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PMID: 40767624 Published · epublish English

Identification and characterization of early human photoreceptor states and cell-state-specific retinoblastoma-related features.

eLife ·Vol. 13 ·2025-08-06

Shayler DWH, Stachelek K, Cambier L, Lee S, Bai J, Bhat B, Reid MW, Weisenberger DJ, Aparicio JG, Kim Y, Singh M, Bay M, Thornton ME, Doyle EK, Fouladian Z, Erberich SG, Grubbs BH, Bonaguidi MA, Craft CM, Singh HP, Cobrinik D

Abstract

Human cone photoreceptors differ from rods and serve as the retinoblastoma cell-of-origin, yet the developmental basis for their distinct behaviors is poorly understood. Here, we used deep full-length single-cell RNA-sequencing (scRNA-seq) to distinguish post-mitotic cone and rod developmental states and identify cone-specific features related to retinoblastomagenesis. The analyses revealed nascent, immediately post-mitotic cone and rod precursors characterized by higher THRB or NRL regulon activities, immature and maturing cone and rod precursors with concurrent cone- and rod-related gene and regulon expression, and distinct early and late cone and rod maturation states distinguished by maturation-associated declines in RAX regulon activity. Cell-state-specific gene expression features inferred from full-length scRNA-seq were consistent with past 3' scRNA-seq analyses. Beyond the cell state characterizations, full-length scRNA-seq revealed that both L/M cone and rod precursors co-expressed NRL and THRB RNAs yet differentially expressed functionally antagonistic NRL isoforms and prematurely terminated THRB transcripts. Moreover, early L/M cone precursors sequentially expressed several lncRNAs along with MYCN, which composed the seventh most L/M-cone-specific regulon, and SYK, which was implicated in the cone precursors' proliferative response to RB1 loss. These findings reveal previously unresolved photoreceptor precursor states and suggest a role for early cone-precursor-intrinsic SYK expression in retinoblastoma initiation.

Keywords
cones developmental biology full-length scRNA-seq human photoreceptor development regulons rods transcript isoforms
Article Info
Journal
eLife
Abbr.
Elife
ISSN
2050-084X
Published
2025-08-06
Language
English
Country/Region
England
NLM ID
101579614
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