Study of the Consequences of Mutations of the RNU4ATAC and RTTN Genes by Transcriptomic, Biochemical and Cellular Approaches in Order to Determine the Pathophysiology of Their Associated Syndromes: Microcephalic Osteodysplastic Primordial Dwarfism Type I/III, Roifman Syndrome and Lowry-Wood Syndrome
试验速览
- 阶段
- 不适用
- 状态
- 招募中
- 入组人数
- 45
- 试验地点
- 6
- 主要终点
- Identification of RNU4ATAC mutations consequences at the cellular level
研究概览
简要总结
In the human genome, about 750 genes contain one intron excised by the minor spliceosome. These genes are named U12 genes, and these introns, minor or U12 introns. The minor spliceosome comprises its own set of snRNAs, among which U4atac. Its non-coding gene, RNU4ATAC, has been found mutated in Taybi-Linder (TALS), Roifman (RFMN) and Lowry-Wood syndromes (LWS). These rare developmental disorders associate ante- and post-natal growth retardation, microcephaly, skeletal dysplasia, intellectual disability, retinal dystrophy and immunodeficiency. Their physiopathological mechanisms remain unsolved: the number of U12 genes involved, their identity and function, or the cellular mechanisms impacted by the splicing defect, are still unknown.
The hypothesis of the study is that U12 genes coding for primary cilia components are particularly sensitive to minor splicing defects caused by RNU4ATAC mutations. Indeed, a child showing signs of TALS but negative for RNU4ATAC was found to carry a homozygous variant in the RTTN gene, coding for the rotatin protein located at the centrosome and the base of the primary cilia and playing a role in maintaining these structures. In addition, bi-allelic RNU4ATAC mutations were identified in five patients presenting with traits suggestive of the Joubert syndrome (JBTS), a well-characterized ciliopathy. These patients also present with traits typical of TALS/RFMN/LWS.
To better understand the causes of these pathologies, a cohort of patients with syndromes associated with bi-allele mutations of the RNU4ATAC or RTTN gene will be gathered, in order to conduct studies on the cells of these patients. Blood samples will be taken, as well as skin biopsies, if possible. These samples will be used to create induced pluripotent stem cell lines. Blood samples will also be collected from the parents of RNU4ATAC patients, to eliminate in transcriptomic analyses expression variations due to differences in genetic background. Biopsies of skin, muscle and brain tissue will be collected on foetuses carrying two-allele RNU4ATAC or RTTN mutations whose parents have had a miscarriage or have chosen to have a medical abortion. The biological samples collected will be used to study the transcription level of U12 genes, the splicing of their pre-messenger RNA, their main cellular functions, and the structural characteristics of tissues and cells.
研究设计
- 研究类型
- Interventional
- 分配方式
- Non Randomized
- 干预模型
- Single Group
- 主要目的
- Other
- 盲法
- None
入排标准
- 性别
- All
- 接受健康志愿者
- 是
入选标准
- •TALS, RFMN, LWS or other pathology patients
- •Woman or man
- •Presence of bi-allelic mutations of RNU4ATAC or RTTN
- •Written consent of parents or legal guardian(s)
- •Affiliation to a Social Security scheme
- •Healthy participants (Parent of the patient)
- •Woman or man
- •Presence of mono-allelic mutations of RNU4ATAC
- •Written consent of the participant
- •Affiliation to a Social Security scheme
- •Parents having recourse to a medical termination of pregnancy or having had a spontaneous miscarriage (for fetus samples)
- •Woman or man
- •Presence of bi-allelic mutations of RNU4ATAC or RTTN in the fetus
- •Written parental consent
- •Affiliation to a Social Security scheme
排除标准
- •Subject participating in another research including an exclusion period still in progress.
研究组 & 干预措施
RNU4ATAC patient
Patient with bi-allelic mutation of the RNU4ATAC gene
干预措施: Blood samples (Other)
RNU4ATAC patient
Patient with bi-allelic mutation of the RNU4ATAC gene
干预措施: Skin biopsies (Other)
RNU4ATAC fetus
Fetus with bi-allelic mutation of the RNU4ATAC gene
干预措施: Fetal samples (Other)
RNU4ATAC parent
Parent of patient or fetus with bi-allelic mutation of the RNU4ATAC gene and who present themselve mono-allelic mutation of the RNU4ATAC gene
干预措施: Blood samples (Other)
RTTN patient
Patient with bi-allelic mutation of the RTTN gene
干预措施: Blood samples (Other)
RTTN patient
Patient with bi-allelic mutation of the RTTN gene
干预措施: Skin biopsies (Other)
RTTN fetus
Fetus with bi-allelic mutation of the RTTN gene
干预措施: Fetal samples (Other)
结局指标
主要结局
Identification of RNU4ATAC mutations consequences at the cellular level
时间窗: 5 years
The dysfunctions present in the different cell types obtained from RNU4ATAC patients will be identified by comparison with the controls, and will be compared with those present in RTTN patients. Consequences in cells of patients of RNU4ATAC mutations on the length and the structure of the primary cilium, as measured by fluorescence microscopy, and on the formation of small nuclear ribonucleoprotein (snRNPs) particles, as measured by glycerol gradient sedimentation analysis
次要结局
- Minor splicing anomalies(5 years)
- Understanding of neuronal differentiation anomalies(5 years)
