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Biology subjects

Obolensky, A.

Publications and source records attributed to Obolensky, A..

2 recordsLinked to original sources

Single anticodon-edited tRNA therapy targeting highly prevalent Arg>Ter premature termination codons causing inherited retinal diseases

Nonsense variants cause 18% of inherited retinal diseases (IRDs), yet current therapies require variant-specific development, leaving most patients untreated. Here, we combined a large-scale genetic analysis literature survey of >37,500 IRD patients with anticodon-edited (ACE)-tRNA engineering to create a single, gene-agnostic therapy targeting Arg>Ter nonsense variants which are the most prevalent subclass (35%) of premature stop codons (PTCs). We developed an optimized ACE-tRNA (V3) that achieved up to 86% readthrough across 13 clinically relevant variants, restored native PRCD localization in the arRP-causing p.R22* mutant, and demonstrated activity in photoreceptor-like cells. To enable translation, we established an AAV2/7m8 production platform (1*10{superscript 1}{superscript 2}-1*10{superscript 1}3 GC/mL) and defined 1*10 GC/eye as the safe dose in mice. This patient genetics-guided strategy positions ACE-tRNA_V3 as a promising candidate for preclinical development, offering a precision medicine approach that targets the most common nonsense variant class with a single therapeutic molecule.

genetics↗

Smarcc1 is essential for the patterning of the optic stalk and differentiation of the optic nerve head astrocytes

The optic nerve is essential for vision, and its development depends on the transient neuroectodermal optic stalk, which forms alongside the optic cup through coordinated morphogenesis and differentiation into optic nerve astrocytes that provide lifelong support for retinal ganglion cell (RGC) axons. Here, we delineate key steps in astrocyte formation from the optic stalk and uncover stage- and lineage-specific roles of Smarcc1 (Baf155) and Smarcc2 (Baf170), scaffolding subunits of SWI/SNF chromatin remodeling complexes. Both factors are co-expressed in early retinal pigment epithelium (RPE) and optic stalk progenitors, with Smarcc2 persisting in differentiated derivatives, including RPE and optic nerve astrocytes. Conditional deletion using Dct-Cre revealed reciprocal compensation in pigmented lineages, whereas Smarcc1 loss uniquely caused optic nerve head (ONH) morphogenetic failure, characterized by glial lamina collapse, RGC degeneration, and progressive visual decline. Spatial transcriptomics and functional assays demonstrate that Smarcc1 drives the transition of dorsal optic stalk progenitors from a pigmented, RPE-like state to astrocyte progenitors by repressing pigment gene programs and enabling Pax2/Sox2 activity. After specification, Smarcc1 is required for glial lamina assembly, essential for ONH integrity and RGC survival. These findings establish a mechanism in which Smarcc1-mediated chromatin remodeling couples astrocyte progenitor specification and differentiation with local morphogenesis, ensuring long-term retinal function.

developmental biology↗