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Alexey Koval

Showing results (21-30 of 62) with videos related to

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Cancer Letters|February 17, 2019
Towards the first targeted therapy for triple-negative breast cancer: Repositioning of clofazimine as a chemotherapy-compatible selective Wnt pathway inhibitorKamal Ahmed, Alexey Koval, Jiabin Xu, et al.
Biomolecules|October 26, 2024
Chemical and Biological Characterization of Metabolites from <i>Silene viridiflora</i> Using Mass Spectrometric and Cell-Based AssaysNilufar Z Mamadalieva, Alexey Koval, Maksud M Dusmuratov, et al.
Cells|April 25, 2025
A Personalized 14-3-3 Disease-Targeting Workflow Yields Repositioning Drug CandidatesYonika A Larasati, Gonzalo P Solis, Alexey Koval, et al.
Neural Regeneration Research|April 14, 2023
Pediatric <i>GNAO1</i> encephalopathies: from molecular etiology of the disease to drug discoveryVladimir L Katanaev, Jana Valnohova, Denis N Silachev, et al.
The Journal of Clinical Investigation|June 14, 2024
Neomorphic Gαo mutations gain interaction with Ric8 proteins in GNAO1 encephalopathiesGonzalo P Solis, Alexey Koval, Jana Valnohova, et al.
Microbiology Spectrum|June 27, 2023
Wnt-Independent SARS-CoV-2 Infection in Pulmonary Epithelial CellsAlexey Koval, Jiabin Xu, Nathalia Williams, et al.
Cell|September 9, 2017
Golgi-Resident Gαo Promotes Protrusive Membrane DynamicsGonzalo P Solis, Oleksii Bilousov, Alexey Koval, et al.
Science Advances|October 7, 2022
Restoration of the GTPase activity and cellular interactions of Gα<sub>o</sub> mutants by Zn<sup>2+</sup> in <i>GNAO1</i> encephalopathy modelsYonika A Larasati, Mikhail Savitsky, Alexey Koval, et al.
Acta Neuropathologica Communications|January 29, 2022
Mouse models characterize GNAO1 encephalopathy as a neurodevelopmental disorder leading to motor anomalies: from a severe G203R to a milder C215Y mutationDenis Silachev, Alexey Koval, Mikhail Savitsky, et al.
Movement Disorders : Official Journal of the Movement Disorder Society|February 15, 2024
GNAO1 Mutations Affecting the N-Terminal α-Helix of Gαo Lead to ParkinsonismGonzalo P Solis, Yonika A Larasati, Moritz Thiel, et al.
Pageof 7

Showing results (21-30 of 62) with videos related to

Sort By:
Pageof 7
Cancer Letters|February 17, 2019
Towards the first targeted therapy for triple-negative breast cancer: Repositioning of clofazimine as a chemotherapy-compatible selective Wnt pathway inhibitorKamal Ahmed, Alexey Koval, Jiabin Xu, et al.
Biomolecules|October 26, 2024
Chemical and Biological Characterization of Metabolites from <i>Silene viridiflora</i> Using Mass Spectrometric and Cell-Based AssaysNilufar Z Mamadalieva, Alexey Koval, Maksud M Dusmuratov, et al.
Cells|April 25, 2025
A Personalized 14-3-3 Disease-Targeting Workflow Yields Repositioning Drug CandidatesYonika A Larasati, Gonzalo P Solis, Alexey Koval, et al.
Neural Regeneration Research|April 14, 2023
Pediatric <i>GNAO1</i> encephalopathies: from molecular etiology of the disease to drug discoveryVladimir L Katanaev, Jana Valnohova, Denis N Silachev, et al.
The Journal of Clinical Investigation|June 14, 2024
Neomorphic Gαo mutations gain interaction with Ric8 proteins in GNAO1 encephalopathiesGonzalo P Solis, Alexey Koval, Jana Valnohova, et al.
Microbiology Spectrum|June 27, 2023
Wnt-Independent SARS-CoV-2 Infection in Pulmonary Epithelial CellsAlexey Koval, Jiabin Xu, Nathalia Williams, et al.
Cell|September 9, 2017
Golgi-Resident Gαo Promotes Protrusive Membrane DynamicsGonzalo P Solis, Oleksii Bilousov, Alexey Koval, et al.
Science Advances|October 7, 2022
Restoration of the GTPase activity and cellular interactions of Gα<sub>o</sub> mutants by Zn<sup>2+</sup> in <i>GNAO1</i> encephalopathy modelsYonika A Larasati, Mikhail Savitsky, Alexey Koval, et al.
Acta Neuropathologica Communications|January 29, 2022
Mouse models characterize GNAO1 encephalopathy as a neurodevelopmental disorder leading to motor anomalies: from a severe G203R to a milder C215Y mutationDenis Silachev, Alexey Koval, Mikhail Savitsky, et al.
Movement Disorders : Official Journal of the Movement Disorder Society|February 15, 2024
GNAO1 Mutations Affecting the N-Terminal α-Helix of Gαo Lead to ParkinsonismGonzalo P Solis, Yonika A Larasati, Moritz Thiel, et al.
Pageof 7