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Methods in Molecular Biology (Clifton, N.J.)|February 11, 2004
RNA unwinding assay for DExD/H-box RNA helicasesStephanie S Tseng-Rogenski, Tien-Hsien ChangWorld Journal of Gastrointestinal Oncology|January 30, 2018
Inflammation-associated microsatellite alterations: Mechanisms and significance in the prognosis of patients with colorectal cancerMinoru Koi, Stephanie S Tseng-Rogenski, John M CarethersGastro Hep Advances|September 24, 2025
Double-Strand Breaks Induce Nuclear-Cytosolic Shuttling of Polymorphic DNA Mismatch Repair Protein MutS Homolog 3 and Binding to NEMO/IKKγ in Colon Cancer CellsStephanie S Tseng-Rogenski, Minoru Koi, John M CarethersGenes|April 4, 2015
EMAST is a Form of Microsatellite Instability That is Initiated by Inflammation and Modulates Colorectal Cancer ProgressionJohn M Carethers, Minoru Koi, Stephanie S Tseng-RogenskiJournal of Cancer|April 27, 2026
Inflammation Drives Phosphorylation and Acetylation of MutS Homolog 3 and Interaction with Cytosolic HDAC6Stephanie S Tseng-Rogenski, Minoru Koi, John M CarethersHuman Molecular Genetics|November 27, 2025
Prevalence of germline MSH3 polymorphisms in ulcerative colitis and early-onset colorectal cancer patients that potentiates inflammation-to-cancer transformationStephanie S Tseng-Rogenski, Anand Venugopal, Minoru Koi, et al.Gastroenterology|December 3, 2014
Interleukin 6 alters localization of hMSH3, leading to DNA mismatch repair defects in colorectal cancer cellsStephanie S Tseng-Rogenski, Yasushi Hamaya, Daniel Y Choi, et al.Cutis|June 26, 2002
Linear porokeratosis with underlying bony abnormalitiesStephanie S Tseng, Eyal K Levit, Isabella Ilarda, et al.Plos One|December 11, 2012
Oxidative stress induces nuclear-to-cytosol shift of hMSH3, a potential mechanism for EMAST in colorectal cancer cellsStephanie S Tseng-Rogenski, Heekyung Chung, Maike B Wilk, et al.NPJ Precision Oncology|January 19, 2024
Compound heterozygous MSH3 germline variants and associated tumor somatic DNA mismatch repair dysfunctionMinoru Koi, Brandie H Leach, Sarah McGee, et al.Pageof 2