Diagnosis of RSTS: Identification of the Acetylation Profiles as Epigenetic Markers for Assessing Causality of CREBBP and EP300 Variants.
NCT ID: NCT04122742
Last Updated: 2024-01-17
Study Results
The study team has not published outcome measurements, participant flow, or safety data for this trial yet. Check back later for updates.
Basic Information
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RECRUITING
154 participants
OBSERVATIONAL
2019-10-08
2025-10-31
Brief Summary
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The aim of this pilot study is to characterize the histone acetylation profiles in order to identify specific acetylation markers during normal and pathological neuronal differentiation of cortical and pyramidal neurons in RSTS.
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Detailed Description
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RSTS is considered a genetic model of neurodevelopmental anomaly with an epigenetic component.
Histone acetylation is one of the major post-translational modifications (PTMs) of these proteins that provide for the formation and control of chromatin structure. When differentiating embryonic cells, this modification plays a key role in transcriptional activation.
The mouse models of RSTS have made the link between the modulation of histone acetylation and the formation of memory by showing their key role in neuronal plasticity. However no data exists on the acetylation of histones in the neurons of RSTS patients. Furthermore, in humans, the molecular pathways impacted by these alterations during neurodevelopment are not specified, especially in the pyramidal neurons which are the precursors of hippocampal neurons involved in the encoding and storage of memory.
In RSTS a loss of CBP function results in a deficit in KAT activity, which is responsible for altering histone acetylation, leading to inappropriate changes in chromatin structure. The consequence of a mutation is a result of a deregulation of the activity of genes involved in development. No neuronal level studies are currently available on the functional link between histone acetylation and deregulated genes in the RSTS.
In this project, investigators will identify target genes whose epigenetic regulation is mediated by histone acetylation. More specifically, the study will focus on chromatin dynamics during normal and pathological neuronal differentiation of cortical and pyramidal neurons. Investigators will determine among the CBP-dependent histone markers, those that are modified in RSTS patients cells and the loci they control. In parallel, investigators will define genes whose neuronal expression is altered in RSTS patients.
The integration of all these data will allow us to specify which genes are deregulated during neuronal differentiation as a consequence of CBP lysine acetyltransferase function loss.
Conditions
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Study Design
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CASE_ONLY
PROSPECTIVE
Study Groups
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Patients with RSTS
skin biopsy for the primary fibroblast culture and a 15 ml blood sample (3 unnamed samples of 5ml) in each of the 4 SRT patients included.
Performed with a 3 mm diameter punch under local anesthesia. The procedure can be done in a consultation office respecting a strict asepsis.
Generation of Induced Pluripotent Stem Cells (iPSC) from fibroblasts obtained by skin biopsy
induced Pluripotent Stem Cells (iPSC) production of patients with CREBBP mutation and differentiation into cortical neurons and pyramidal neurons
Histone acetylation profiles of cells of SRT patients with CREBBP mutations
Study of acetylome by liquid chromatography coupled with tandem mass spectrometry (LC-MS / MS) Validation of specific acetylation targets by ChIP-Sequencing
Functional involvement of identified epigenetic alterations
Transcriptome analysis with RNA-Seq Generation of isogenic iPSC clones by correction of CREBBP mutations in SRT patients by CrispR-Cas9.
Culture of lymphoblastoid line from blood sample
Achievement of a ficoll Culture of lymphoblasts and conservation Establishment of lymphoblastoid line and conservation
Interventions
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skin biopsy for the primary fibroblast culture and a 15 ml blood sample (3 unnamed samples of 5ml) in each of the 4 SRT patients included.
Performed with a 3 mm diameter punch under local anesthesia. The procedure can be done in a consultation office respecting a strict asepsis.
Generation of Induced Pluripotent Stem Cells (iPSC) from fibroblasts obtained by skin biopsy
induced Pluripotent Stem Cells (iPSC) production of patients with CREBBP mutation and differentiation into cortical neurons and pyramidal neurons
Histone acetylation profiles of cells of SRT patients with CREBBP mutations
Study of acetylome by liquid chromatography coupled with tandem mass spectrometry (LC-MS / MS) Validation of specific acetylation targets by ChIP-Sequencing
Functional involvement of identified epigenetic alterations
Transcriptome analysis with RNA-Seq Generation of isogenic iPSC clones by correction of CREBBP mutations in SRT patients by CrispR-Cas9.
Culture of lymphoblastoid line from blood sample
Achievement of a ficoll Culture of lymphoblasts and conservation Establishment of lymphoblastoid line and conservation
Eligibility Criteria
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Inclusion Criteria
* Patients carrying the CREBBP or EP300 variants
* Patients older than 2 years
* Affiliated patients or beneficiaries of a social security scheme.
* Free, informed and signed consent by the parents or holder of parental authority for minor patients
* Free, informed and signed consent by the patient representative for the major patients under guardianship
* Free, informed and signed consent by the patient for major patients
Exclusion Criteria
* a history of allergy to any product or device that may be used before, during, and after the biopsy;
* cutaneous disease of the areas where the biopsy is to be performed
* underwent physical treatment (radiotherapy, ...) on the area to be biopsied, during the last 6 months
* hereditary or acquired disorders of hemostasis
Patients under treatment:
* likely to act on the haemostasis (anticoagulants, platelet antiaggregants, ...) in the month preceding the inclusion and during the study
* by histone deacetylase inhibitor (sodium valproate) likely to interfere with the interpretation of the results.
2 Years
ALL
No
Sponsors
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University Hospital, Bordeaux
OTHER
Responsible Party
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Locations
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Centre Hospitalier Universitaire de Bordeaux
Talence, , France
Countries
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Central Contacts
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Facility Contacts
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Other Identifiers
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CHUBX 2019/19
Identifier Type: -
Identifier Source: org_study_id
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