Related Experiment Video
Updated: Jun 23, 2026

Combining Chemical Cross-linking and Mass Spectrometry of Intact Protein Complexes to Study the Architecture of Multi-subunit Protein Assemblies
Published on: November 28, 2017
Probing Akt-inhibitor interaction by chemical cross-linking and mass spectrometry
1Laboratory of Molecular Signaling, NIAAA, NIH, Bethesda, Maryland 20892-9410, USA.
Abstract:
The serine/threonine kinase Akt is a critical enzyme that regulates cell survival. As high Akt activity has been shown to contribute to the pathogenesis of various human malignancies, inhibition of Akt activation is a promising therapeutic strategy for cancers. We have previously demonstrated that changes in Akt interdomain arrangements from a closed to open conformation occur upon Akt-membrane interaction, which in turn allows Akt phosphorylation/activation. In the present study, we demonstrate a novel strategy to discern mechanisms for Akt inhibition based on Akt conformational changes using chemical cross-linking and (18)O labeling mass spectrometry. By quantitative comparison of two interdomain cross-linked peptides, which represent the proximity of the domains involved, we found that the binding of Akt to an inhibitor (PI analog) caused the open interdomain conformation where the PH and regulatory domains moved away from the kinase domain, even before interacting with membranes, subsequently preventing translocation of Akt to the plasma membrane. In contrast, the interdomain conformation remained unchanged after incubating with another type of inhibitor (peptide TCL1). Subsequent interaction with unilamellar vesicles suggested that TCL1 impaired particularly the opening of the PH domain for exposing T308 for phosphorylation at the plasma membrane. This novel approach based on the conformation-based molecular interaction mechanism should be potentially useful for drug discovery efforts for specific Akt inhibitors or anti-tumor agents.
Insights
Inhibiting Akt kinase, crucial for cell survival and cancer, can be achieved by targeting its conformational changes. This study reveals how specific inhibitors prevent Akt activation by blocking necessary domain movements.
Area of Science:
- Biochemistry
- Molecular Biology
- Cancer Research
Background:
- The serine/threonine kinase Akt is vital for cell survival.
- Elevated Akt activity is implicated in human cancers, making its inhibition a key therapeutic strategy.
- Akt activation requires a conformational shift from closed to open upon membrane interaction.
Purpose of the Study:
- To develop a novel strategy for understanding Akt inhibition mechanisms based on conformational changes.
- To investigate how different inhibitors affect Akt's interdomain arrangements and membrane translocation.
Main Methods:
- Utilized chemical cross-linking and (18)O labeling mass spectrometry to analyze Akt conformations.
- Quantitatively compared cross-linked peptides to assess domain proximity.
- Assessed inhibitor effects on Akt interaction with unilamellar vesicles.
Main Results:
- A PI analog inhibitor induced an open Akt conformation, preventing membrane interaction and activation.
- A peptide inhibitor (TCL1) did not alter the basal Akt conformation but impaired PH domain opening.
- TCL1 inhibited Akt phosphorylation at T308, likely by blocking PH domain exposure.
Conclusions:
- Akt inhibitors can function by stabilizing specific conformations or blocking conformational changes necessary for activation.
- This conformation-based approach offers a new avenue for discovering targeted Akt inhibitors and anti-cancer agents.
