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Loss of LATS1 and LATS2 promotes ovarian tumor formation by enhancing AKT activity and PD-L1 expression
Yalun Zhu1,2, Atefeh Abedini1,2, Galaxia M Rodriguez1,2
1Department of Cellular and Molecular Medicine, University of Ottawa, Ottawa, ON, Canada.
Abstract:
High-grade serous ovarian cancer (HGSOC) is the deadliest and most common subtype of ovarian cancer. Unfortunately, most patients develop recurrence and, ultimately, resistance to standard platinum chemotherapy. Large tumor suppressors LATS1 and LATS2, the core Hippo signaling kinases, have been implicated in various cancer types, including ovarian cancer. The mechanism by which LATS1/2 suppresses ovarian cancer progression is currently elusive, but the expression of LATS1/2 is frequently reduced or lost in these cancers. In this study, we demonstrate that the inactivation of LATS1/2 is sufficient to transform normal mouse ovarian epithelium into tumorigenic cells associated with increased cell proliferation, invasion, and stemness and epithelial-mesenchymal transition (EMT) characteristics. The knockout of Lats1/2 in the epithelial cells also leads to higher expression levels of the immune checkpoint molecule PD-L1, suggesting a regulatory role of LATS1/2 in modulating immune responses and immune evasion. In addition to the loss of LATS1/2 activating the downstream transcriptional coactivators YAP and TAZ, PI3K-AKT activity was also increased, likely contributing to enhanced tumor proliferation and survival. The stimulatory effect of Lats1/2 knockout on cell proliferation can be partially reversed by treatment with the AKT inhibitor MK2206. Treatment with verteporfin, a potent inhibitor of YAP/TAZ, decreases ovarian tumor progression and reduces the activated AKT in the tumors. In summary, this study uncovers several biological mechanisms for the initiation of HGSOC and identifies LATS1/2 as potential prognostic indicators and therapeutic targets.
Insights
Loss of LATS1/2 tumor suppressors drives high-grade serous ovarian cancer (HGSOC) by promoting proliferation, invasion, and immune evasion. Restoring LATS1/2 function or inhibiting downstream pathways like YAP/TAZ and AKT may offer new therapeutic strategies for HGSOC.
Area of Science:
- Oncology
- Molecular Biology
- Cell Signaling
Background:
- High-grade serous ovarian cancer (HGSOC) is the most common and lethal subtype, frequently developing platinum chemotherapy resistance.
- Large tumor suppressors LATS1 and LATS2, core Hippo signaling kinases, are often downregulated or lost in HGSOC, but their precise role remains unclear.
Purpose of the Study:
- To elucidate the mechanism by which LATS1/2 loss contributes to HGSOC initiation and progression.
- To investigate the downstream signaling pathways affected by LATS1/2 inactivation in ovarian cancer.
- To identify LATS1/2 as potential prognostic markers and therapeutic targets for HGSOC.
Main Methods:
- Inactivation of Lats1/2 in mouse ovarian epithelial cells.
- Analysis of tumor cell characteristics including proliferation, invasion, stemness, and epithelial-mesenchymal transition (EMT).
- Assessment of immune checkpoint molecule PD-L1 expression.
- Pharmacological inhibition of AKT and YAP/TAZ pathways.
Main Results:
- LATS1/2 inactivation was sufficient to induce tumorigenesis, characterized by increased proliferation, invasion, stemness, and EMT.
- Loss of LATS1/2 led to elevated PD-L1 expression, suggesting a role in immune evasion.
- LATS1/2 loss activated YAP/TAZ and PI3K-AKT signaling pathways.
- Inhibition of AKT or YAP/TAZ partially reversed proliferation and reduced tumor progression.
Conclusions:
- LATS1/2 play a critical role in suppressing HGSOC development by regulating cell proliferation, invasion, and immune evasion.
- The Hippo pathway, through LATS1/2, interacts with YAP/TAZ and AKT signaling in HGSOC.
- LATS1/2 represent promising prognostic indicators and therapeutic targets for HGSOC treatment.
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