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Autoinhibition in Ras effectors Raf, PI3K?, and RASSF5: a comprehensive review underscoring the challenges in pharmacological intervention.


ABSTRACT: Autoinhibition is an effective mechanism that guards proteins against spurious activation. Despite its ubiquity, the distinct organizations of the autoinhibited states and their release mechanisms differ. Signaling is most responsive to the cell environment only if a small shift in the equilibrium is required to switch the system from an inactive (occluded) to an active (exposed) state. Ras signaling follows this paradigm. This underscores the challenge in pharmacological intervention to exploit and enhance autoinhibited states. Here, we review autoinhibition and release mechanisms at the membrane focusing on three representative Ras effectors, Raf protein kinase, PI3K? lipid kinase, and NORE1A (RASSF5) tumor suppressor, and point to the ramifications to drug discovery. We further touch on Ras upstream and downstream signaling, Ras activation, and the Ras superfamily in this light, altogether providing a broad outlook of the principles and complexities of autoinhibition.

SUBMITTER: Nussinov R 

PROVIDER: S-EPMC6233353 | biostudies-literature | 2018 Oct

REPOSITORIES: biostudies-literature

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Autoinhibition in Ras effectors Raf, PI3Kα, and RASSF5: a comprehensive review underscoring the challenges in pharmacological intervention.

Nussinov Ruth R   Zhang Mingzhen M   Tsai Chung-Jung CJ   Liao Tsung-Jen TJ   Fushman David D   Jang Hyunbum H  

Biophysical reviews 20180929 5


Autoinhibition is an effective mechanism that guards proteins against spurious activation. Despite its ubiquity, the distinct organizations of the autoinhibited states and their release mechanisms differ. Signaling is most responsive to the cell environment only if a small shift in the equilibrium is required to switch the system from an inactive (occluded) to an active (exposed) state. Ras signaling follows this paradigm. This underscores the challenge in pharmacological intervention to exploit  ...[more]

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