Structure-activity relationship studies of pyrogallol as a calcineurin/NFAT signaling suppressor

Previously, we have shown that pyrogallol alleviated nasal symptoms and suppressed IL-9 gene up-regulation in allergy model rats by inhibiting calcineurin/NFAT signaling. As pyrogallol has antioxidative activity, it may be responsible for inhibiting calcineurin/NFAT signaling-mediated IL-9 gene expr...

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Veröffentlicht in:Journal of pharmacological sciences 2024-08, Vol.155 (4), p.140-147
Hauptverfasser: Mizuguchi, Hiroyuki, Ito, Tomohira, Nishida, Kohei, Wakugawa, Tomoharu, Nakano, Tomohiro, Tanabe, Akie, Watano, Tomokazu, Kitamura, Noriko, Kaminuma, Osamu, Kimura, Katsunori, Ishida, Tatsuya, Matsunaga, Atsushi, Ohta, Kazumi, Shimono, Rina, Kutsuna, Haruo, Yasuda, Taiei, Yabumoto, Masami, Kitamura, Yoshiaki, Takeda, Noriaki, Fukui, Hiroyuki
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Sprache:eng
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Zusammenfassung:Previously, we have shown that pyrogallol alleviated nasal symptoms and suppressed IL-9 gene up-regulation in allergy model rats by inhibiting calcineurin/NFAT signaling. As pyrogallol has antioxidative activity, it may be responsible for inhibiting calcineurin/NFAT signaling-mediated IL-9 gene expression. However, the relationship between antioxidative activity and suppression of IL-9 gene expression has not been elucidated yet. Here, we conducted the structure-activity relationship studies of pyrogallol and its structurally related compounds to understand the mechanism of IL-9 gene suppression by pyrogallol. 2, 2-Diphenyl-1-picrylhydrazyl radical scavenging assay showed that the antioxidative activity of catechol, resorcinol, phloroglucinol, and gallic acid is 60.1%, 10.4%, 18.8%, and 113.5% of pyrogallol, respectively. Catechol, resorcinol, and phloroglucinol did not suppress NFAT dephosphorylation. Gallic acid suppressed dephosphorylation of NFAT. Gallic acid also suppressed ionomycin-induced up-regulation of IL-9 gene expression with the IC50 value of 82.6 μM. However, catechol, resorcinol and phloroglucinol showed no suppressive activity. In addition, using gallic acid-immobilized beads, we isolated and identified Poly(U)-binding-splicing factor 60 (PUF60) as a pyrogallol binding protein. These results suggest that the antioxidative activity of pyrogallol is not likely to be the mechanism of IL-9 gene suppression. Data also suggest that PUF60 is one of its target molecules responsible for the suppression of calcineurin/NFAT signaling by pyrogallol.
ISSN:1347-8613
1347-8648
DOI:10.1016/j.jphs.2024.06.002