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Found 368 results
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2025
Kent A, Mon KJoy Yee, Hutchins Z, Putzel G, Zhigarev D, Grier A, Jia B, Kortlever RM, Barbet G, Evan GI et al..  2025.  A stromal inflammasome Ras safeguard against Myc-driven lymphomagenesis.. Nat Immunol. 26(1):53-67.
Nilson DJ, Schwer B, Almo SC, Shuman S, Ghosh A.  2025.  Structural basis for sensitivity and acquired resistance of fungal cap guanine-N7 methyltransferases to the antifungal antibiotic sinefungin.. Nucleic Acids Res. 53(14)
Krieger IV, Sukheja P, Yang B, Tang S, Selle D, Woods A, Engelhart C, Kumar P, Harbut MB, Liu D et al..  2025.  SuFEx-based antitubercular compound irreversibly inhibits Pks13.. Nature.
Krieger IV, Sukheja P, Yang B, Tang S, Selle D, Woods A, Engelhart C, Kumar P, Harbut MB, Liu D et al..  2025.  SuFEx-based antitubercular compound irreversibly inhibits Pks13.. Nature.
Singh A, Zwerneman LT, Planck K, Kaneko T, Perkowski AJ, Suh CM, Alex A, Bean J, Burns-Huang K, Zhang D et al..  2025.  Thioquinazolinones as Antituberculosis Agents Targeting Phosphopantetheinyl Transferase.. J Med Chem. 68(14):14645-14698.
Singh A, Zwerneman LT, Planck K, Kaneko T, Perkowski AJ, Suh CM, Alex A, Bean J, Burns-Huang K, Zhang D et al..  2025.  Thioquinazolinones as Antituberculosis Agents Targeting Phosphopantetheinyl Transferase.. J Med Chem. 68(14):14645-14698.
Itkin T, Houghton S, Schreiner R, Lin Y, Badwe CR, Voisin V, Murison A, Seyedhassantehrani N, Kaufmann KB, Garcia-Prat L et al..  2025.  Transcriptional activation of regenerative hematopoiesis via microenvironmental sensing.. Nat Immunol. 26(3):378-390.
Itkin T, Houghton S, Schreiner R, Lin Y, Badwe CR, Voisin V, Murison A, Seyedhassantehrani N, Kaufmann KB, Garcia-Prat L et al..  2025.  Transcriptional activation of regenerative hematopoiesis via microenvironmental sensing.. Nat Immunol. 26(3):378-390.
Itkin T, Houghton S, Schreiner R, Lin Y, Badwe CR, Voisin V, Murison A, Seyedhassantehrani N, Kaufmann KB, Garcia-Prat L et al..  2025.  Transcriptional activation of regenerative hematopoiesis via microenvironmental sensing.. Nat Immunol. 26(3):378-390.
Calugaru K, Yu EYoung, Huang S, Gonzalez-Rodriguez N, Coloma J, Lue NF.  2025.  The yeast CST and Polα/primase complexes act in concert to ensure proper telomere maintenance and protection.. Nucleic Acids Res. 53(7)
2024
Ghosh S, Sanchez AM, Schwer B, Prucker I, Jork N, Jessen HJ, Shuman S.  2024.  Activities and genetic interactions of fission yeast Aps1, a Nudix-type inositol pyrophosphatase and inorganic polyphosphatase.. mBio. 15(8):e0108424.
Ghosh S, Dantuluri S, Jacewicz A, Sanchez AM, Abdullahu L, Damha MJ, Schwer B, Shuman S.  2024.  Characterization of tRNA splicing enzymes RNA ligase and tRNA 2'-phosphotransferase from the pathogenic fungi Mucorales.. RNA. 30(4):367-380.
Giardina SF, Valdambrini E, Singh PK, Bacolod MD, Babu-Karunakaran G, Peel M, J Warren D, Barany F.  2024.  Combinatorial Ubiquitination REal-time PROteolysis (CURE-PROs): A Modular Platform for Generating Reversible, Self-Assembling Bifunctional Targeted Degraders.. J Med Chem. 67(7):5473-5501.
Grigsby SJ, Prasad GVRKrishn, Wallach JB, Mittal E, Hsu F-F, Schnappinger D, Philips JA.  2024.  CpsA mediates infection of recruited lung myeloid cells by Mycobacterium tuberculosis.. Cell Rep. 43(1):113607.
Ahmed A, Joseph AM, Zhou J, Horn V, Uddin J, Lyu M, Goc J, Sockolow RE, Wing JB, Vivier E et al..  2024.  CTLA-4-expressing ILC3s restrain interleukin-23-mediated inflammation.. Nature. 630(8018):976-983.
Garg A, Sanchez AM, Schwer B, Shuman S.  2024.  Factors governing the transcriptome changes and chronological lifespan of fission yeast during phosphate starvation.. J Biol Chem. 300(3):105718.
Bednor L, Sanchez AM, Garg A, Shuman S, Schwer B.  2024.  Genetic suppressor screen identifies Tgp1 (glycerophosphocholine transporter), Kcs1 (IP6 kinase), and Plc1 (phospholipase C) as determinants of inositol pyrophosphate toxicosis in fission yeast.. mBio. 15(2):e0306223.
Caniels TG, Medina-Ramírez M, Zhang S, Kratochvil S, Xian Y, Koo J-H, Derking R, Samsel J, van Schooten J, Pecetta S et al..  2024.  Germline-targeting HIV vaccination induces neutralizing antibodies to the CD4 binding site.. Sci Immunol. 9(98):eadk9550.
Caniels TG, Medina-Ramírez M, Zhang S, Kratochvil S, Xian Y, Koo J-H, Derking R, Samsel J, van Schooten J, Pecetta S et al..  2024.  Germline-targeting HIV vaccination induces neutralizing antibodies to the CD4 binding site.. Sci Immunol. 9(98):eadk9550.
Alwine J, Goodrum F, Banfield B, Bloom D, Britt WJ, Broadbent AJ, Campos SK, Casadevall A, Chan GC, Cliffe AR et al..  2024.  The harms of promoting the lab leak hypothesis for SARS-CoV-2 origins without evidence.. J Virol. 98(9):e0124024.
Alwine J, Goodrum F, Banfield B, Bloom D, Britt WJ, Broadbent AJ, Campos SK, Casadevall A, Chan GC, Cliffe AR et al..  2024.  The harms of promoting the lab leak hypothesis for SARS-CoV-2 origins without evidence.. J Virol. 98(9):e0124024.
Alwine J, Goodrum F, Banfield B, Bloom D, Britt WJ, Broadbent AJ, Campos SK, Casadevall A, Chan GC, Cliffe AR et al..  2024.  The harms of promoting the lab leak hypothesis for SARS-CoV-2 origins without evidence.. J Virol. 98(9):e0124024.
Alwine J, Goodrum F, Banfield B, Bloom D, Britt WJ, Broadbent AJ, Campos SK, Casadevall A, Chan GC, Cliffe AR et al..  2024.  The harms of promoting the lab leak hypothesis for SARS-CoV-2 origins without evidence.. J Virol. 98(9):e0124024.
Alwine J, Goodrum F, Banfield B, Bloom D, Britt WJ, Broadbent AJ, Campos SK, Casadevall A, Chan GC, Cliffe AR et al..  2024.  The harms of promoting the lab leak hypothesis for SARS-CoV-2 origins without evidence.. J Virol. 98(9):e0124024.
Alwine J, Goodrum F, Banfield B, Bloom D, Britt WJ, Broadbent AJ, Campos SK, Casadevall A, Chan GC, Cliffe AR et al..  2024.  The harms of promoting the lab leak hypothesis for SARS-CoV-2 origins without evidence.. J Virol. 98(9):e0124024.