Sanja Roje
Affiliations: | Washington State University, Pullman, WA, United States |
Area:
Molecular Biology, BiochemistryGoogle:
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Children
Sign in to add traineeKehan Sun | grad student | 2012 | WSU |
Zhaoyang Wei | grad student | 2012 | WSU |
Joseph H. Lynch | grad student | 2013 | WSU |
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Publications
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Rosa-Téllez S, Alcántara-Enguídanos A, Martínez-Seidel F, et al. (2023) The serine-glycine-one carbon metabolic network orchestrates changes in nitrogen and sulfur metabolism and shapes plant development. The Plant Cell |
Saeheng S, Roje S. (2022) Assaying plant formate-tetrahydrofolate ligase with monoglutamylated and polyglutamylated substrates using a fluorescence-HPLC based method. Methods in Enzymology. 680: 85-100 |
Lynch JH, Roje S. (2022) A higher plant FAD synthetase is fused to an inactivated FAD pyrophosphatase. The Journal of Biological Chemistry. 102626 |
Yurgel SN, Johnson SA, Rice J, et al. (2022) A novel formamidase is required for riboflavin biosynthesis in invasive bacteria. The Journal of Biological Chemistry. 102377 |
Lynch JH, Sa N, Saeheng S, et al. (2018) Characterization of a non-nudix pyrophosphatase points to interplay between flavin and NAD(H) homeostasis in Saccharomyces cerevisiae. Plos One. 13: e0198787 |
Wu Z, Ren H, Xiong W, et al. (2018) Methylenetetrahydrofolate Reductase Modulates Methyl Metabolism and Lignin Monomer Methylation in Maize. Journal of Experimental Botany |
Huang XY, Chao DY, Koprivova A, et al. (2016) Nuclear Localised MORE SULPHUR ACCUMULATION1 Epigenetically Regulates Sulphur Homeostasis in Arabidopsis thaliana. Plos Genetics. 12: e1006298 |
Sa N, Rawat R, Thornburg C, et al. (2016) Identification and characterization of the missing phosphatase on the riboflavin biosynthesis pathway in Arabidopsis thaliana. The Plant Journal : For Cell and Molecular Biology |
Hasnain G, Roje S, Sa N, et al. (2016) Bacterial and plant HAD enzymes catalyse a missing phosphatase step in thiamin diphosphate biosynthesis. The Biochemical Journal. 473: 157-66 |
Frelin O, Huang L, Hasnain G, et al. (2015) A directed-overflow and damage-control N-glycosidase in riboflavin biosynthesis Biochemical Journal. 466: 137-145 |