Related Experiment Video
Updated: Jul 12, 2025

Utilizing 18F-FDG PET/CT Imaging and Quantitative Histology to Measure Dynamic Changes in the Glucose Metabolism in Mouse Models of Lung Cancer
Published on: July 21, 2018
Discovery and Clinical Proof-of-Concept of RLY-2608, a First-in-Class Mutant-Selective Allosteric PI3Kα Inhibitor
Andreas Varkaris1, Ermira Pazolli2, Hakan Gunaydin2
1Mass General Cancer Center and Department of Medicine, Harvard Medical School, Boston, Massachusetts.
Abstract:
PIK3CA (PI3Kα) is a lipid kinase commonly mutated in cancer, including ∼40% of hormone receptor-positive breast cancer. The most frequently observed mutants occur in the kinase and helical domains. Orthosteric PI3Kα inhibitors suffer from poor selectivity leading to undesirable side effects, most prominently hyperglycemia due to inhibition of wild-type (WT) PI3Kα. Here, we used molecular dynamics simulations and cryo-electron microscopy to identify an allosteric network that provides an explanation for how mutations favor PI3Kα activation. A DNA-encoded library screen leveraging electron microscopy-optimized constructs, differential enrichment, and an orthosteric-blocking compound led to the identification of RLY-2608, a first-in-class allosteric mutant-selective inhibitor of PI3Kα. RLY-2608 inhibited tumor growth in PIK3CA-mutant xenograft models with minimal impact on insulin, a marker of dysregulated glucose homeostasis. RLY-2608 elicited objective tumor responses in two patients diagnosed with advanced hormone receptor-positive breast cancer with kinase or helical domain PIK3CA mutations, with no observed WT PI3Kα-related toxicities.
Significance:
Treatments for PIK3CA-mutant cancers are limited by toxicities associated with the inhibition of WT PI3Kα. Molecular dynamics, cryo-electron microscopy, and DNA-encoded libraries were used to develop RLY-2608, a first-in-class inhibitor that demonstrates mutant selectivity in patients. This marks the advance of clinical mutant-selective inhibition that overcomes limitations of orthosteric PI3Kα inhibitors. See related commentary by Gong and Vanhaesebroeck, p. 204 . See related article by Varkaris et al., p. 227 . This article is featured in Selected Articles from This Issue, p. 201.
Insights
A new allosteric inhibitor, RLY-2608, selectively targets PIK3CA mutations in cancer, overcoming side effects of previous treatments. This breakthrough offers a more effective and safer therapy for PIK3CA-mutant cancers.
Area of Science:
- Oncology
- Molecular Biology
- Drug Discovery
Background:
- PIK3CA mutations are common in hormone receptor-positive breast cancer, driving tumor growth.
- Existing PI3Kα inhibitors lack selectivity, causing hyperglycemia by inhibiting wild-type PI3Kα.
- Targeting mutant PIK3CA while sparing wild-type PI3Kα is crucial for effective cancer therapy.
Purpose of the Study:
- To identify a novel, mutant-selective inhibitor of PI3Kα.
- To overcome the toxicities associated with non-selective PI3Kα inhibition.
- To develop a first-in-class allosteric inhibitor for PIK3CA-mutant cancers.
Main Methods:
- Utilized molecular dynamics simulations and cryo-electron microscopy to understand PI3Kα activation mechanisms.
- Employed DNA-encoded library screening with an orthosteric-blocking compound.
- Leveraged electron microscopy-optimized constructs for inhibitor identification.
Main Results:
- Identified RLY-2608, a first-in-class allosteric inhibitor selective for mutant PI3Kα.
- RLY-2608 demonstrated efficacy in PIK3CA-mutant xenograft models with minimal impact on insulin levels.
- RLY-2608 showed objective tumor responses in patients with advanced breast cancer, without wild-type PI3Kα-related toxicities.
Conclusions:
- RLY-2608 represents a significant advancement in mutant-selective cancer therapy.
- Allosteric inhibition offers a promising strategy to overcome limitations of orthosteric PI3Kα inhibitors.
- Clinical trials confirmed the safety and efficacy of RLY-2608 in treating PIK3CA-mutant cancers.
More Related Videos
12:49Human Peripheral Blood Neutrophil Isolation for Interrogating the Parkinson's Associated LRRK2 Kinase Pathway by Assessing Rab10 Phosphorylation
Published on: March 21, 2020
12:40A Method for Screening and Validation of Resistant Mutations Against Kinase Inhibitors
Published on: December 7, 2014