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Bioinformation|September 5, 2020
Predicted peptide patterns from the SARS-CoV-2 proteome for MS-MS based diagnosisSaketh Kapoor, Pratigya SubbaOmics : a Journal of Integrative Biology|December 9, 2021
Plant Phosphoproteomics: Known Knowns, Known Unknowns, and Unknown Unknowns of an Emerging Systems Science FrontierPratigya Subba, Thottethodi Subrahmanya Keshava PrasadOmics : a Journal of Integrative Biology|September 28, 2021
Protein Crotonylation Expert Review: A New Lens to Take Post-Translational Modifications and Cell Biology to New HeightsPratigya Subba, Thottethodi Subrahmanya Keshava PrasadStem Cell Reviews and Reports|March 20, 2021
Sca1+ Progenitor Cells (Ex vivo) Exhibits Differential Proteomic Signatures From the Culture Adapted Sca1+ Cells (In vitro), Both Isolated From Murine Skeletal Muscle TissueSaketh Kapoor, Pratigya Subba, Sudheer Shenoy P, et al.Omics : a Journal of Integrative Biology|April 23, 2019
Plant Proteome Databases and Bioinformatic Tools: An Expert Review and Comparative InsightsPratigya Subba, Chinmaya Narayana Kotimoole, Thottethodi Subrahmanya Keshava PrasadScientific Reports|March 1, 2014
Membrane-associated proteomics of chickpea identifies Sad1/UNC-84 protein (CaSUN1), a novel component of dehydration signalingDinesh Kumar Jaiswal, Poonam Mishra, Pratigya Subba, et al.The Plant Journal : for Cell and Molecular Biology|July 4, 2024
Wheat TaNACα18 functions as a positive regulator of high-temperature adaptive responses and improves cell defense machineryDivya Mishra, Shubhendu Shekhar, Pratigya Subba, et al.Journal of Proteomics|April 22, 2014
Nuclear phosphoproteome of developing chickpea seedlings (Cicer arietinum L.) and protein-kinase interaction networkRajiv Kumar, Amit Kumar, Pratigya Subba, et al.Journal of Proteome Research|October 3, 2013
Phosphoproteomic dynamics of chickpea (Cicer arietinum L.) reveals shared and distinct components of dehydration responsePratigya Subba, Pragya Barua, Rajiv Kumar, et al.Journal of Applied Microbiology|March 9, 2022
Metabolite profiling reveals overexpression of the global regulator, MoLAEA leads to increased synthesis of metabolites in Magnaporthe oryzaePratigya Subba, Pallabi Saha, Gayathree Karthikkeyan, et al.Pageof 3