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LATS1 tumor suppressor regulates G2/M transition and apoptosis
Hong Xia1, Huilin Qi, Yunfang Li
1Stem Cell Institute, Cancer Center, Division of Hematology, Oncology and Transplantation, University of Minnesota, Minneapolis, MN 55455, USA.
Abstract:
The LATS1 gene is a mammalian member of the novel lats tumor suppressor family. Both lats mosaic flies and LATS1 deficient mice spontaneously develop tumors. Our previous studies have shown that inactivation of Drosophila lats leads to up-regulation of cyclin A in the fly, and the human LATS1 protein associates with CDC2 in early mitosis in HeLa cells, suggesting that the lats gene family may negatively regulate cell proliferation by modulating CDC2/Cyclin A activity. We demonstrate here that transduction of the human breast cancer cell MCF-7 with recombinant LATS1 adenovirus (Ad-LATS1), but not with EGFP adenovirus (Ad-EGFP), inhibits in vitro cell proliferation. Ectopic expression of LATS1 in MCF-7 cells specifically down-regulates Cyclin A and Cyclin B protein levels and dramatically reduces CDC2 kinase activity, leading to a G2/M blockade. Furthermore, Ad-LATS1 suppresses anchorage-independent growth of MCF-7 cells in soft agar and tumor formation in athymic nude mice. We also demonstrate that ectopic expression of LATS1 in MCF-7 cells and human lung cancer cell H460 up-regulates the level of BAX proteins and induces apoptosis. Finally, we show that LATS1 kinase activity is required for its ability to inhibit cell growth and induce apoptosis. The results indicate that the LATS1 tumor suppressor may play an important role in the control of human tumor development and that LATS1 suppresses tumorigenesis by negatively regulating cell proliferation and modulating cell survival.
Insights
The LATS1 tumor suppressor inhibits cancer growth by down-regulating cell proliferation and promoting apoptosis. LATS1 kinase activity is essential for its tumor-suppressive functions, impacting cell cycle progression and survival.
Area of Science:
- Oncology
- Molecular Biology
- Cell Biology
Background:
- The LATS1 gene is a key member of the lats tumor suppressor family.
- LATS1 deficiency in mice and Drosophila leads to spontaneous tumor development.
- Previous research suggests LATS1 negatively regulates cell proliferation via CDC2/Cyclin A activity.
Purpose of the Study:
- To investigate the role of LATS1 in regulating cell proliferation, cell cycle, and apoptosis in human cancer cells.
- To determine if LATS1 kinase activity is necessary for its tumor-suppressive functions.
Main Methods:
- Adenovirus-mediated gene transfer of LATS1 into human breast cancer MCF-7 cells.
- Analysis of cell proliferation, cell cycle progression (G2/M blockade), and apoptosis (BAX protein levels).
- Assessment of anchorage-independent growth and tumor formation in vivo, and evaluation of LATS1 kinase activity.
Main Results:
- Ectopic LATS1 expression inhibited MCF-7 cell proliferation and induced G2/M cell cycle arrest.
- LATS1 down-regulated Cyclin A and Cyclin B, reduced CDC2 kinase activity, and suppressed anchorage-independent growth and tumor formation.
- LATS1 up-regulated BAX protein levels, induced apoptosis, and LATS1 kinase activity was crucial for these effects.
Conclusions:
- LATS1 acts as a tumor suppressor by inhibiting cell proliferation and promoting apoptosis.
- LATS1 regulates the cell cycle at the G2/M phase and modulates cell survival pathways.
- LATS1 kinase activity is essential for its tumor-suppressive functions in human cancer cells.