Vitisin B rejuvenates senescence via WBP2NL regulation

  • Yoon, Jee Hee
  • Lee, Yun Haeng
  • Oh, Sekyung
  • Lee, Kyeong Seon
  • Park, Ji Ho
  • ... Lee, Ki Yong
  • 외 7명
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초록

One of the main factors contributing to aging is reactive oxygen species (ROS), which are produced by dysfunctional mitochondria. Reducing ROS generation is considered an essential treatment for senescence, but no effective treatment has been developed yet. In this study, vitisin B, a tetramer of resveratrol, was found to be an efficient reagent that reduces mitochondrial ROS generation after screening phenylpropanoids (PPs), metabolites produced to overcome ROS-mediated stress in plants. Vitisin B induced mitochondrial functional recovery by activating mitophagy and removing dysfunctional mitochondria. Mitochondrial functional recovery by vitisin B decreased mitochondrial ROS, a by-product generated from dysfunctional mitochondria. In addition, ROS reduction by vitisin B restored senescence-associated phenotypes. RNA sequencing identified WBP2 NTerminal Like (WBP2NL) as a gene essential for vitisin B-mediated senescence rejuvenation. Knockdown of WBP2NL exhibited effects similar to those of vitisin B, reducing mitochondrial ROS generation and consequently reversing senescence-associated phenotypes. This study elucidates a novel mechanism by which vitisin B reverses senescence by lowering mitochondrial ROS generation. This discovery opens the way to new therapeutic options to control aging by modulating mitochondrial ROS production.

키워드

ROSSenescence rejuvenationVitisin BWBP2NLMITOCHONDRIARESVERATROLFIBROBLASTSAUTOPHAGYTARGET
제목
Vitisin B rejuvenates senescence via WBP2NL regulation
저자
Yoon, Jee HeeLee, Yun HaengOh, SekyungLee, Kyeong SeonPark, Ji HoLee, Yoo JinSo, ByeonghyeonKim, DuyeolKim, MinseonKwon, Hyung WookByun, YoungjooLee, Ki YongPark, Joon Tae
DOI
10.1016/j.mad.2026.112159
발행일
2026-04
유형
Article
저널명
Mechanisms of Ageing and Development
230