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Meunier, I.

Publications and source records attributed to Meunier, I..

2 recordsLinked to original sources

Dual CRALBP isoforms unveiled: iPSC-derived retinal modelling and AAV2/5-RLBP1 gene transfer raise considerations for effective therapy

Inherited retinal diseases (IRDs) are clinically and genetically heterogeneous disorders characterised by progressive vision loss. Over 270 causative genes have been identified and variants within the same gene can give rise to clinically distinct disorders. Human induced pluripotent stem cells (iPSCs) have revolutionised disease modelling, by allowing pathophysiological and therapeutic studies in the patient and tissue context. The IRD gene RLBP1 encodes CRALBP, an actor of the rod and cone visual cycles in the retinal pigment epithelium (RPE) and Muller cells, respectively. Variants in RLBP1 lead to three clinical subtypes: Bothnia dystrophy, Retinitis punctata albescens and Newfoundland rod-cone dystrophy. We modelled RLBP1-IRD subtypes by patient-specific iPSC-derived RPE and identified pertinent therapeutic read-outs. We developed an AAV2/5-mediated gene replacement strategy and provided a proof-of-concept in the ex vivo human models that was validated in an in vivo Rlbp1-/- murine model. Most importantly, we identified a previously unsuspected smaller CRALBP isoform that is naturally and differentially expressed in both human and murine retina. The new isoform arises from an alternative methionine initiation site and plays a role in the visual cycle. This work provides novel insights into CRALBP expression and RLBP1-associated pathophysiology and raises important considerations for successful gene supplementation therapy.

molecular biology↗

Neuropathy target esterase activity predicts retinopathy among PNPLA6 disorders

Biallelic pathogenic variants in the PNPLA6 gene cause a broad spectrum of disorders leading to gait disturbance, visual impairment, anterior hypopituitarism, and hair anomalies. PNPLA6 encodes Neuropathy target esterase (NTE), yet the role of NTE dysfunction on affected tissues in the large spectrum of associated disease remains unclear. We present a clinical meta-analysis of a novel cohort of 23 new patients along with 95 reported individuals with PNPLA6 variants that implicate missense variants as a driver of disease pathogenesis. Measuring esterase activity of 46 disease-associated and 20 common variants observed across PNPLA6-associated clinical diagnoses unambiguously reclassified 10 variants as likely pathogenic and 36 variants as pathogenic, establishing a robust functional assay for classifying PNPLA6 variants of unknown significance. Estimating the overall NTE activity of affected individuals revealed a striking inverse relationship between NTE activity and the presence of retinopathy and endocrinopathy. This phenomenon was recaptured in vivo in an allelic mouse series, where a similar NTE threshold for retinopathy exists. Thus, PNPLA6 disorders, previously considered allelic, are a continuous spectrum of pleiotropic phenotypes defined by an NTE genotype:activity:phenotype relationship. This relationship and the generation of a preclinical animal model pave the way for therapeutic trials, using NTE as a biomarker.

neuroscience↗