SLCs (spermatid like cells) that display general hallmarks specific for in vivo-spermatids and produce viable offspring when injected into mouse oocytes 8. We propose to use this innovative in vitro system that uses ESCs that are amenable to genetic manipulation and reporter cell lines facilitating the isolation of specific precursor germ cells to unravel the regulatory network involved in histone/protamine exchange and to determine whether and how histones retained in sperm transmit epigenetic traits to the progeny.
Data: CORDIS, © European Union
Project objective
During spermatogenesis, germ cells go through important chromatin remodelling steps, the most striking being the replacement of histones by protamines, which promotes the compaction of the paternal genome in the sperm . However, a proportion of nucleosomes, ~1% in mice and ~15% in humans, are retained following protamine incorporation. It is thought that those remaining histones might play a role in the development process after fertilization possibly by transmitting epigenetic information to the progeny.Investigating the process of histone/protamine exchange has been extremely challenging because of the difficulty to isolate and manipulate germ cells at different stages of their development in vivo. Recently, an in vitro system has been established to produce mouse embryonic stem cell (ESC)-derived male haploid gametes . We propose to use this remarkable system for a comprehensive genomics approach to get an understanding of the chromatin dynamics and functionally test the requirement of candidate proteins involved in the histone/protamine exchange process. This represents a novel approach to investigate the pathways responsible for histone eviction and protamine incorporation. Furthermore, we will determine how nucleosomes are retained at specific genomic regions in mature sperm and if they are involved in the transmission of epigenetic traits to the progeny. Such innovative study relying on advanced in vitro differentiation methods together with genome and chromatin editing techniques aim to bring valuable insight regarding germ cell development and determine whether stochastic or environment-directed changes in the nucleosome profile can be epigenetically propagated to the embryo via the sperm and affect the fitness of the offspring.
Original text from CORDIS.
Participants
- FUNDACIO CENTRE DE REGULACIO GENOMICA · BarcelonaCoordinatorSpain
Links
Data: CORDIS, © European Union
