The Role of Key Amino Acids of the Human Fe(II)/2OG-Dependent Dioxygenase ALKBH3 in Structural Dynamics and Repair Activity toward Methylated DNA. [PDF]
Kanazhevskaya LY+6 more
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The FvABF3-FvALKBH10B-FvSEP3 cascade regulates fruit ripening in strawberry. [PDF]
Tang R+7 more
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ALKBH1-mediated N6-methyladenosine methylation of TRAF1 promotes osteosarcoma proliferation and metastasis. [PDF]
Wang Z, Fang Y, Yu Y, Pan H.
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グリオブラストーマ治療創薬を目指したヒトAlkB homolog 5酵素活性阻害化合物探索とその阻害作用の解析
This doctoral thesis is related to the following article: Takahashi, H., Hase, H., Yoshida, T., Tashiro, J., Hirade, Y., Kitae, K., & Tsujikawa, K. (2022). Discovery of two novel ALKBH5 selective inhibitors that exhibit uncompetitive or competitive type and suppress the growth activity of glioblastoma multiforme.
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The biological function of demethylase ALKBH1 and its role in human diseases. [PDF]
Zhong J, Xu Z, Ding N, Wang Y, Chen W.
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tRNA modification enzyme-dependent redox homeostasis regulates synapse formation and memory. [PDF]
Madhwani KR+9 more
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Phylogenetic and functional analyses of N6-methyladenosine RNA methylation factors in the wheat scab fungus Fusarium graminearum. [PDF]
Kim H, Hu J, Kang H, Kim W.
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Identification, Characterization, and Ultrastructure Analysis of the Phenol-Degrading Rhodococcus erythropolis 7Ba and Its Viable but Nonculturable Forms. [PDF]
Polivtseva VN+6 more
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RNA modification: a promising code to unravel the puzzle of autoimmune diseases and CD4<sup>+</sup> T cell differentiation. [PDF]
Yu H, Ma Z, Su S, Xu Z, Yi H.
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Insights into the m6A demethylases FTO and ALKBH5 : structural, biological function, and inhibitor development. [PDF]
Gao Z, Zha X, Li M, Xia X, Wang S.
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