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1.
Genet Med ; 26(6): 101081, 2024 06.
Artículo en Inglés | MEDLINE | ID: mdl-38293907

RESUMEN

PURPOSE: Progressive inherited retinal degenerations (IRDs) affecting rods and cones are clinically and genetically heterogeneous and can lead to blindness with limited therapeutic options. The major gene defects have been identified in subjects of European and Asian descent with only few reports of North African descent. METHODS: Genome, targeted next-generation, and Sanger sequencing was applied to cohort of ∼4000 IRDs cases. Expression analyses were performed including Chip-seq database analyses, on human-derived retinal organoids (ROs), retinal pigment epithelium cells, and zebrafish. Variants' pathogenicity was accessed using 3D-modeling and/or ROs. RESULTS: Here, we identified a novel gene defect with three distinct pathogenic variants in UBAP1L in 4 independent autosomal recessive IRD cases from Tunisia. UBAP1L is expressed in the retinal pigment epithelium and retina, specifically in rods and cones, in line with the phenotype. It encodes Ubiquitin-associated protein 1-like, containing a solenoid of overlapping ubiquitin-associated domain, predicted to interact with ubiquitin. In silico and in vitro studies, including 3D-modeling and ROs revealed that the solenoid of overlapping ubiquitin-associated domain is truncated and thus ubiquitin binding most likely abolished secondary to all variants identified herein. CONCLUSION: Biallelic UBAP1L variants are a novel cause of IRDs, most likely enriched in the North African population.


Asunto(s)
Distrofias de Conos y Bastones , Linaje , Pez Cebra , Humanos , Distrofias de Conos y Bastones/genética , Distrofias de Conos y Bastones/patología , Masculino , Femenino , Pez Cebra/genética , Animales , Genes Recesivos , Epitelio Pigmentado de la Retina/metabolismo , Epitelio Pigmentado de la Retina/patología , Mutación/genética , Células Fotorreceptoras Retinianas Conos/patología , Células Fotorreceptoras Retinianas Conos/metabolismo , Retina/patología , Retina/metabolismo , Adulto , Túnez , Retinitis Pigmentosa/genética , Retinitis Pigmentosa/patología , Fenotipo , Células Fotorreceptoras Retinianas Bastones/metabolismo , Células Fotorreceptoras Retinianas Bastones/patología
2.
Metab Brain Dis ; 36(6): 1253-1258, 2021 08.
Artículo en Inglés | MEDLINE | ID: mdl-33721183

RESUMEN

The brain 3ß-hydroxysteroid dehydrogenase (3ß-HSD), is the enzyme that catalyzes the biosynthesis of a neuroprotective factor, progesterone. The regulation of 3ß-HSD in response to stress exposure in the cuprizone-induced model of Multiple Sclerosis was investigated and the reaction related to the demyelination extremity. 32 female Wistar rats divided into four groups (i.e., control group (Cont), non-stress cuprizone treated (N-CPZ), physical stress- cuprizone treated (P-CPZ) and emotional stress- cuprizone treated (E-CPZ). A witness foot-shock model used to induce background stress for 5 days. An elevated-plus maze applied to validate the stress induction. Followed by 6 weeks of cuprizone treatment, the Y-maze test performed to confirm brain demyelination. 3ß-HSD gene expression as an indicator of progesterone synthesis examined. At the behavioral level, both stressed groups reflected more impaired spatial memory compared to the N-CPZ group (p < 0.01), with more severe results in the E-CPZ group (p < 0.01). The results of mRNA expression of 3ß-HSD illustrated significant elevation in all cuprizone treated groups (p < 0.001) with a higher up-regulation (p < 0.001) in the E-CPZ group. Background stress -particularly emotional type- exacerbates the demyelination caused by cuprizone treatment. The brain up-regulates the 3ß-HSD gene expression as a protective response relative to the myelin degradation extent.


Asunto(s)
3-Hidroxiesteroide Deshidrogenasas/genética , Modelos Animales de Enfermedad , Esclerosis Múltiple/enzimología , Distrés Psicológico , 3-Hidroxiesteroide Deshidrogenasas/biosíntesis , Animales , Ansiedad/patología , Ansiedad/psicología , Cuprizona , Enfermedades Desmielinizantes/patología , Electrochoque , Femenino , Aprendizaje por Laberinto , Esclerosis Múltiple/genética , Esclerosis Múltiple/patología , Neuroprotección , Desempeño Psicomotor/efectos de los fármacos , ARN Mensajero/biosíntesis , ARN Mensajero/genética , Ratas , Ratas Wistar , Regulación hacia Arriba
3.
Eur J Hum Genet ; 28(4): 491-498, 2020 04.
Artículo en Inglés | MEDLINE | ID: mdl-31654038

RESUMEN

PRPF31 is ubiquitously expressed splicing factor and has an essential role in the pre-mRNA splicing in all tissues. However, it is not clear how reduced expression of this general splicing factor leads to retinal restricted disease, retinitis pigmentosa (RP). In this study, we used RNA interference and RNA-sequencing to mimic the PRPF31 haploinsufficiency in human organotypic retinal cultures (HORCs). We examined the effects of PRPF31 deficiency on splicing by analyzing the differential exon usages (DEUs) and intron retentions of the retinal transcriptome. Our results revealed that the PRPF31 deficiency causes mis-splicing of genes involved in RNA processing (PRPF3, PRPF8, PRPF4, and PRPF19) and phototransduction (RHO, ROM1, FSCN2, GNAT2, and GNAT1) in the retina in the PRPF31 reduced samples. Mis-splicing of genes implicated in phototransduction was associated with photoreceptor degeneration observed in RP patients. Our data revealed that PRPF31 deficiency leads to the mis-splicing of a distinct subset of pre-mRNAs with a widespread effect on phototransduction and RNA processing.


Asunto(s)
Proteínas del Ojo/genética , Empalme del ARN , Retina/metabolismo , Retinitis Pigmentosa/genética , Proteínas Portadoras/genética , Proteínas Portadoras/metabolismo , Células Cultivadas , Proteínas del Ojo/metabolismo , Humanos , Proteínas de Microfilamentos/genética , Proteínas de Microfilamentos/metabolismo , Mutación , Retina/citología , Ribonucleoproteínas/genética , Ribonucleoproteínas/metabolismo , Tetraspaninas/genética , Tetraspaninas/metabolismo , Transducina/genética , Transducina/metabolismo
4.
J Cell Biochem ; 119(8): 6775-6783, 2018 08.
Artículo en Inglés | MEDLINE | ID: mdl-29744916

RESUMEN

The splicing factor PRPF31 is the most commonly mutated general splicing factor in the retinitis pigmentosa. We used a rapid, convenient and cost effective transfection method with an efficient PRPF31 knockdown in HORFC in order to study the effect of PRPF31 downregulation on retinal gene expressions in an ex vivo model. Modified calcium phosphate method was used to transfect HORFC by PRPF31 siRNA. Different times and doses of siRNA for transfection were assayed and optimum condition was obtained. PRPF31 mRNA and protein downregulation were assessed by qRTPCR and Western blot. The tissue viability of HORFC was measured using the MTT. ImageJ analysis on stained retinal sections by immunohistochemistry was used for thickness measurement of outer nuclear photoreceptor layer. The PRPF31 gene downregulation effects on retinal specific gene expression were analyzed by qRTPCR. A total of 50 nM of PRPF31 siRNA transfection after 63 h in HORFC, showed the optimum reduction in the level of PRPF31 mRNA and protein as shown by qRTPCR and Western blot (over 90% and 50% respectively). The PRPF31 mRNA silencing with calcium phosphate had no effect on cell viability in the period of the experiment. Thickness measurement of outer nuclear photoreceptor layer with IHC showed the significant reduction after 63 h of study (P value = 0.02). siRNA induced PRPF31 knockdown, led to reduction of retinal specific mRNA gene expression involved in phototransduction (RHO, GNAT1, RP1), photoreceptor structure (ROM1, FSCN2, CA4, SEMA4) and transcription factor (CRX) (fold change >5), after 63 h.


Asunto(s)
Modelos Biológicos , Retina/metabolismo , Retina/patología , Retinitis Pigmentosa/genética , Retinitis Pigmentosa/metabolismo , Retinitis Pigmentosa/patología , Adulto , Regulación hacia Abajo , Proteínas del Ojo/biosíntesis , Proteínas del Ojo/genética , Femenino , Técnicas de Silenciamiento del Gen , Humanos , Masculino , ARN Mensajero/genética , ARN Mensajero/metabolismo , ARN Interferente Pequeño/biosíntesis , ARN Interferente Pequeño/genética , Técnicas de Cultivo de Tejidos , Transfección
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