Transcriptome of Atoh7 retinal progenitor cells identifies new Atoh7-dependent regulatory genes for retinal ganglion cell formation

Zhiguang Gao, Chai An Mao, Ping Pan, Xiuqian Mu, William H. Klein

    Research output: Contribution to journalArticlepeer-review

    26 Scopus citations

    Abstract

    The bHLH transcription factor ATOH7 (Math5) is essential for establishing retinal ganglion cell (RGC) fate. However, Atoh7-expressing retinal progenitor cells (RPCs) can give rise to all retinal cell types, suggesting that other factors are involved in specifying RGCs. The basis by which a subpopulation of Atoh7-expressing RPCs commits to an RGC fate remains uncertain but is of critical importance to retinal development since RGCs are the earliest cell type to differentiate. To better understand the regulatory mechanisms leading to cell-fate specification, a binary genetic system was generated to specifically label Atoh7-expressing cells with green fluorescent protein (GFP). Fluorescence-activated cell sorting (FACS)-purified GFP+ and GFP- cells were profiled by RNA-seq. Here, we identify 1497 transcripts that were differentially expressed between the two RPC populations. Pathway analysis revealed diminished growth factor signaling in Atoh7-expressing RPCs, indicating that these cells had exited the cell cycle. In contrast, axon guidance signals were enriched, suggesting that axons of Atoh7-expressing RPCs were already making synaptic connections. Notably, many genes enriched in Atoh7-expressing RPCs encoded transcriptional regulators, and several were direct targets of ATOH7, including, and unexpectedly, Ebf3 and Eya2. We present evidence for a Pax6-Atoh7-Eya2 pathway that acts downstream of Atoh7 but upstream of differentiation factor Pou4f2. EYA2 is a protein phosphatase involved in protein-protein interactions and posttranslational regulation. These properties, along with Eya2 as an early target gene of ATOH7, suggest that EYA2 functions in RGC specification. Our results expand current knowledge of the regulatory networks operating in Atoh7-expressing RPCs and offer new directions for exploring the earliest aspects of retinogenesis.

    Original languageEnglish (US)
    Pages (from-to)1123-1140
    Number of pages18
    JournalDevelopmental Neurobiology
    Volume74
    Issue number11
    DOIs
    StatePublished - Nov 1 2014

    Keywords

    • Atoh7/Math5
    • Eyes absent homolog2
    • Gene regulatory network
    • Retinal ganglion cells
    • Retinal progenitor cells

    ASJC Scopus subject areas

    • Developmental Neuroscience
    • Cellular and Molecular Neuroscience

    MD Anderson CCSG core facilities

    • Advanced Technology Genomics Core
    • Bioinformatics Shared Resource
    • Flow Cytometry and Cellular Imaging Facility
    • Genetically Engineered Mouse Facility
    • Research Animal Support Facility

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