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BET inhibitors block pancreatic stellate cell collagen I production and attenuate fibrosis in vivo
Krishan Kumar, … , Kazumi Ebine, Hidayatullah G. Munshi
Krishan Kumar, … , Kazumi Ebine, Hidayatullah G. Munshi
Published February 9, 2017
Citation Information: JCI Insight. 2017;2(3):e88032. https://doi.org/10.1172/jci.insight.88032.
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Research Article Gastroenterology Oncology

BET inhibitors block pancreatic stellate cell collagen I production and attenuate fibrosis in vivo

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Abstract

The fibrotic reaction, which can account for over 70%–80% of the tumor mass, is a characteristic feature of human pancreatic ductal adenocarcinoma (PDAC) tumors. It is associated with activation and proliferation of pancreatic stellate cells (PSCs), which are key regulators of collagen I production and fibrosis in vivo. In this report, we show that members of the bromodomain and extraterminal (BET) family of proteins are expressed in primary PSCs isolated from human PDAC tumors, with BRD4 positively regulating, and BRD2 and BRD3 negatively regulating, collagen I expression in primary cancer-associated PSCs. We show that the inhibitory effect of pan-BET inhibitors on collagen I expression in primary cancer-associated PSCs is through blocking of BRD4 function. Importantly, we show that FOSL1 is repressed by BRD4 in primary cancer-associated PSCs and negatively regulates collagen I expression. While BET inhibitors do not affect viability or induce PSC apoptosis or senescence, BET inhibitors induce primary cancer-associated PSCs to become quiescent. Finally, we show that BET inhibitors attenuate stellate cell activation, fibrosis, and collagen I production in the EL-KrasG12D transgenic mouse model of pancreatic tumorigenesis. Our results demonstrate that BET inhibitors regulate fibrosis by modulating the activation and function of cancer-associated PSCs.

Authors

Krishan Kumar, Brian T. DeCant, Paul J. Grippo, Rosa F. Hwang, David J. Bentrem, Kazumi Ebine, Hidayatullah G. Munshi

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Figure 2

Knockdown of BRD4, but not BRD2 or BRD3, decreases collagen I production in primary cancer-associated PSCs and in an immortalized stellate cell line.

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Knockdown of BRD4, but not BRD2 or BRD3, decreases collagen I production...
Primary cancer-associated PSCs isolated from two different human PDAC tumors and an immortalized stellate cell line were transfected with control siRNA or with siRNAs against BRD2, BRD3, or BRD4. (A, C, and E) The effects on the individual BRD mRNAs and COL1A1 and COL1A2 mRNAs were determined by qRT-PCR (n = 3 for primary PSCs and n = 4 for the immortalized stellate cell line). *P < 0.05, **P < 0.01, ***P < 0.001. Data were analyzed by 2-tailed unpaired Student’s t test. (B, D, and F) The effects on individual BRD proteins and collagen I protein expression were determined by Western blotting. These results are representative of 3 (n = 3) independent experiments for the primary PSCs and 4 (n = 4) independent experiments for the immortalized stellate cell line. COL, collagen; PDAC, pancreatic ductal adenocarcinoma; PSCs, pancreatic stellate cells.

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