Effect of Kaempferol on Modulation of Vascular Contractility Mainly through PKC and CPI-17 Inactivation
Effect of Kaempferol on Modulation of Vascular Contractility Mainly through PKC and CPI-17 Inactivation
  • Yoon Hyuk-Jun
  • Moon Heui Woong
  • Min Young Sil
  • Jin Fanxue
  • Bang Joon Seok
  • 외 2명
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초록

In this study, we investigated the efficacy of kaempferol (a flavonoid found in plants and plant-derived foods such as kale, beans, tea, spinach and broccoli) on vascular contractibility and aimed to clarify the detailed mechanism underlying the relaxation. Isometric contractions of divested muscles were stored and linked with western blot analysis which was carried out to estimate the phosphorylation of myosin phosphatase targeting subunit 1 (MYPT1) and phosphorylation-dependent inhibitory protein for myosin phosphatase (CPI-17) and to estimate the effect of kaempferol on the RhoA/ROCK/CPI-17 pathway. Kaempferol conspicuously impeded phorbol ester-, fluoride- and a thromboxane mimetic-derived contractions regardless of endothelial nitric oxide synthesis, indicating its direct effect on smooth muscles. It also conspicuously impeded the fluoride-derived elevation in phospho-MYPT1 rather than phospho-CPI-17 levels and phorbol 12,13-dibutyrate-derived increase in phospho-CPI-17 and phospho-ERK1/2 levels, suggesting the depression of PKC and MEK activities and subsequent phosphorylation of CPI-17 and ERK1/2. Taken together, these outcomes suggest that kaempferol-derived relaxation incorporates myosin phosphatase retrieval and calcium desensitization, which appear to be modulated by CPI-17 dephosphorylation mainly through PKC inactivation.

키워드

CPI-17FluorideKaempferolMYPT1Phorbol esterPKCLIGHT-CHAIN PHOSPHATASESMOOTH-MUSCLERHO-KINASECA2+ SENSITIZATIONTARGET SUBUNIT-1MYOSINPHOSPHORYLATIONACTIVATIONMYPT1PROTEIN
제목
Effect of Kaempferol on Modulation of Vascular Contractility Mainly through PKC and CPI-17 Inactivation
제목 (타언어)
Effect of Kaempferol on Modulation of Vascular Contractility Mainly through PKC and CPI-17 Inactivation
저자
Yoon Hyuk-JunMoon Heui WoongMin Young SilJin FanxueBang Joon SeokSohn Uy DongJe Hyun Dong
DOI
10.4062/biomolther.2023.186
발행일
2024-05
유형
Article
저널명
Biomolecules & Therapeutics
32
3
페이지
361 ~ 367