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Engineering Artificial Factors to Specifically Manipulate Alternative Splicing in Human Cells
Published on: April 26, 2017
An aberrant spliced transcript of focal adhesion kinase is exclusively expressed in human breast cancer
Ling Yao, Kai Li, Wenting Peng
1Department of Oncology, Breast Cancer Institute, Shanghai Cancer Center, Shanghai Medical College, Fudan University, No,270, Dong'an Road, Shanghai 200032, People's Republic of China. shaozmyl@126.com.
Purpose:
To clarify the roles of a new aberrantly spliced transcript of FAK that lacks exon 26 (denoted -26-exon FAK) in human breast cancers.
Methods:
Transcripts of FAK expressed in 102 human breast tumor tissues and 52 corresponding normal tissues were analyzed by RT-PCR and DNA sequencing, as well as agarose gel electrophoresis. The cDNA of -26-exon FAK was cloned and expressed in MCF-10A cells, and then the kinase activity, cellular localization and migration capability of FAK were examined by western blotting, immunofluorescent staining and migration assays, respectively. The expression levels of FAK were analyzed by western blotting in MCF-7 cells treated with TNF-α or in MCF-10A cells upon serum deprivation. The MCF-10A cells transfected with a plasmid expressing -26-exon FAK were cultured in serum-free medium and cell apoptosis was analyzed by flow cytometry.
Results:
The -26-exon FAK transcript was exclusively present in human breast tumor tissues and the encoded protein possessed the same kinase activity, cellular localization and cell migration-promoting ability as wild-type FAK. In MCF-7 cells treated with TNF-α, and in MCF-10A cells upon serum deprivation, the -26-exon FAK was resistant to proteolysis while wild-type FAK was largely cleaved. In addition, the -26-exon FAK, but not wild-type FAK, inhibited cell apoptosis.
Conclusions:
The -26-exon FAK transcript, which is exclusively expressed in human breast tumor tissues, encodes a protein that possesses the same kinase activity and biological function as the wild-type FAK, but because it is resistant to the caspase-mediated cleavage that induces the proteolysis of the wild-type form, it ultimately prevents apoptosis.
Insights
A novel FAK transcript lacking exon 26 (-26-exon FAK) is found in breast tumors. This variant resists cleavage and inhibits apoptosis, unlike wild-type FAK.
Area of Science:
- Molecular Biology
- Cancer Research
Background:
- Focal Adhesion Kinase (FAK) plays a critical role in cell signaling.
- Aberrant splicing of FAK transcripts can occur in cancer.
Purpose of the Study:
- To investigate the role of a specific FAK splice variant, -26-exon FAK, in human breast cancers.
- To determine the functional consequences of this variant in breast tumor cells.
Main Methods:
- Analysis of FAK transcripts in breast tumor and normal tissues using RT-PCR and DNA sequencing.
- Cloning and expression of -26-exon FAK in cell lines.
- Assessment of kinase activity, cellular localization, migration, and apoptosis resistance.
Main Results:
- The -26-exon FAK transcript is exclusively found in human breast tumors.
- -26-exon FAK exhibits similar kinase activity and migration-promoting ability as wild-type FAK.
- Unlike wild-type FAK, -26-exon FAK is resistant to proteolysis and inhibits apoptosis.
Conclusions:
- The -26-exon FAK transcript is a tumor-specific splice variant in breast cancer.
- This variant confers resistance to apoptosis by evading caspase-mediated cleavage.
- The findings suggest a novel mechanism by which FAK contributes to breast cancer progression.
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