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Updated: Feb 11, 2026

Invasive Behavior of Human Breast Cancer Cells in Embryonic Zebrafish
Published on: April 25, 2017
Golgi tethering factor golgin-97 suppresses breast cancer cell invasiveness by modulating NF-κB activity
Rae-Mann Hsu1, Cai-Yan Zhong2, Chih-Liang Wang3,4
1Department of Cell and Molecular Biology, College of Medicine, Chang Gung University, Taoyuan, Taiwan.
Background:
Golgin-97 is a tethering factor in the trans-Golgi network (TGN) and is crucial for vesicular trafficking and maintaining cell polarity. However, the significance of golgin-97 in human diseases such as cancer remains unclear.
Methods:
We searched for a potential role of golgin-97 in cancers using Kaplan-Meier Plotter ( http://kmplot.com ) and Oncomine ( www.oncomine.org ) datasets. Specific functions of golgin-97 in migration and invasion were examined in golgin-97-knockdown and golgin-97-overexpressing cells. cDNA microarray, pathway analysis and qPCR were used to identify gene profiles regulated by golgin-97. The role of golgin-97 in NF-κB signaling pathway was examined by using subcellular fractionation, luciferase reporter assay, western blot analysis and immunofluorescence assay (IFA).
Results:
We found that low expression of golgin-97 correlated with poor overall survival of cancer patients and was associated with invasiveness in breast cancer cells. Golgin-97 knockdown promoted cell migration and invasion, whereas re-expression of golgin-97 restored the above phenotypes in breast cancer cells. Microarray and pathway analyses revealed that golgin-97 knockdown induced the expression of several invasion-promoting genes that were transcriptionally regulated by NF-κB p65. Mechanistically, golgin-97 knockdown significantly reduced IκBα protein levels and activated NF-κB, whereas neither IκBα levels nor NF-κB activity was changed in TGN46- or GCC185-knockdown cells. Conversely, golgin-97 overexpression suppressed NF-κB activity and restored the levels of IκBα in golgin-97-knockdown cells. Interestingly, the results of Golgi-disturbing agent treatment revealed that the loss of Golgi integrity was not involved in the NF-κB activation induced by golgin-97 knockdown. Moreover, both TGN-bound and cytosolic golgin-97 inhibited NF-κB activation, indicating that golgin-97 functions as an NF-κB suppressor regardless of its subcellular localization.
Conclusion:
Our results collectively demonstrate a novel and suppressive role of golgin-97 in cancer invasiveness. We also provide a new avenue for exploring the relationship between the TGN, golgin-97 and NF-κB signaling in tumor progression.
Insights
Golgin-97 suppresses cancer invasiveness by inhibiting the NF-κB signaling pathway. Low golgin-97 expression correlates with poor patient survival and increased tumor cell invasion.
Area of Science:
- Cell Biology
- Molecular Oncology
Background:
- Golgin-97 is a trans-Golgi network (TGN) tethering factor vital for vesicular trafficking and cell polarity.
- The role of golgin-97 in human cancers, particularly in relation to invasiveness, is not well understood.
Purpose of the Study:
- To investigate the role of golgin-97 in cancer progression and its association with patient survival.
- To elucidate the molecular mechanisms by which golgin-97 influences cancer cell migration, invasion, and the NF-κB signaling pathway.
Main Methods:
- Utilized Kaplan-Meier Plotter and Oncomine databases to analyze golgin-97 expression in cancer patients.
- Performed gene expression profiling (cDNA microarray, qPCR) and functional assays (cell migration, invasion) in golgin-97-manipulated cells.
- Investigated the NF-κB signaling pathway using biochemical and cell imaging techniques, including western blot and immunofluorescence assays.
Main Results:
- Low golgin-97 expression correlated with reduced overall survival and increased invasiveness in breast cancer.
- Golgin-97 knockdown enhanced cell migration and invasion, while its re-expression reversed these effects.
- Golgin-97 knockdown activated the NF-κB signaling pathway, which was independent of Golgi integrity, and golgin-97 acted as an NF-κB suppressor.
Conclusions:
- Golgin-97 plays a novel suppressive role in cancer invasiveness.
- The findings highlight a new link between the TGN, golgin-97, and NF-κB signaling in tumor progression.
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