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Normal and Neoplastic Growth Suppression by the Extended Myc Network.

Authors :
Prochownik EV
Wang H
Source :
Cells [Cells] 2022 Feb 21; Vol. 11 (4). Date of Electronic Publication: 2022 Feb 21.
Publication Year :
2022

Abstract

Among the first discovered and most prominent cellular oncogenes is MYC, which encodes a bHLH-ZIP transcription factor (Myc) that both activates and suppresses numerous genes involved in proliferation, energy production, metabolism and translation. Myc belongs to a small group of bHLH-ZIP transcriptional regulators (the Myc Network) that includes its obligate heterodimerization partner Max and six "Mxd proteins" (Mxd1-4, Mnt and Mga), each of which heterodimerizes with Max and largely opposes Myc's functions. More recently, a second group of bHLH-ZIP proteins (the Mlx Network) has emerged that bears many parallels with the Myc Network. It is comprised of the Myc-like factors ChREBP and MondoA, which, in association with the Max-like member Mlx, regulate smaller and more functionally restricted repertoires of target genes, some of which are shared with Myc. Opposing ChREBP and MondoA are heterodimers comprised of Mlx and Mxd1, Mxd4 and Mnt, which also structurally and operationally link the two Networks. We discuss here the functions of these "Extended Myc Network" members, with particular emphasis on their roles in suppressing normal and neoplastic growth. These roles are complex due to the temporal- and tissue-restricted expression of Extended Myc Network proteins in normal cells, their regulation of both common and unique target genes and, in some cases, their functional redundancy.

Details

Language :
English
ISSN :
2073-4409
Volume :
11
Issue :
4
Database :
MEDLINE
Journal :
Cells
Publication Type :
Academic Journal
Accession number :
35203395
Full Text :
https://doi.org/10.3390/cells11040747