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Nature Communications|January 16, 2021
Pore-forming Esx proteins mediate toxin secretion by Mycobacterium tuberculosisUday Tak, Terje Dokland, Michael NiederweisBiorxiv : the Preprint Server for Biology|August 7, 2023
Bacterial cGAS-like enzymes produce 2',3'-cGAMP to activate an ion channel that restricts phage replicationUday Tak, Peace Walth, Aaron T WhiteleyNature Communications|November 16, 2021
Toxin secretion and trafficking by Mycobacterium tuberculosisDavid Pajuelo, Uday Tak, Lei Zhang, et al.Cell Reports|July 12, 2018
NAD+ Depletion Triggers Macrophage Necroptosis, a Cell Death Pathway Exploited by Mycobacterium tuberculosisDavid Pajuelo, Norberto Gonzalez-Juarbe, Uday Tak, et al.Cell Host & Microbe|March 28, 2026
Bacterial 2',3'-cGAMP activates a SAVED effector to form membrane-disrupting filaments and restrict phage replicationUday Tak, Kate Schinkel, Peace Walth, et al.Plos Pathogens|December 6, 2021
A type VII secretion system in Group B Streptococcus mediates cytotoxicity and virulenceBrady L Spencer, Uday Tak, Jéssica C Mendonça, et al.The Journal of Biological Chemistry|December 30, 2018
The tuberculosis necrotizing toxin is an NAD+ and NADP+ glycohydrolase with distinct enzymatic propertiesUday Tak, Jiri Vlach, Acely Garza-Garcia, et al.Nature Communications|December 11, 2025
An antimicrobial daptide from human skin commensal Staphylococcus hominis protects against skin pathogensAmber Nguyen, Zoie L Bunch, Ingrid Y Martinez-Aldino, et al.Biorxiv : the Preprint Server for Biology|April 8, 2025
A minimal CRISPR polymerase produces decoy cyclic nucleotides to detect phage anti-defense proteinsAshley E Sullivan, Ali Nabhani, Kate Schinkel, et al.Nature|October 1, 2025
The Panoptes system uses decoy cyclic nucleotides to defend against phageAshley E Sullivan, Ali Nabhani, Daniel S Izrailevsky, et al.Pageof 1