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Blocking the Farnesyl Pocket of PDEδ Reduces Rheb-Dependent mTORC1 Activation and Survival of Tsc2-Null Cells
Marisol Estrella Armijo1,2, Emilia Escalona1, Daniela Peña1
1Laboratorio de Transducción de Señales y Cáncer, Departamento de Bioquímica y Biología Molecular, Facultad de Ciencias Biológicas, Universidad de Concepción, Concepción, Chile.
Abstract:
Rheb is a small GTPase member of the Ras superfamily and an activator of mTORC1, a protein complex master regulator of cell metabolism, growth, and proliferation. Rheb/mTORC1 pathway is hyperactivated in proliferative diseases, such as Tuberous Sclerosis Complex syndrome and cancer. Therefore, targeting Rheb-dependent signaling is a rational strategy for developing new drug therapies. Rheb activates mTORC1 in the cytosolic surface of lysosomal membranes. Rheb's farnesylation allows its anchorage on membranes, while its proper localization depends on the prenyl-binding chaperone PDEδ. Recently, the use of PDEδ inhibitors has been proposed as anticancer agents because they interrupted KRas signaling leading to antiproliferative effects in KRas-dependent pancreatic cancer cells. However, the effect of PDEδ inhibition on the Rheb/mTORC1 pathway has been poorly investigated. Here, we evaluated the impact of a new PDEδ inhibitor, called Deltasonamide 1, in Tsc2-null MEFs, a Rheb-dependent overactivated mTORC1 cell line. By using a yeast two-hybrid assay, we first validated that Deltasonamide 1 disrupts Rheb-PDEδ interaction. Accordingly, we found that Deltasonamide 1 reduces mTORC1 targets activation. In addition, our results showed that Deltasonamide 1 has antiproliferative and cytotoxic effects on Tsc2-null MEFs but has less effect on Tsc2-wild type MEFs viability. This work proposes the pharmacological PDEδ inhibition as a new approach to target the abnormal Rheb/mTORC1 activation in Tuberous Sclerosis Complex cells.
Insights
A new study shows that Deltasonamide 1, a PDEδ inhibitor, disrupts Rheb-PDEδ interaction, reducing mTORC1 activation. This offers a potential therapeutic strategy for Tuberous Sclerosis Complex by targeting abnormal Rheb/mTORC1 signaling.
Area of Science:
- Cell Biology
- Molecular Biology
- Pharmacology
Background:
- The Rheb/mTORC1 pathway regulates cell metabolism and is hyperactivated in diseases like Tuberous Sclerosis Complex (TSC) and cancer.
- Rheb localization to lysosomal membranes, crucial for mTORC1 activation, depends on farnesylation and the chaperone PDEδ.
- PDEδ inhibitors have shown promise in disrupting KRas signaling, but their impact on the Rheb/mTORC1 pathway is largely unexplored.
Purpose of the Study:
- To investigate the effect of a novel PDEδ inhibitor, Deltasonamide 1, on the Rheb/mTORC1 pathway.
- To evaluate the potential of pharmacological PDEδ inhibition as a therapeutic strategy for TSC.
Main Methods:
- Yeast two-hybrid assay to confirm Deltasonamide 1's disruption of Rheb-PDEδ interaction.
- Assessment of mTORC1 target activation in response to Deltasonamide 1 treatment.
- Evaluation of Deltasonamide 1's antiproliferative and cytotoxic effects on Tsc2-null and Tsc2-wild type MEFs.
Main Results:
- Deltasonamide 1 successfully disrupted the Rheb-PDEδ interaction.
- Treatment with Deltasonamide 1 led to reduced activation of mTORC1 targets.
- Deltasonamide 1 exhibited significant antiproliferative and cytotoxic effects on Tsc2-null MEFs, with minimal impact on Tsc2-wild type MEFs.
Conclusions:
- Pharmacological inhibition of PDEδ by Deltasonamide 1 effectively targets the hyperactivated Rheb/mTORC1 pathway.
- This approach shows promise for treating Tuberous Sclerosis Complex by selectively impacting cells with abnormal Rheb/mTORC1 signaling.
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