Mitsuhiro Tsuchiya

Chemistry Western Washington University, Bellingham, WA, United States 
"Mitsuhiro Tsuchiya"
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Lee MB, Kiflezghi MG, Tsuchiya M, et al. (2021) Pterocarpus marsupium extract extends replicative lifespan in budding yeast. Geroscience
Maitra N, He C, Blank HM, et al. (2020) Translational control of one-carbon metabolism underpins ribosomal protein phenotypes in cell division and longevity. Elife. 9
Crane MM, Tsuchiya M, Blue BW, et al. (2019) Rb analog Whi5 regulates G1 to S transition and cell size but not replicative lifespan in budding yeast. Translational Medicine of Aging. 3: 104-108
Sanchez JC, Ollodart A, Large CRL, et al. (2019) Phenotypic and Genotypic Consequences of CRISPR/Cas9 Editing of the Replication Origins in the rDNA of . Genetics
Tada T, Uechi K, Nakasone I, et al. (2018) A hemin auxotrophic Enterobacter cloacae clinical isolate with increased resistance to carbapenems and aminoglycosides. Journal of Medical Microbiology. 67: 29-32
Tada T, Nhung PH, Shimada K, et al. (2017) Emergence of colistin-resistant Escherichia coli clinical isolates harboring mcr-1 in Vietnam. International Journal of Infectious Diseases : Ijid : Official Publication of the International Society For Infectious Diseases
Tada T, Tsuchiya M, Shimada K, et al. (2017) Dissemination of Carbapenem-resistant Klebsiella pneumoniae clinical isolates with various combinations of Carbapenemases (KPC-2, NDM-1, NDM-4, and OXA-48) and 16S rRNA Methylases (RmtB and RmtC) in Vietnam. Bmc Infectious Diseases. 17: 467
Tada T, Nhung PH, Miyoshi-Akiyama T, et al. (2016) Multidrug-resistant ST235 Pseudomonas aeruginosa clinical isolates producing IMP-26 with increased carbapenem hydrolyzing activities in Vietnam. Antimicrobial Agents and Chemotherapy
McCormick MA, Delaney JR, Tsuchiya M, et al. (2015) A Comprehensive Analysis of Replicative Lifespan in 4,698 Single-Gene Deletion Strains Uncovers Conserved Mechanisms of Aging. Cell Metabolism
Yang J, McCormick MA, Zheng J, et al. (2015) Systematic analysis of asymmetric partitioning of yeast proteome between mother and daughter cells reveals "aging factors" and mechanism of lifespan asymmetry. Proceedings of the National Academy of Sciences of the United States of America. 112: 11977-82
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