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Genes & Genetic Systems|December 1, 2015
SOG1: a master regulator of the DNA damage response in plantsKaoru Okamoto YoshiyamaBiology|May 17, 2014
DNA damage response in plants: conserved and variable response compared to animalsKaoru Okamoto Yoshiyama, Kengo Sakaguchi, Seisuke KimuraPhotochemical & Photobiological Sciences : Official Journal of the European Photochemistry Association and the European Society for Photobiology|November 4, 2021
222 nm ultraviolet radiation C causes more severe damage to guard cells and epidermal cells of Arabidopsis plants than does 254 nm ultraviolet radiationMomo Otake, Kaoru Okamoto Yoshiyama, Hiroko Yamaguchi, et al.The Plant Cell|December 7, 2017
Increased Phosphorylation of Ser-Gln Sites on SUPPRESSOR OF GAMMA RESPONSE1 Strengthens the DNA Damage Response in <i>Arabidopsis thaliana</i>Kaoru Okamoto Yoshiyama, Kaori Kaminoyama, Tomoaki Sakamoto, et al.Plos One|January 31, 2023
222 nm far-UVC efficiently introduces nerve damage in Caenorhabditis elegansKaoru Okamoto Yoshiyama, Norihiko L Okamoto, Jun Hidema, et al.Plant Physiology|February 12, 2024
Poaceae plants transfer cyclobutane pyrimidine dimer photolyase to chloroplasts for ultraviolet-B resistanceMomo Otake, Mika Teranishi, Chiharu Komatsu, et al.Plant Molecular Biology|April 12, 2020
SUPPRESSOR OF GAMMA RESPONSE 1 acts as a regulator coordinating crosstalk between DNA damage response and immune response in Arabidopsis thalianaKaoru Okamoto Yoshiyama, Naoki Aoshima, Naoki Takahashi, et al.The Plant Journal : for Cell and Molecular Biology|February 13, 2018
Identifying the target genes of SUPPRESSOR OF GAMMA RESPONSE 1, a master transcription factor controlling DNA damage response in ArabidopsisNobuo Ogita, Yoko Okushima, Mutsutomo Tokizawa, et al.The Plant Cell|January 9, 2014
The Arabidopsis SIAMESE-RELATED cyclin-dependent kinase inhibitors SMR5 and SMR7 regulate the DNA damage checkpoint in response to reactive oxygen speciesDalong Yi, Claire Lessa Alvim Kamei, Toon Cools, et al.The Plant Cell|April 1, 2021
Arabidopsis casein kinase 2 triggers stem cell exhaustion under Al toxicity and phosphate deficiency through activating the DNA damage response pathwayPengliang Wei, Manon Demulder, Pascale David, et al.Pageof 1