PRPF31 gene codes for a ubiquitously expressed splicing factor but mutations affect exclusively the retina, producing the progressive death of photoreceptor cells. We have identified a novel PRPF31 mutation in a patient with autosomal dominant retinitis pigmentosa. A blood sample was obtained and mononuclear cells were reprogrammed using the non-integrative Sendai virus to generate the cell line CABi001-A. The iPSC line has been characterized for pluripotency and differentiation capacity and will be differentiated toward photoreceptors and retinal pigment epithelium cells to study the molecular mechanism of the disease and test possible therapeutic strategies
Notre projet consiste à modéliser une forme spécifique de rétinite pigmentaire (RP) en utilisant des...
International audienceA human iPSC line was generated from fibroblasts of a patient affected with au...
International audienceWe generated an induced pluripotent stem cell (iPSC) line from a patient with ...
PRPF31 gene codes for a ubiquitously expressed splicing factor but mutations affect exclusively the ...
We report the generation of the human iPSC line LEIi008-A from a patient with retinitis pigmentosa-1...
International audienceMutations in the ubiquitously expressed pre-mRNA processing factor (PRPF) 31 g...
Pre-mRNA processing factors (PRPFs) are vital components of the spliceosome and are involved in the ...
Retinitis pigmentosa (RP) refers to a clinical and genetic heterogeneous group of inherited retinal ...
Retinitis pigmentosa is the leading cause of inherited blindness, affecting 1 in 3,000 individuals t...
PURPOSE: To provide a mechanistic link between mutations in PRPF31, and essential and ubiquitously e...
PURPOSE. Pre-mRNA processing factor 31 (PRPF31) is a ubiquitous protein needed for the assembly of t...
Retinitis pigmentosa (RP) is an inherited retinal degenerative disease. Mutations in EYS have been a...
Retinitis pigmentosa (RP) is an inherited retinal degenerative disease. Mutations in EYS have been a...
This study investigates the functional consequences of two mutations, A194E and A216P, in the splici...
Generation of retinal cells from human iPS cells offers the opportunity to study the effects of spec...
Notre projet consiste à modéliser une forme spécifique de rétinite pigmentaire (RP) en utilisant des...
International audienceA human iPSC line was generated from fibroblasts of a patient affected with au...
International audienceWe generated an induced pluripotent stem cell (iPSC) line from a patient with ...
PRPF31 gene codes for a ubiquitously expressed splicing factor but mutations affect exclusively the ...
We report the generation of the human iPSC line LEIi008-A from a patient with retinitis pigmentosa-1...
International audienceMutations in the ubiquitously expressed pre-mRNA processing factor (PRPF) 31 g...
Pre-mRNA processing factors (PRPFs) are vital components of the spliceosome and are involved in the ...
Retinitis pigmentosa (RP) refers to a clinical and genetic heterogeneous group of inherited retinal ...
Retinitis pigmentosa is the leading cause of inherited blindness, affecting 1 in 3,000 individuals t...
PURPOSE: To provide a mechanistic link between mutations in PRPF31, and essential and ubiquitously e...
PURPOSE. Pre-mRNA processing factor 31 (PRPF31) is a ubiquitous protein needed for the assembly of t...
Retinitis pigmentosa (RP) is an inherited retinal degenerative disease. Mutations in EYS have been a...
Retinitis pigmentosa (RP) is an inherited retinal degenerative disease. Mutations in EYS have been a...
This study investigates the functional consequences of two mutations, A194E and A216P, in the splici...
Generation of retinal cells from human iPS cells offers the opportunity to study the effects of spec...
Notre projet consiste à modéliser une forme spécifique de rétinite pigmentaire (RP) en utilisant des...
International audienceA human iPSC line was generated from fibroblasts of a patient affected with au...
International audienceWe generated an induced pluripotent stem cell (iPSC) line from a patient with ...