Literature DB >> 29665106

Conditional deletion of Neurog1 in the cerebellum of postnatal mice delays inhibitory interneuron maturation.

Edwin A Obana1, Qiong Zhou2, Orion Furmanski2, Martin L Doughty1,2.   

Abstract

The transcriptional programs that drive the generation of diverse GABAergic neuron populations from their common progenitor pools in the developing cerebellum remain unclear. Neurog1 is a pro-neural basic helix-loop-helix transcription factor expressed in GABAergic progenitor cells in the ventricular zone (VZ) of embryos and subsequently in the presumptive white matter (pWM) tracts of developing postnatal mice. Genetic inducible fate-mapping labels Purkinje cells and all inhibitory interneuron cell types of the cerebellar cortex. As conventional Neurog1Neo knockout (KO) mice are neonatal lethal, we generated Neurog1loxP mutant mice to examine the effects of conditional Neurog1 deletion on the postnatal development of the cerebellum. Targeted Neurog1 loss-of-function in the developing cerebellum does not result in significant differences in cerebellar morphology or in the number of GABAergic neurons in the cerebellar cortex of mice at postnatal day 21 (P21). To determine the effects of Neurog1 deletion on GABAergic progenitors, we quantified rates of cell proliferation and cell cycle progression or re-entry in embryonic Neurog1Neo and postnatal Neurog1loxP mutants. The data revealed no significant effect of Neurog1 loss-of-function on embryonic day 12.5 (E12.5) VZ progenitors or on P5 and P6 progenitors in the pWM at P7. However, 4-5 day pulse-labeling of P5 and P6 progenitors revealed reductions in inhibitory interneuron dispersal from the pWM to the cerebellar cortex in P10 conditional Neurog1loxP/loxP KO mice. Thus, our conditional Neurog1 KO approach reveals a requirement for Neurog1 activity in inhibitory interneuron cell dispersal from pWM tracts in the developing cerebellum of postnatal mice.
© 2018 Wiley Periodicals, Inc.

Entities:  

Keywords:  Cre recombinase; Purkinje cell; inhibitory interneuron; pro-neural basic helix-loop-helix transcription factor; ventricular zone

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Year:  2018        PMID: 29665106     DOI: 10.1002/jnr.24247

Source DB:  PubMed          Journal:  J Neurosci Res        ISSN: 0360-4012            Impact factor:   4.164


  3 in total

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Journal:  Cells       Date:  2022-05-25       Impact factor: 7.666

2.  Transcriptome clarifies mechanisms of lesion genesis versus progression in models of Ccm3 cerebral cavernous malformations.

Authors:  Janne Koskimäki; Dongdong Zhang; Yan Li; Laleh Saadat; Thomas Moore; Rhonda Lightle; Sean P Polster; Julián Carrión-Penagos; Seán B Lyne; Hussein A Zeineddine; Changbin Shi; Robert Shenkar; Sharbel Romanos; Kenneth Avner; Abhinav Srinath; Le Shen; Matthew R Detter; Daniel Snellings; Ying Cao; Miguel A Lopez-Ramirez; Gregory Fonseca; Alan T Tang; Pieter Faber; Jorge Andrade; Mark Ginsberg; Mark L Kahn; Douglas A Marchuk; Romuald Girard; Issam A Awad
Journal:  Acta Neuropathol Commun       Date:  2019-08-19       Impact factor: 7.801

3.  Neurosensory development of the four brainstem-projecting sensory systems and their integration in the telencephalon.

Authors:  Bernd Fritzsch; Karen L Elliott; Ebenezer N Yamoah
Journal:  Front Neural Circuits       Date:  2022-09-23       Impact factor: 3.342

  3 in total

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