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Achuth Padmanabhan

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The Journal of Biological Chemistry|March 19, 2013
Protein kinase A regulates MYC protein through transcriptional and post-translational mechanisms in a catalytic subunit isoform-specific mannerAchuth Padmanabhan, Xiang Li, Charles J Bieberich
Gynecologic Oncology|September 2, 2025
Biology of ovarian cancer: Models, microenvironment, and therapeutics: 15th Biennial Rivkin Center Ovarian Cancer Research SymposiumKatherine B Chiappinelli, Elizabeth L Christie, Achuth Padmanabhan
Cell Reports|March 22, 2016
Assembly of an Evolutionarily Conserved Alternative Proteasome Isoform in Human CellsAchuth Padmanabhan, Simone Anh-Thu Vuong, Mark Hochstrasser
Journal of Cellular Biochemistry|November 7, 2012
Stabilization of the prostate-specific tumor suppressor NKX3.1 by the oncogenic protein kinase Pim-1 in prostate cancer cellsAchuth Padmanabhan, Eliza B Gosc, Charles J Bieberich
The Prostate|February 5, 2016
Regulating NKX3.1 stability and function: Post-translational modifications and structural determinantsAchuth Padmanabhan, Varsha Rao, Angelo M De Marzo, et al.
Journal of Visualized Experiments : Jove|June 8, 2026
Clinically Relevant Transplantable Tumor Models for Studying Metastatic Ovarian Cancer and Therapeutic Response in MouseMegha J Pandya, Fatimah Alfaran, Ayokunnumi Ogunsanya, et al.
Applied Surface Science|February 12, 2020
Zinc Oxide nanoparticles induce oxidative and proteotoxic stress in ovarian cancer cells and trigger apoptosis Independent of p53-mutation statusAchuth Padmanabhan, M Kaushik, R Niranjan, et al.
Nature Methods|October 24, 2007
The reverse in-gel kinase assay to profile physiological kinase substratesXiang Li, Bin Guan, Minu K Srivastava, et al.
NPJ Precision Oncology|December 4, 2025
ZNF217 promotes ovarian cancer progression by impacting multiple pivotal steps in the metastatic processKathryn C Wardrup, Jessica Hoffman, Megha J Pandya, et al.
Nature Communications|March 30, 2018
USP15-dependent lysosomal pathway controls p53-R175H turnover in ovarian cancer cellsAchuth Padmanabhan, Nicholes Candelaria, Kwong-Kwok Wong, et al.
Pageof 2

Showing results (1-10 of 11) with videos related to

Sort By:
Pageof 2
The Journal of Biological Chemistry|March 19, 2013
Protein kinase A regulates MYC protein through transcriptional and post-translational mechanisms in a catalytic subunit isoform-specific mannerAchuth Padmanabhan, Xiang Li, Charles J Bieberich
Gynecologic Oncology|September 2, 2025
Biology of ovarian cancer: Models, microenvironment, and therapeutics: 15th Biennial Rivkin Center Ovarian Cancer Research SymposiumKatherine B Chiappinelli, Elizabeth L Christie, Achuth Padmanabhan
Cell Reports|March 22, 2016
Assembly of an Evolutionarily Conserved Alternative Proteasome Isoform in Human CellsAchuth Padmanabhan, Simone Anh-Thu Vuong, Mark Hochstrasser
Journal of Cellular Biochemistry|November 7, 2012
Stabilization of the prostate-specific tumor suppressor NKX3.1 by the oncogenic protein kinase Pim-1 in prostate cancer cellsAchuth Padmanabhan, Eliza B Gosc, Charles J Bieberich
The Prostate|February 5, 2016
Regulating NKX3.1 stability and function: Post-translational modifications and structural determinantsAchuth Padmanabhan, Varsha Rao, Angelo M De Marzo, et al.
Journal of Visualized Experiments : Jove|June 8, 2026
Clinically Relevant Transplantable Tumor Models for Studying Metastatic Ovarian Cancer and Therapeutic Response in MouseMegha J Pandya, Fatimah Alfaran, Ayokunnumi Ogunsanya, et al.
Applied Surface Science|February 12, 2020
Zinc Oxide nanoparticles induce oxidative and proteotoxic stress in ovarian cancer cells and trigger apoptosis Independent of p53-mutation statusAchuth Padmanabhan, M Kaushik, R Niranjan, et al.
Nature Methods|October 24, 2007
The reverse in-gel kinase assay to profile physiological kinase substratesXiang Li, Bin Guan, Minu K Srivastava, et al.
NPJ Precision Oncology|December 4, 2025
ZNF217 promotes ovarian cancer progression by impacting multiple pivotal steps in the metastatic processKathryn C Wardrup, Jessica Hoffman, Megha J Pandya, et al.
Nature Communications|March 30, 2018
USP15-dependent lysosomal pathway controls p53-R175H turnover in ovarian cancer cellsAchuth Padmanabhan, Nicholes Candelaria, Kwong-Kwok Wong, et al.
Pageof 2