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Updated: Oct 15, 2025

Rewiring Neuronal Circuits: A New Method for Fast Neurite Extension and Functional Neuronal Connection
Published on: June 13, 2017
Mechanism of activation and the rewired network: New drug design concepts
Ruth Nussinov1,2, Mingzhen Zhang1, Ryan Maloney1
1Computational Structural Biology Section, Frederick National Laboratory for Cancer Research in the Laboratory of Cancer Immunometabolism, National Cancer Institute, Frederick, Maryland, USA.
Abstract:
Precision oncology benefits from effective early phase drug discovery decisions. Recently, drugging inactive protein conformations has shown impressive successes, raising the cardinal questions of which targets can profit and what are the principles of the active/inactive protein pharmacology. Cancer driver mutations have been established to mimic the protein activation mechanism. We suggest that the decision whether to target an inactive (or active) conformation should largely rest on the protein mechanism of activation. We next discuss the recent identification of double (multiple) same-allele driver mutations and their impact on cell proliferation and suggest that like single driver mutations, double drivers also mimic the mechanism of activation. We further suggest that the structural perturbations of double (multiple) in cis mutations may reveal new surfaces/pockets for drug design. Finally, we underscore the preeminent role of the cellular network which is deregulated in cancer. Our structure-based review and outlook updates the traditional Mechanism of Action, informs decisions, and calls attention to the intrinsic activation mechanism of the target protein and the rewired tumor-specific network, ushering innovative considerations in precision medicine.
Insights
Targeting inactive protein conformations in precision oncology requires understanding activation mechanisms. Cancer mutations, including double drivers, mimic these mechanisms, offering new drug design opportunities by revealing novel pockets.
Area of Science:
- Oncology
- Structural Biology
- Drug Discovery
Background:
- Precision oncology relies on effective early-phase drug discovery.
- Targeting inactive protein conformations has emerged as a successful strategy.
- Understanding protein activation mechanisms is crucial for selecting drug targets.
Purpose of the Study:
- To explore the principles of active/inactive protein pharmacology.
- To determine which protein targets benefit from targeting specific conformations.
- To investigate the role of cancer driver mutations in protein activation.
Main Methods:
- Structure-based review of protein activation mechanisms.
- Analysis of cancer driver mutations (single and double/multiple in cis).
- Evaluation of cellular network deregulation in cancer.
Main Results:
- Cancer driver mutations mimic protein activation mechanisms.
- The decision to target active or inactive conformations should be based on the protein's activation mechanism.
- Double/multiple in cis mutations may expose new drug design surfaces.
Conclusions:
- Understanding intrinsic protein activation mechanisms is key for precision medicine.
- Rewired tumor-specific cellular networks play a critical role in cancer.
- This approach updates the traditional Mechanism of Action for innovative drug development.
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