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Junko Ohkanda

Explore the profile of Junko Ohkanda including associated specialties, affiliations and a list of published articles. Areas
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Articles 38
Citations 378
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Recent Articles
1.
Kinoshita S, Taki K, Okamoto F, Nomoto M, Takahashi K, Hayashi Y, et al.
Plant J . 2025 Feb; 121(3):e70034. PMID: 39918907
Plant cell growth requires the elongation of cells mediated by cell wall remodelling and turgor pressure changes. The plasma membrane (PM) H-ATPase facilitates both cell wall loosening and turgor pressure...
2.
Kiriyama H, Kinoshita S, Hayashi Y, Honda R, Kasuga S, Kinoshita T, et al.
Sci Rep . 2024 Oct; 14(1):23431. PMID: 39379425
Fusicoccin-A (FC-A) is a diterpene glucoside produced by a pathogenic fungus. Since its discovery, FC-A has been widely recognized as a phytotoxin that induces stomatal opening and leaf wilting, eventually...
3.
Yamanaka K, Inoue Y, Imanishi M, Ohkanda J
Bioorg Med Chem Lett . 2023 Dec; 98:129588. PMID: 38086467
In vitro screening of a focused library of compounds containing an electrophilic warhead identified N-chloroacetyl-bis(trifluoromethyl)aniline derivative 15 as a potent inhibitor of BMAL1-CLOCK heterodimer binding to an E-box DNA fragment....
4.
Tanaka K, Hatano Y, Ohkanda J
Chemistry . 2023 May; 29(41):e202301059. PMID: 37170712
The 14-3-3 family of proteins is central to the regulation of signaling pathways driven by serine/threonine kinases. In humans, 14-3-3 consists of seven highly conserved isoforms, yet the function of...
5.
Ogino N, Masuda R, Lynn Punzalan L, Yamashita E, Igaue S, Inoue Y, et al.
Bioorg Med Chem . 2022 Oct; 73:117020. PMID: 36182801
The diterpene glucoside fusicoccin-A (FC-A) is a fungal phytotoxin that stabilizes the interaction of plant 14-3-3 protein and plasma membrane H-ATPase by forming a stable ternary complex. Previous studies demonstrated...
6.
Kimura N, Saito K, Niwa T, Yamakawa M, Igaue S, Ohkanda J, et al.
Protein Expr Purif . 2022 Mar; 195-196:106089. PMID: 35307559
The kinase DYRK1A phosphorylates substrate proteins that are involved in the progression of many diseases. DYRK1A also phosphorylates its own residues on key elements intramolecularly to activate and stabilize itself...
7.
Nagaoka Y, Parvatkar P, Hirai G, Ohkanda J
Bioorg Med Chem Lett . 2021 Jul; 48:128265. PMID: 34273487
Cdc25B phosphatase catalyzes the dephosphorylation and activation of cyclin-dependent kinases 2 (CDK2/CycA) and their overexpression has been reported in cancers. Although Cdc25B has received much attention as a drug target,...
8.
Hosoya Y, Ohkanda J
Molecules . 2021 Apr; 26(8). PMID: 33917117
Intrinsically disordered proteins (IDPs) are critical players in the dynamic control of diverse cellular processes, and provide potential new drug targets because their dysregulation is closely related to many diseases....
9.
Hosoya Y, Nojo W, Kii I, Suzuki T, Imanishi M, Ohkanda J
Chem Commun (Camb) . 2020 Sep; 56(76):11203-11206. PMID: 32969426
Essential components of the human circadian clock, BMAL1 and CLOCK, which are intrinsically disordered transcription factors, were expressed and subjected to a fluorescent in vitro binding assay using an E-box...
10.
Masuda R, Kawasaki Y, Igawa K, Manabe Y, Fujii H, Kato N, et al.
Chem Asian J . 2020 Feb; 15(6):742-747. PMID: 32017414
Mid-sized molecules have emerged as an attractive chemical space and potentially provide a robust basis for the development of synthetic agents to control intracellular protein interactions. However, the limited cell...