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Published on: April 13, 2015
PDK1 attenuation fails to prevent tumor formation in PTEN-deficient transgenic mouse models
Katharine Ellwood-Yen1, Heike Keilhack, Kaiko Kunii
1Merck Research Laboratories, Harvard Medical School, Boston, Massachusetts, USA.
Abstract:
PDK1 activates AKT suggesting that PDK1 inhibition might suppress tumor development. However, while PDK1 has been investigated intensively as an oncology target, selective inhibitors suitable for in vivo studies have remained elusive. In this study we present the results of in vivo PDK1 inhibition through a universally applicable RNAi approach for functional drug target validation in oncogenic pathway contexts. This approach, which relies on doxycycline-inducible shRNA expression from the Rosa26 locus, is ideal for functional studies of genes like PDK1 where constitutive mouse models lead to strong developmental phenotypes or embryonic lethality. We achieved more than 90% PDK1 knockdown in vivo, a level sufficient to impact physiological functions resulting in hyperinsulinemia and hyperglycemia. This phenotype was reversible on PDK1 reexpression. Unexpectedly, long-term PDK1 knockdown revealed a lack of potent antitumor efficacy in 3 different mouse models of PTEN-deficient cancer. Thus, despite efficient PDK1 knockdown, inhibition of the PI3K pathway was marginal suggesting that PDK1 was not a rate limiting factor. Ex vivo analysis of pharmacological inhibitors revealed that AKT and mTOR inhibitors undergoing clinical development are more effective than PDK1 inhibitors at blocking activated PI3K pathway signaling. Taken together our findings weaken the widely held expectation that PDK1 represents an appealing oncology target.
Insights
PDK1 inhibition via RNAi in mice did not suppress cancer, unexpectedly showing limited PI3K pathway blockade. AKT and mTOR inhibitors proved more effective, challenging PDK1 as an oncology target.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Phosphoinositide-dependent kinase 1 (PDK1) activates AKT, a key player in oncogenic pathways.
- PDK1 is a potential oncology target, but selective in vivo inhibitors are lacking.
Purpose of the Study:
- To investigate the in vivo efficacy of PDK1 inhibition using an RNAi approach for drug target validation.
- To assess the impact of PDK1 knockdown on PTEN-deficient cancer models.
Main Methods:
- Utilized a doxycycline-inducible shRNA system for PDK1 knockdown in mice.
- Evaluated physiological effects and antitumor efficacy in multiple cancer models.
- Performed ex vivo analysis of PI3K pathway signaling.
Main Results:
- Achieved >90% in vivo PDK1 knockdown, causing reversible hyperinsulinemia and hyperglycemia.
- Demonstrated lack of significant antitumor efficacy in PTEN-deficient cancer models.
- Observed marginal PI3K pathway inhibition, indicating PDK1 is not rate-limiting.
Conclusions:
- PDK1 inhibition alone is insufficient for potent antitumor effects in PTEN-deficient cancers.
- AKT and mTOR inhibitors are more effective at blocking PI3K pathway signaling.
- These findings challenge the therapeutic potential of PDK1 as an oncology target.
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