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Na+/H+ exchanger regulatory factor 1 inhibits platelet-derived growth factor signaling in breast cancer cells
Yong Pan1, Edward J Weinman, Jia Le Dai
1Department of Molecular Pathology, The University of Texas MD Anderson Cancer Center, Fannin Street, Houston, Texas 77054, USA.
Introduction:
The gene encoding Na+/H+ exchanger regulatory factor 1 (NHERF1) is a putative tumor suppressor gene that harbors frequent loss of heterozygosity (LOH) and intragenic mutations in breast carcinoma. The exact biologic activity of NHERF1 in mammary glands, however, remains unclear. It was recently proposed that NHERF1 forms a ternary complex with platelet-derived growth factor receptor (PDGFR) and phosphatase and tensin homolog (PTEN), linking NHERF1 suppressor activity to PDGF-initiated phosphoinositide-3 kinase (PI3K)/PTEN signaling.
Methods:
The effect of NHERF1 on the kinetics of PDGF-induced Akt activation was determined in cells with varied NHERF1 background. Levels of active Akt in mammary gland of NHERF1 knockout and wild-type mice were compared. We also examined how NHERF1 expression status affects cell sensitivity to PDGFR inhibitor. A plausible connection between NHERF1 and PTEN pathway was explored at the genetic level.
Results:
We showed that NHERF1, through its PDZ-I domain, interacts directly with the carboxyl-terminal tail of PTEN. Knocking down NHERF1 expression in Zr75.1 cells markedly delayed the turnover of PDGF-induced phospho-Akt. Conversely, NHERF1 over-expression in MCF10A cells led to accelerated phospho-Akt degradation. The slowed decay of phospho-Akt that resulted from NHERF1 loss was evident in mouse embryonic fibroblasts isolated from NHERF1 knockout mice. In agreement with this, mammary gland tissues from these mice exhibited markedly elevated phospho-Akt. The responses of breast cancer cells to PDGFR inhibition were also altered by changes in NHERF1 expression level. Zr75.1 cells with NHERF1 knockdown were more resistant to STI-571-induced apoptosis than parental cells. Similarly, over-expression of NHERF1 rendered MCF10A cells more sensitive to STI-571. NHERF1-induced apoptotic response relies on an intact PTEN pathway; over-expression of NHERF1 in MCF10A cells with PTEN knockdown did not affect STI-571 sensitivity. It was found that NHERF1 LOH-positive breast cancer cells had reduced NHERF1 expression. Interestingly, these cells more frequently had wild-type PTEN or PI3KCA gene than the LOH-negative lines.
Conclusion:
Our data indicate that the interaction of NHERF1 with PTEN counterbalances PI3K/Akt oncogenic signaling and may affect how cells respond to PDGFR inhibition in breast cancer. The dependence of NHERF1 responses on PTEN and genetic segregation of NHERF1 and PTEN (or PI3KCA) alterations suggest that NHERF1 is an active component of the PTEN pathway. Collectively, our study indicates that the biologic activity of NHERF1 in mammary gland is related to PTEN signaling.
Insights
Na+/H+ exchanger regulatory factor 1 (NHERF1) interacts with PTEN to regulate PI3K/Akt signaling in breast cancer. NHERF1 loss delays phospho-Akt degradation, impacting response to PDGFR inhibitors.
Area of Science:
- Oncology
- Molecular Biology
- Cell Signaling
Background:
- Na+/H+ exchanger regulatory factor 1 (NHERF1) is a potential tumor suppressor gene implicated in breast cancer.
- NHERF1's role in mammary glands and its link to platelet-derived growth factor receptor (PDGFR) and phosphatase and tensin homolog (PTEN) signaling remain unclear.
Purpose of the Study:
- To investigate the biological activity of NHERF1 in mammary glands.
- To elucidate the interaction between NHERF1, PDGFR, and PTEN signaling pathways.
- To determine the effect of NHERF1 on PDGF-induced Akt activation and cell sensitivity to PDGFR inhibitors.
Main Methods:
- Assessed PDGF-induced Akt activation kinetics in cells with varying NHERF1 levels.
- Compared active Akt levels in mammary glands of NHERF1 knockout and wild-type mice.
- Examined the impact of NHERF1 expression on cellular sensitivity to PDGFR inhibitors.
- Explored the genetic relationship between NHERF1 and the PTEN pathway.
Main Results:
- NHERF1 directly interacts with PTEN via its PDZ-I domain.
- NHERF1 knockdown delays phospho-Akt degradation, while NHERF1 overexpression accelerates it.
- NHERF1 loss in mice mammary glands leads to elevated phospho-Akt.
- NHERF1 expression levels alter breast cancer cell sensitivity to PDGFR inhibitors (e.g., STI-571).
- NHERF1-mediated apoptosis is dependent on an intact PTEN pathway.
Conclusions:
- NHERF1 interacts with PTEN to counterbalance PI3K/Akt oncogenic signaling.
- NHERF1 influences cellular response to PDGFR inhibition in breast cancer.
- NHERF1 functions as an active component of the PTEN pathway, with its activity linked to PTEN signaling in mammary glands.
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