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Timing mechanism of sexually dimorphic nervous system differentiation.


ABSTRACT: The molecular mechanisms that control the timing of sexual differentiation in the brain are poorly understood. We found that the timing of sexually dimorphic differentiation of postmitotic, sex-shared neurons in the nervous system of the Caenorhabditis elegans male is controlled by the temporally regulated miRNA let-7 and its target lin-41, a translational regulator. lin-41 acts through lin-29a, an isoform of a conserved Zn finger transcription factor, expressed in a subset of sex-shared neurons only in the male. Ectopic lin-29a is sufficient to impose male-specific features at earlier stages of development and in the opposite sex. The temporal, sexual and spatial specificity of lin-29a expression is controlled intersectionally through the lin-28/let-7/lin-41 heterochronic pathway, sex chromosome configuration and neuron-type-specific terminal selector transcription factors. Two Doublesex-like transcription factors represent additional sex- and neuron-type specific targets of LIN-41 and are regulated in a similar intersectional manner.

SUBMITTER: Pereira L 

PROVIDER: S-EPMC6312707 | biostudies-literature | 2019 Jan

REPOSITORIES: biostudies-literature

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Timing mechanism of sexually dimorphic nervous system differentiation.

Pereira Laura L   Aeschimann Florian F   Wang Chen C   Lawson Hannah H   Serrano-Saiz Esther E   Portman Douglas S DS   Großhans Helge H   Hobert Oliver O  

eLife 20190101


The molecular mechanisms that control the timing of sexual differentiation in the brain are poorly understood. We found that the timing of sexually dimorphic differentiation of postmitotic, sex-shared neurons in the nervous system of the <i>Caenorhabditis elegans</i> male is controlled by the temporally regulated miRNA <i>let-7</i> and its target <i>lin-41</i>, a translational regulator. <i>lin-41</i> acts through <i>lin-29a,</i> an isoform of a conserved Zn finger transcription factor, expresse  ...[more]

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