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TGFbeta regulation of mitogen-activated protein kinases in human breast cancer cells
1Department of Pharmacology, Pennsylvania State University College of Medicine, Hershey 17033, USA.
Abstract:
We demonstrate herein the ability of transforming growth factor-beta-2 (TGFbeta2) to potently activate extracellular signal-regulated kinase 2 (ERK2) in the highly TGFbeta-sensitive breast cancer cell (BCC) line Hs578T. The ERK2 isoform was activated by 3-fold within 5 min of TGFbeta2 addition to Hs578T cells. However, TGFbeta2 only slightly activated ERK2 (1.5-fold) in the partially TGFbeta-responsive BCC line MDA-MB-23 1. The magnitude of the difference in activation of ERK2 by TGFbeta2 in the two cell lines paralleled the difference in the IC50 values for TGFbeta inhibition of DNA synthesis; the IC50 value in the MDA-MB-231 cells was 32-fold greater than that in the Hs578T cells. Further, our data demonstrate that TGFbeta2 activated the stress-activated protein kinase/Jun N-terminal kinase (SAPK/JNK) type of mitogen-activated protein kinases (MAPKs); maximal induction levels were 2.5-fold above basal values and were attained at 30 min after TGFbeta2 treatment. Transient co-transfection of a luciferase reporter construct (3TP-Lux) containing three AP-1 sites and the plasminogen activator inhibitor-1 (PAI-1) promoter, in conjunction with a construct that directs expression of a dominant-negative mutant ERK2 (TAYF) protein, did not block the ability of TGFbeta to induce AP-1 or PAI-1 activity. In contrast, TAYF ERK2 was able to block EGF and insulin-induced 3TP-Lux-reporter activity. These results indicate that in these BCCs, the activation of ERK2 by TGFbeta is more tightly linked to the ability of TGFbeta to inhibit DNA synthesis than to the ability to stimulate promoter regions important for TGFbeta production and control of the extracellular matrix. In addition, this is the first demonstration that TGFbeta can activate the SAPK/JNK type of MAPK in TGFbeta-sensitive human BCCs.
Insights
Transforming growth factor-beta-2 (TGFbeta2) potently activates ERK2 in breast cancer cells (BCCs), with activation linked to DNA synthesis inhibition. TGFbeta2 also activates stress-activated protein kinase/Jun N-terminal kinase (SAPK/JNK) in sensitive BCCs.
Area of Science:
- Cell Biology
- Molecular Biology
- Cancer Research
Background:
- Transforming growth factor-beta (TGFbeta) plays a complex role in cancer.
- Mitogen-activated protein kinases (MAPKs) are key signaling pathways in cell regulation.
- Breast cancer cell (BCC) lines exhibit varying sensitivities to TGFbeta.
Purpose of the Study:
- To investigate the activation of extracellular signal-regulated kinase 2 (ERK2) by TGFbeta2 in different BCC lines.
- To explore the relationship between TGFbeta2-induced ERK2 activation and its effects on DNA synthesis and gene expression.
- To determine if TGFbeta2 activates stress-activated protein kinase/Jun N-terminal kinase (SAPK/JNK) pathways in BCCs.
Main Methods:
- Treatment of Hs578T and MDA-MB-231 BCC lines with TGFbeta2.
- Measurement of ERK2 activation using Western blotting.
- Assay of DNA synthesis inhibition.
- Co-transfection with reporter constructs (3TP-Lux) and dominant-negative ERK2 (TAYF).
Main Results:
- TGFbeta2 potently activated ERK2 in Hs578T cells (3-fold) but weakly in MDA-MB-231 cells (1.5-fold).
- ERK2 activation correlated with TGFbeta's inhibition of DNA synthesis.
- TGFbeta2 induced SAPK/JNK activation (2.5-fold) in TGFbeta-sensitive BCCs.
- Dominant-negative ERK2 did not block TGFbeta-induced AP-1 or PAI-1 activity but blocked EGF/insulin-induced activity.
Conclusions:
- TGFbeta2-induced ERK2 activation in BCCs is more closely linked to inhibition of DNA synthesis than to TGFbeta production or extracellular matrix control.
- This study provides the first evidence of TGFbeta-induced SAPK/JNK activation in TGFbeta-sensitive human BCCs.