David Somers

Affiliations: 
Ohio State University, Columbus, Columbus, OH 
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"David Somers"
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Xie B, Luo M, Li Q, et al. (2023) NUA positively regulates plant immunity by coordination with ESD4 to deSUMOylate TPR1 in Arabidopsis. The New Phytologist
Cha JY, Kim J, Jeong SY, et al. (2022) The Na/H antiporter SALT OVERLY SENSITIVE 1 regulates salt compensation of circadian rhythms by stabilizing GIGANTEA in . Proceedings of the National Academy of Sciences of the United States of America. 119: e2207275119
Pay ML, Kim DW, Somers DE, et al. (2022) Modelling of plant circadian clock for characterizing hypocotyl growth under different light quality conditions. In Silico Plants. 4: diac001
Yan J, Li S, Kim YJ, et al. (2021) TOC1 clock protein phosphorylation controls complex formation with NF-YB/C to repress hypocotyl growth. The Embo Journal. e108684
Lim R, Chae J, Somers DE, et al. (2021) Cost-effective circadian mechanism: rhythmic degradation of circadian proteins spontaneously emerges without rhythmic post-translational regulation. Iscience. 24: 102726
Yan J, Kim YJ, Somers DE. (2021) Post-Translational Mechanisms of Plant Circadian Regulation. Genes. 12
Kim YJ, Somers DE. (2019) Luciferase-Based Screen for Post-translational Control Factors in the Regulation of the Pseudo-Response Regulator PRR7. Frontiers in Plant Science. 10: 667
Jo HH, Kim YJ, Kim JK, et al. (2018) Waveforms of molecular oscillations reveal circadian timekeeping mechanisms. Communications Biology. 1: 207
Jo HH, Kim YJ, Kim JK, et al. (2018) Waveforms of molecular oscillations reveal circadian timekeeping mechanisms. Communications Biology. 1: 207
Ritter A, Iñigo S, Fernández-Calvo P, et al. (2017) The transcriptional repressor complex FRS7-FRS12 regulates flowering time and growth in Arabidopsis. Nature Communications. 8: 15235
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