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Published on: December 10, 2015
Snail transcription factor NLS and importin β1 regulate the subcellular localization of Cathepsin L and Cux1
Liza J Burton1, Veronica Henderson1, Latiffa Liburd1
1Center for Cancer Research and Therapeutic Development, Department of Biological Sciences, Clark Atlanta University, Atlanta, GA, USA.
Abstract:
Several recent studies have highlighted an additional unexpected localization and site of action for Cathepsin L (Cat L) protease within the nucleus in breast, colon and prostate cancer, however, its role in the nucleus was unclear. It was proposed to mediate proteolytic processing of the transcription factor CCAAT-displacement protein/cut homeobox transcription factor (Cux1) from the full-length p200 isoform to generate the p110 and p90 isoforms, of which the p110 isoform was shown to act as a cell cycle regulator to accelerate entry into the S phase. The p110 isoform has also been shown to bind to the promoter regions of Snail and E-cadherin to activate Snail and inactivate E-cadherin transcription, thus promoting epithelial mesenchymal transition (EMT). Mechanistic studies on what drives Cat L nuclear localization have not been reported. Our hypothesis is that Snail shuttles into the nucleus with Cat L through binding to importin-β. Snail knockdown with siRNA in MDA-MB-468 breast cancer cells led to nuclear to cytoplasmic shuttling of Cat L and decreased levels of Cux1, while overexpression of Snail in MCF-7 breast cancer cells or HEK-293 human embryonic kidney cells led to increased nuclear expression of both Cat L and Cux1. Additionally, transient transfection of Snail NLS mutants not only abrogated Snail nuclear localization but also nuclear localization of Cat L and Cux1. Interestingly, importin β1 knockdown with siRNA decreased Snail and Cux1 levels, as well as nuclear localization of Cat L. Therefore, we show for the first time that the nuclear localization of Cat L and its substrate Cux1can be positively regulated by Snail NLS and importin β1, suggesting that Snail, Cat L and Cux1 all utilize importin β1 for nuclear import.
Insights
Snail protein facilitates the nuclear import of Cathepsin L (Cat L) and its substrate Cux1, impacting cell cycle regulation and epithelial mesenchymal transition (EMT) in cancer. This nuclear localization is mediated by importin β1.
Area of Science:
- Molecular Biology
- Cancer Research
- Cell Biology
Background:
- Cathepsin L (Cat L) protease has an unexpected nuclear role in breast, colon, and prostate cancers, processing the transcription factor Cux1.
- The processed Cux1 isoforms (p110 and p90) influence cell cycle regulation and epithelial mesenchymal transition (EMT) by affecting Snail and E-cadherin transcription.
- The mechanisms driving Cat L's nuclear localization remained unclear.
Purpose of the Study:
- To investigate the role of Snail in the nuclear localization of Cathepsin L (Cat L).
- To elucidate the mechanism by which Cat L and its substrate Cux1 are imported into the nucleus.
- To determine the involvement of importin-β in the nuclear transport of Snail, Cat L, and Cux1.
Main Methods:
- Utilized Snail knockdown with siRNA in MDA-MB-468 breast cancer cells.
- Performed Snail overexpression in MCF-7 breast cancer cells and HEK-293 cells.
- Employed transient transfection of Snail NLS mutants and importin β1 knockdown with siRNA.
Main Results:
- Snail knockdown caused Cat L to shuttle from the nucleus to the cytoplasm and decreased Cux1 levels.
- Snail overexpression increased nuclear expression of both Cat L and Cux1.
- Snail NLS mutants and importin β1 knockdown abrogated the nuclear localization of Snail, Cat L, and Cux1.
Conclusions:
- Snail positively regulates the nuclear localization of Cathepsin L (Cat L) and its substrate Cux1.
- Nuclear import of Snail, Cat L, and Cux1 is dependent on Snail's nuclear localization signal (NLS) and importin β1.
- These findings suggest a coordinated mechanism involving Snail, Cat L, and importin β1 for nuclear transport in cancer cells.
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