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The dynamicity of mutant KRAS β2 strand modulates its downstream activation and predicts anticancer KRAS inhibition
Jeiran Pashapour Anousheh1, Abolfazl Barzegar2, Mohammad Saeid Hejazi1
1Molecular Medicine Research Center, Biomedicine Institute, Tabriz University of Medical Sciences, Tabriz, Iran; Department of Pharmaceutical Biotechnology, Faculty of Pharmacy, Tabriz University of Medical Sciences, Tabriz, Iran.
Aim:
Oncogenic mutations involving KRAS are human cancer's most common driving force. We aimed to determine specific conformational features of the active KRAS regarding downstream signaling activation, especially in mutant forms of KRAS.
Main Methods:
We applied Molecular Dynamics (MD) simulations in triplicate and post-MD analytical methods on the KRAS and its G12 mutant structures. In addition, clustering, umbrella sampling, and principal component analysis were conducted to improve the significant conformations related to the activity of the KRAS variants. The results were generally represented as the probability of the conformations regarding different structural aspects, including β2-strand length, main residual distances, and critical residue interactions.
Key Findings:
Our results showed that the KRAS β2-strand length was a convenient structural criterion to show the KRAS activity. Accordingly, the active conformations of KRAS were the most probable to have 9-10 residue numbers of β2-strand. Based on this observation, it was also shown that the GDP forms of KRAS G12 mutants could be in the active mode because of increased β2-strand length. Moreover, the distance between the E37 and A59 residues differed in relation to β2-β3 sheet length and can be considered another KRAS activity indicator. Interestingly, β2-strand length could also predict the KRAS activity in the presence of a direct mutant KRAS inhibitor.
Significance:
As a result, our observations provide a new mechanism regarding the high efficacy of direct inhibition of KRAS-GDP in cancer therapy. In addition, designing and screening the mutant KRAS inhibitors can be more achievable using the β2-strand length probability.
Insights
KRAS mutations drive cancer. This study reveals KRAS beta2-strand length as a key indicator of KRAS activity, even for mutants, aiding targeted cancer therapy development.
Area of Science:
- Molecular biology
- Biochemistry
- Structural biology
Background:
- KRAS mutations are primary drivers in human cancers.
- Understanding KRAS conformational states is crucial for targeted therapies.
Purpose of the Study:
- To identify specific conformational features of active KRAS.
- To investigate these features in mutant KRAS forms and their impact on signaling.
Main Methods:
- Employed Molecular Dynamics (MD) simulations and post-MD analyses.
- Utilized clustering, umbrella sampling, and principal component analysis.
- Assessed conformations via beta2-strand length, residue distances, and interactions.
Main Results:
- KRAS beta2-strand length (9-10 residues) correlates with active conformations.
- KRAS G12 mutants in GDP-bound states can exhibit active conformations due to longer beta2-strands.
- The E37-A59 residue distance also indicates KRAS activity.
- Beta2-strand length predicts KRAS activity even with direct inhibitors.
Conclusions:
- Provides a novel mechanism for KRAS-GDP direct inhibition efficacy in cancer.
- Beta2-strand length probability facilitates the design and screening of mutant KRAS inhibitors.
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