|  Help  |  About  |  Contact Us

Publication : A single transcription factor is sufficient to induce and maintain secretory cell architecture.

First Author  Lo HG Year  2017
Journal  Genes Dev Volume  31
Issue  2 Pages  154-171
PubMed ID  28174210 Mgi Jnum  J:239586
Mgi Id  MGI:5829283 Doi  10.1101/gad.285684.116
Citation  Lo HG, et al. (2017) A single transcription factor is sufficient to induce and maintain secretory cell architecture. Genes Dev 31(2):154-171
abstractText  We hypothesized that basic helix-loop-helix (bHLH) MIST1 (BHLHA15) is a "scaling factor" that universally establishes secretory morphology in cells that perform regulated secretion. Here, we show that targeted deletion of MIST1 caused dismantling of the secretory apparatus of diverse exocrine cells. Parietal cells (PCs), whose function is to pump acid into the stomach, normally lack MIST1 and do not perform regulated secretion. Forced expression of MIST1 in PCs caused them to expand their apical cytoplasm, rearrange mitochondrial/lysosome trafficking, and generate large secretory granules. Mist1 induced a cohort of genes regulated by MIST1 in multiple organs but did not affect PC function. MIST1 bound CATATG/CAGCTG E boxes in the first intron of genes that regulate autophagosome/lysosomal degradation, mitochondrial trafficking, and amino acid metabolism. Similar alterations in cell architecture and gene expression were also caused by ectopically inducing MIST1 in vivo in hepatocytes. Thus, MIST1 is a scaling factor necessary and sufficient by itself to induce and maintain secretory cell architecture. Our results indicate that, whereas mature cell types in each organ may have unique developmental origins, cells performing similar physiological functions throughout the body share similar transcription factor-mediated architectural "blueprints."
Quick Links:
 
Quick Links:
 

Expression

Publication --> Expression annotations

 

Other

15 Bio Entities

0 Expression