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PRDM14 directly interacts with heat shock proteins HSP90α and glucose-regulated protein 78
Chiharu Moriya1, Hiroaki Taniguchi1, Satoru Nagatoishi2,3
1Center for Antibody and Vaccine Therapy, Research Hospital, The Institute of Medical Science, The University of Tokyo, Tokyo, Japan.
Abstract:
PRDM14 is overexpressed in various cancers and can regulate cancer phenotype under certain conditions. Inhibiting PRDM14 expression in breast and pancreatic cancers has been reported to reduce cancer stem-like phenotypes, which are associated with aggressive tumor properties. Therefore, PRDM14 is considered a promising target for cancer therapy. To develop a pharmaceutical treatment, the mechanism and interacting partners of PRDM14 need to be clarified. Here, we identified the proteins interacting with PRDM14 in triple-negative breast cancer (TNBC) cells, which do not express the three most common types of receptor (estrogen receptors, progesterone receptors, and HER2). We obtained 13 candidates that were pulled down with PRDM14 in TNBC HCC1937 cells and identified them by mass spectrometry. Two candidates-glucose-regulated protein 78 (GRP78) and heat shock protein 90-α (HSP90α)-were confirmed in immunoprecipitation assay in two TNBC cell lines (HCC1937 and MDA-MB231). Surface plasmon resonance analysis using GST-PRDM14 showed that these two proteins directly interacted with PRDM14 and that the interactions required the C-terminal region of PRDM14, which includes zinc finger motifs. We also confirmed the interactions in living cells by NanoLuc luciferase-based bioluminescence resonance energy transfer (NanoBRET) assay. Moreover, HSP90 inhibitors (17DMAG and HSP990) significantly decreased breast cancer stem-like CD24- CD44+ and side population (SP) cells in HCC1937 cells, but not in PRDM14 knockdown HCC1937 cells. The combination of the GRP78 inhibitor HA15 and PRDM14 knockdown significantly decreased cell proliferation and SP cell number in HCC1937 cells. These results suggest that HSP90α and GRP78 interact with PRDM14 and participate in cancer regulation.
Insights
PRDM14 interacts with HSP90α and GRP78 in triple-negative breast cancer. Inhibiting these interactions reduces cancer stem cells, suggesting new therapeutic strategies targeting PRDM14.
Area of Science:
- Oncology
- Molecular Biology
- Biochemistry
Background:
- PRDM14 is overexpressed in cancers and linked to aggressive phenotypes.
- Targeting PRDM14 is a promising strategy for cancer therapy.
- Understanding PRDM14's mechanism and interactions is crucial for drug development.
Purpose of the Study:
- Identify PRDM14 interacting proteins in triple-negative breast cancer (TNBC).
- Investigate the functional role of these interactions in cancer regulation.
- Explore potential therapeutic strategies targeting PRDM14 interactions.
Main Methods:
- Mass spectrometry to identify PRDM14 interacting proteins in TNBC cells.
- Immunoprecipitation and surface plasmon resonance to confirm direct interactions.
- NanoBRET assay to validate interactions in living cells.
- Inhibition studies using HSP90 and GRP78 inhibitors.
Main Results:
- Identified glucose-regulated protein 78 (GRP78) and heat shock protein 90-α (HSP90α) as PRDM14 interacting partners.
- Confirmed direct interactions requiring PRDM14's C-terminal region.
- HSP90 inhibitors reduced cancer stem-like cells, but only in the presence of PRDM14.
- Combined GRP78 inhibition and PRDM14 knockdown decreased cell proliferation and stem cell populations.
Conclusions:
- HSP90α and GRP78 directly interact with PRDM14 in TNBC.
- These interactions are critical for maintaining cancer stem-like phenotypes and proliferation.
- Targeting PRDM14-HSP90α/GRP78 interactions offers a potential therapeutic avenue for TNBC.
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