Temporal neuronal differentiation programs safeguard neuronal diversity.

Shen, Dan; Chu, Jingyi; Zhou, Xiaolin; Lan, Zejun; Zhang, Rulan; Wang, Shuyu; Tang, Haoxuan; Wang, Yunrui et al. · Proc Natl Acad Sci U S A · 2026

basic_science · Level V

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Abstract

Differentiation programs actively lock neurons into a terminally differentiated state. How differentiation programs operate in distinct neuronal lineages remains obscure. Here, we found that previously well-characterized <i>Drosophila</i> neuronal differentiation factors are specifically expressed in the central brain late-born neurons but not early-born neurons, indicating the existence of a distinct, early differentiation program. We next identified T cell factor (TCF) and Odd-paired (Opa)/Zic as part of the early differentiation program that is specifically expressed in the early-born neurons to prevent neuronal dedifferentiation, partly through restricting Chinmo expression. At the molecular level, TCF promotes neuronal differentiation through a Wnt-independent noncanonical mode, via forming a transcriptional complex with Opa. Together, our study unveils that distinct differentiation programs operate in fly central brain early-born versus late-born neurons. Such customized differentiation mechanism whereby temporal differentiation programs safeguard their corresponding temporal identity specification programs is likely to also operate in mammalian brain development.

Medical subject headings