Literature DB >> 25245619

Exogenous Sonic hedgehog modulates the pool of GABAergic interneurons during cerebellar development.

A De Luca1, E Parmigiani, G Tosatto, S Martire, M Hoshino, A Buffo, K Leto, F Rossi.   

Abstract

All cerebellar GABAergic interneurons were derived from a common pool of precursor cells residing in the embryonic ventricular zone (VZ) and migrating in the prospective white matter (PWM) after birth, where both intrinsic and extrinsic factors contribute to regulate their amplification. Among the environmental factors, we focused on Sonic hedgehog (Shh), a morphogen well known to regulate neural progenitor cell proliferation. We asked if and how exogenous Shh treatment affects the lineage of cerebellar GABAergic interneurons. To address these issues, exogenous Shh was administered to embryonic and postnatal organotypic slices. We found that Shh is able to expand the pool of interneuron progenitors residing in the embryonic epithelium and in the postnatal PWM. In particular, Shh signalling pathway was highly mitogenic at early developmental stages of interneuron production, whereas its effect decreased after the first postnatal week. Gene expression analysis of sorted cells and in situ hybridization further showed that immature interneurons express both the Shh receptor patched and the Shh target gene Gli1. Thus, within the interneuron lineage, Shh might exert regulatory functions also in postmitotic cells. On the whole, our data enlighten the role of Shh during cerebellar maturation and further broaden our knowledge on the amplification mechanisms of the interneuron progenitor pool.

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Year:  2015        PMID: 25245619     DOI: 10.1007/s12311-014-0596-x

Source DB:  PubMed          Journal:  Cerebellum        ISSN: 1473-4222            Impact factor:   3.847


  49 in total

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Journal:  J Neurosci       Date:  2006-09-06       Impact factor: 6.167

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9.  Specification of spatial identities of cerebellar neuron progenitors by ptf1a and atoh1 for proper production of GABAergic and glutamatergic neurons.

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10.  Patched acts catalytically to suppress the activity of Smoothened.

Authors:  J Taipale; M K Cooper; T Maiti; P A Beachy
Journal:  Nature       Date:  2002-08-22       Impact factor: 49.962

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  10 in total

Review 1.  Sonic hedgehog patterning during cerebellar development.

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Review 3.  What cerebellar malformations tell us about cerebellar development.

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4.  Neonatal Hyperoxia Perturbs Neuronal Development in the Cerebellum.

Authors:  Till Scheuer; Yuliya Sharkovska; Victor Tarabykin; Katharina Marggraf; Vivien Brockmöller; Christoph Bührer; Stefanie Endesfelder; Thomas Schmitz
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Review 5.  Embryology.

Authors:  Parthiv Haldipur; Derek Dang; Kathleen J Millen
Journal:  Handb Clin Neurol       Date:  2018

6.  Cerebellar nuclei excitatory neurons regulate developmental scaling of presynaptic Purkinje cell number and organ growth.

Authors:  Ryan T Willett; N Sumru Bayin; Andrew S Lee; Anjana Krishnamurthy; Alexandre Wojcinski; Zhimin Lao; Daniel Stephen; Alberto Rosello-Diez; Katherine L Dauber-Decker; Grant D Orvis; Zhuhao Wu; Marc Tessier-Lavigne; Alexandra L Joyner
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7.  Dendrosomatic Sonic Hedgehog Signaling in Hippocampal Neurons Regulates Axon Elongation.

Authors:  Pamela J Yao; Ronald S Petralia; Carolyn Ott; Ya-Xian Wang; Jennifer Lippincott-Schwartz; Mark P Mattson
Journal:  J Neurosci       Date:  2015-12-09       Impact factor: 6.167

Review 8.  Consensus Paper: Cerebellar Development.

Authors:  Ketty Leto; Marife Arancillo; Esther B E Becker; Annalisa Buffo; Chin Chiang; Baojin Ding; William B Dobyns; Isabelle Dusart; Parthiv Haldipur; Mary E Hatten; Mikio Hoshino; Alexandra L Joyner; Masanobu Kano; Daniel L Kilpatrick; Noriyuki Koibuchi; Silvia Marino; Salvador Martinez; Kathleen J Millen; Thomas O Millner; Takaki Miyata; Elena Parmigiani; Karl Schilling; Gabriella Sekerková; Roy V Sillitoe; Constantino Sotelo; Naofumi Uesaka; Annika Wefers; Richard J T Wingate; Richard Hawkes
Journal:  Cerebellum       Date:  2016-12       Impact factor: 3.847

9.  Cerebellar granule cell replenishment postinjury by adaptive reprogramming of Nestin+ progenitors.

Authors:  Alexandre Wojcinski; Andrew K Lawton; N Sumru Bayin; Zhimin Lao; Daniel N Stephen; Alexandra L Joyner
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10.  Genetic deletion of genes in the cerebellar rhombic lip lineage can stimulate compensation through adaptive reprogramming of ventricular zone-derived progenitors.

Authors:  Alexandre Wojcinski; Morgane Morabito; Andrew K Lawton; Daniel N Stephen; Alexandra L Joyner
Journal:  Neural Dev       Date:  2019-02-14       Impact factor: 3.842

  10 in total

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