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Molecular Biology of the Cell|July 26, 2018
A minimal "push-pull" bistability model explains oscillations between quiescent and proliferative cell statesSandeep Krishna, Sunil LaxmanElife|June 27, 2019
Metabolic constraints drive self-organization of specialized cell groupsSriram Varahan, Adhish Walvekar, Vaibhhav Sinha, et al.Elife|September 3, 2020
Resource plasticity-driven carbon-nitrogen budgeting enables specialization and division of labor in a clonal communitySriram Varahan, Vaibhhav Sinha, Adhish Walvekar, et al.Journal of the Indian Institute of Science|November 28, 2017
Conceptualizing Eukaryotic Metabolic Sensing and SignalingSunil LaxmanElife|February 5, 2021
Cycles, sources, and sinks: Conceptualizing how phosphate balance modulates carbon flux using yeast metabolic networksRitu Gupta, Sunil LaxmanCurrent Opinion in Chemical Biology|July 25, 2026
Lighting up mitochondrial membranes: Reading and writing the physical state of the inner mitochondrial membraneGaurav Singh, Sunil LaxmanBio-Protocol|March 18, 2020
Steady-state and Flux-based Trehalose Estimation as an Indicator of Carbon Flow from Gluconeogenesis or GlycolysisRitu Gupta, Sunil LaxmanCurrent Genetics|November 24, 2019
tRNA wobble-uridine modifications as amino acid sensors and regulators of cellular metabolic stateRitu Gupta, Sunil LaxmanGenetics|December 1, 2021
Bend or break: how biochemically versatile molecules enable metabolic division of labor in clonal microbial communitiesSriram Varahan, Sunil LaxmanJournal of Cell Science|December 17, 2015
Decoding the stem cell quiescence cycle--lessons from yeast for regenerative biologyJyotsna Dhawan, Sunil LaxmanPageof 15