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Major β cell-specific functions of NKX2.2 are mediated via the NK2-specific domain.

Authors :
Abarinov V
Levine JA
Churchill AJ
Hopwood B
Deiter CS
Guney MA
Wells KL
Schrunk JM
Guo Y
Hammelman J
Gifford DK
Magnuson MA
Wichterle H
Sussel L
Source :
Genes & development [Genes Dev] 2023 Jun 01; Vol. 37 (11-12), pp. 490-504. Date of Electronic Publication: 2023 Jun 26.
Publication Year :
2023

Abstract

The consolidation of unambiguous cell fate commitment relies on the ability of transcription factors (TFs) to exert tissue-specific regulation of complex genetic networks. However, the mechanisms by which TFs establish such precise control over gene expression have remained elusive-especially in instances in which a single TF operates in two or more discrete cellular systems. In this study, we demonstrate that β cell-specific functions of NKX2.2 are driven by the highly conserved NK2-specific domain (SD). Mutation of the endogenous NKX2.2 SD prevents the developmental progression of β cell precursors into mature, insulin-expressing β cells, resulting in overt neonatal diabetes. Within the adult β cell, the SD stimulates β cell performance through the activation and repression of a subset of NKX2.2-regulated transcripts critical for β cell function. These irregularities in β cell gene expression may be mediated via SD-contingent interactions with components of chromatin remodelers and the nuclear pore complex. However, in stark contrast to these pancreatic phenotypes, the SD is entirely dispensable for the development of NKX2.2-dependent cell types within the CNS. Together, these results reveal a previously undetermined mechanism through which NKX2.2 directs disparate transcriptional programs in the pancreas versus neuroepithelium.<br /> (© 2023 Abarinov et al.; Published by Cold Spring Harbor Laboratory Press.)

Details

Language :
English
ISSN :
1549-5477
Volume :
37
Issue :
11-12
Database :
MEDLINE
Journal :
Genes & development
Publication Type :
Academic Journal
Accession number :
37364986
Full Text :
https://doi.org/10.1101/gad.350569.123