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Frontiers in Physiology|May 2, 2022
Rotavirus-Induced Lipid Droplet Biogenesis Is Critical for Virus ReplicationJeanette M Criglar, Mary K Estes, Sue E CrawfordVirus Research|October 14, 2020
Plasmid-based reverse genetics for probing phosphorylation-dependent viroplasm formation in rotavirusesJeanette M Criglar, Sue E Crawford, Mary K EstesJournal of Virology|October 11, 2019
COPII Vesicle Transport Is Required for Rotavirus NSP4 Interaction with the Autophagy Protein LC3 II and Trafficking to ViroplasmsSue E Crawford, Jeanette M Criglar, Zheng Liu, et al.Journal of Virology|May 29, 2020
A Genetically Engineered Rotavirus NSP2 Phosphorylation Mutant Impaired in Viroplasm Formation and Replication Shows an Early Interaction between vNSP2 and Cellular Lipid DropletsJeanette M Criglar, Sue E Crawford, Boyang Zhao, et al.Proceedings of the National Academy of Sciences of the United States of America|December 5, 2018
Phosphorylation cascade regulates the formation and maturation of rotaviral replication factoriesJeanette M Criglar, Ramakrishnan Anish, Liya Hu, et al.Journal of Virology|November 8, 2013
A novel form of rotavirus NSP2 and phosphorylation-dependent NSP2-NSP5 interactions are associated with viroplasm assemblyJeanette M Criglar, Liya Hu, Sue E Crawford, et al.Proceedings of the National Academy of Sciences of the United States of America|December 11, 2023
Rotavirus-mediated DGAT1 degradation: A pathophysiological mechanism of viral-induced malabsorptive diarrheaZheng Liu, Hunter Smith, Jeanette M Criglar, et al.Scientific Reports|July 27, 2019
Rotavirus Calcium Dysregulation Manifests as Dynamic Calcium Signaling in the Cytoplasm and Endoplasmic ReticulumAlexandra L Chang-Graham, Jacob L Perry, Alicia C Strtak, et al.Pageof 1