4.7 Article

Transcriptional control of a collagen deposition and adhesion process that promotes lung adenocarcinoma growth and metastasis

Journal

JCI INSIGHT
Volume 7, Issue 1, Pages -

Publisher

AMER SOC CLINICAL INVESTIGATION INC
DOI: 10.1172/jci.insight.153948

Keywords

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Funding

  1. NIH [R01 CA181184, R01 CA125123]
  2. Cancer Prevention Research Institute of Texas Multi-investigator Research Award [RP120713]
  3. Gloria Lupton Tennison Distinguished Professorship in Lung Cancer Research

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In lung adenocarcinoma cells, ZEB1 increases collagen secretion and facilitates tumor growth and metastasis by enhancing cell adhesion processes.
A fibrotic stroma accumulates in advanced cancers, and invasive cancer cells migrate along collagen fibers that facilitate dissemination from the primary tumor. However, the ways in which tumor cells govern these processes remain unclear. Here, we report that the epithelial-mesenchymal transition-activating transcription factor ZEB1 increased type I collagen (Col1) secretion and enhanced tumor cell adherence to Col1. Mechanistically, ZEB1 increased the levels of alpha(1)beta(1) integrin (encoded by Itga1 and Itgb1) by inhibiting PP2A activity, which reduced nuclear accumulation of HDAC4 and, thereby, derepressed Itga1 gene transcription. In parallel, ZEB1 relieved the miRNA-148a-mediated silencing of Itga1. High levels of Itga1 enhanced tumor cell adherence to Col1 and were essential for Col1-induced tumor growth and metastasis. Furthermore, ZEB1 enhanced Col1 secretion by increasing the expression of a kinesin protein that facilitated transport and secretion of Col1-containing vesicles. Our findings elucidate a transcriptional mechanism by which lung adenocarcinoma cells coordinate a collagen deposition and adhesion process that facilitates tumor progression.

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