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Fluorescence Microscopy for ATP Internalization Mediated by Macropinocytosis in Human Tumor Cells and Tumor-xenografted Mice
Published on: June 30, 2021
ATP synthase ecto-α-subunit: a novel therapeutic target for breast cancer
Jian Pan1, Li-Chao Sun, Yan-Fang Tao
1Department of Hematology and Oncology, Children's Hospital of Soochow University, Suzhou 215003, China.
Background:
Treatment failure for breast cancer is frequently due to lymph node metastasis and invasion to neighboring organs. The aim of the present study was to investigate invasion- and metastasis-related genes in breast cancer cells in vitro and in vivo. Identification of new targets will facilitate the developmental pace of new techniques in screening and early diagnosis. Improved abilities to predict progression and metastasis, therapeutic response and toxicity will help to increase survival of breast cancer patients.
Methods:
Differential protein expression in two breast cancer cell lines, one with high and the other with low metastatic potential, was analyzed using two-dimensional liquid phase chromatographic fractionation (Proteome Lab PF 2D system) followed by matrix-assisted laser desorption/time-of-flight mass spectrometry (MALDI-TOF/MS).
Results:
Up regulation of α-subunit of ATP synthase was identified in high metastatic cells compared with low metastatic cells. Immunohistochemical analysis of 168 human breast cancer specimens on tissue microarrays revealed a high frequency of ATP synthase α-subunit expression in breast cancer (94.6%) compared to normal (21.2%) and atypical hyperplasia (23%) breast tissues. Levels of ATP synthase expression levels strongly correlated with large tumor size, poor tumor differentiation and advanced tumor stages (P < 0.05). ATP synthase α-subunit over-expression was detected on the surface of a highly invasive breast cancer cell line. An antibody against the ATP synthase α-subunit inhibited proliferation, migration and invasion in these breast cancer cells but not that of a non-tumor derived breast cell line.
Conclusions:
Over-expression of ATP synthase α-subunit may be involved in the progression and metastasis of breast cancer, perhaps representing a potential biomarker for diagnosis, prognosis and a therapeutic target for breast cancer. This finding of this study will help us to better understand the molecular mechanism of tumor metastasis and to improve the screening, diagnosis, as well as prognosis and/or prediction of responses to therapy for breast cancer.
Insights
ATP synthase alpha-subunit is overexpressed in metastatic breast cancer, correlating with advanced stages. Targeting this protein inhibited cancer cell invasion, suggesting it as a potential diagnostic and therapeutic target for breast cancer.
Area of Science:
- Oncology
- Molecular Biology
- Biochemistry
Background:
- Breast cancer treatment failure is often linked to metastasis.
- Identifying novel targets is crucial for early diagnosis and improved patient survival.
Purpose of the Study:
- Investigate invasion- and metastasis-related genes in breast cancer cells.
- Identify new targets for screening, diagnosis, and therapy.
Main Methods:
- Differential protein expression analysis using 2D liquid phase chromatography and MALDI-TOF/MS.
- Immunohistochemical analysis of 168 human breast cancer specimens.
- In vitro studies using antibodies against ATP synthase alpha-subunit.
Main Results:
- ATP synthase alpha-subunit was upregulated in highly metastatic breast cancer cells.
- High expression of ATP synthase alpha-subunit was found in 94.6% of breast cancers, correlating with advanced stage, poor differentiation, and large tumor size.
- Antibody targeting ATP synthase alpha-subunit inhibited proliferation, migration, and invasion of breast cancer cells.
Conclusions:
- Overexpression of ATP synthase alpha-subunit is implicated in breast cancer progression and metastasis.
- ATP synthase alpha-subunit may serve as a biomarker for diagnosis and prognosis.
- Targeting ATP synthase alpha-subunit presents a potential therapeutic strategy for breast cancer.
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