Literature DB >> 27221609

Lamin A/C Is Required for ChAT-Dependent Neuroblastoma Differentiation.

Loredana Guglielmi1, Marta Nardella1, Carla Musa1, Ilaria Iannetti1, Ivan Arisi2, Mara D'Onofrio2, Andrea Storti2, Alessandra Valentini3, Emanuele Cacci4, Stefano Biagioni4, Gabriella Augusti-Tocco4, Igea D'Agnano5, Armando Felsani6.   

Abstract

The mouse neuroblastoma N18TG2 clone is unable to differentiate and is defective for the enzymes of the biosynthesis of neurotransmitters. The forced expression of choline acetyltransferase (ChAT) in these cells results in the synthesis and release of acetylcholine (Ach) and hence in the expression of neurospecific features and markers. To understand how the expression of ChAT triggered neuronal differentiation, we studied the differences in genome-wide transcription profiles between the N18TG2 parental cells and its ChAT-expressing 2/4 derived clone. The engagement of the 2/4 cells in the neuronal developmental program was confirmed by the increase of the expression level of several differentiation-related genes and by the reduction of the amount of transcripts of cell cycle genes. At the same time, we observed a massive reorganization of cytoskeletal proteins in terms of gene expression, with the accumulation of the nucleoskeletal lamina component Lamin A/C in differentiating cells. The increase of the Lmna transcripts induced by ChAT expression in 2/4 cells was mimicked treating the parental N18TG2 cells with the acetylcholine receptor agonist carbachol, thus demonstrating the direct role played by this receptor in neuron nuclei maturation. Conversely, a treatment of 2/4 cells with the muscarinic receptor antagonist atropine resulted in the reduction of the amount of Lmna RNA. Finally, the hypothesis that Lmna gene product might play a crucial role in the ChAT-dependent molecular differentiation cascade was strongly supported by Lmna knockdown in 2/4 cells leading to the downregulation of genes involved in differentiation and cytoskeleton formation and to the upregulation of genes known to regulate self-renewal and stemness.

Entities:  

Keywords:  Choline acetyltransferase; Differentiation; Gene expression; LMNA; Neuroblastoma

Mesh:

Substances:

Year:  2016        PMID: 27221609     DOI: 10.1007/s12035-016-9902-6

Source DB:  PubMed          Journal:  Mol Neurobiol        ISSN: 0893-7648            Impact factor:   5.590


  67 in total

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