Search bioRxiv⌕ Search

Biology subjects

Galazo, M. J.

Publications and source records attributed to Galazo, M. J..

2 recordsLinked to original sources

Tle4 controls both developmental acquisition and postnatal maintenance of corticothalamic projection neuron identity

Identities, circuitry, and function of distinct neuron subtypes are specified during embryonic development, then maintained during postnatal maturation and potential plasticity. Mechanisms that control early acquisition of neuron subtype identities, encompassing circuitry and function, in the cerebral cortex have become increasingly understood. However, mechanisms controlling maintenance of identity, and accompanying regulation of plasticity, are largely unexplored and unknown. Here, we identify two novel functions of the co-repressor Tle4 in both acquisition and maintenance of neuron subtype identity of corticothalamic projection neurons. Embryonically, Tle4 promotes acquisition of corticothalamic molecular and cellular identity, and blocks emergence of core characteristics of subcerebral / corticospinal projection neuron identity, including morphology, gene expression, axonal connectivity, and circuitry. Postnatally, Tle4 is required to maintain corticothalamic molecular and projection identity during circuit maturation, avoiding potentially disruptive plasticity, but also limiting potentially beneficial plasticity. We identify an epigenetic mechanism by which TLE4 controls the activation state of loci regulating the level of Fezf2 expression by corticothalamic neurons during embryonic and postnatal development. This mechanism contributes importantly to distinction of cortical output (corticofugal) subtypes, and ensures appropriate maturation and maintenance of CThPN. HighlightsO_LITle4 promotes CThPN identity and blocks SCPN identity in early-born cortical neurons C_LIO_LITle4 is necessary to maintain CThPN identity during circuit maturation C_LIO_LITLE4-FEZF2 complex epigenetically regulates Fezf2 expression in developing CThPN C_LIO_LITLE4-FEZF2 regulates corticofugal subtypes distinction and maturation of CThPN C_LI

neuroscience↗

A microRNA cluster downstream of the selector gene Fezf2 coordinates fate specification with dendritic branching in cortical neurons

In the cerebral cortex, cortical projection neurons comprise classes of neurons project to distant regions of the central nervous system. These neurons develop from the same progenitor pool, but they acquire strikingly different inputs and outputs to underpin strikingly different functions. The question of how corticospinal projection neurons - involved in motor function and implicated in paralysis - and callosal projection neurons - involved in cognitive function and implicated in autism - develop represents a fundamental and clinically important question in neurodevelopment. A network of transcription factors, including the selector gene Fezf2, is central to specifying cortical projection neuron fates. Gene regulation up- and down-stream of these transcription factors, however, is not well understood, particularly as it relates to the development of the major inputs to cortical projection neurons. Here we show that the miR-193b~365 microRNA cluster downstream of Fezf2 cooperatively represses the signaling molecule Mapk8, and impacts dendritic branching of cortical projection neurons.

developmental biology↗