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Multiple Mechanisms Converging on Transcription Factor EB Activation by the Natural Phenol Pterostilbene

Academic Article
Publication Date:
2021
abstract:
Pterostilbene (Pt) is a potentially beneficial plant phenol. In contrast to many other natural compounds (including the more celebrated resveratrol), Pt concentrations producing significant effects in vitro can also be reached with relative ease in vivo. Here we focus on some of the mechanisms underlying its activity, those involved in the activation of Transcription Factor EB (TFEB). A set of processes leading to this outcome starts with the generation of ROS, attributed to the interaction of Pt with complex I of the mitochondrial respiratory chain, and spreads to involve Ca2+ mobilization from the ER/mitochondria pool, activation of CREB and AMPK, inhibition of mTORC1. TFEB migration to the nucleus results in the upregulation of autophagy and lysosomal and mitochondrial biogenesis. Cells exposed to several-µM levels of Pt experience a mitochondrial crisis, an indication for using low doses in therapeutic or nutraceutical applications. Pt afforded significant functional improvements in a zebrafish embryo model of ColVI-related myopathy, a pathology which also involves defective autophagy. Furthermore, long-term supplementation with Pt reduced body weight gain and increased transcription levels of Ppargc1a and Tfeb in a mouse model of diet-induced obesity. These in vivo findings strengthen the in vitro observations and highlight the therapeutic potential of this natural compound.
Iris type:
01.01 Articolo in rivista
Keywords:
Pterostilbene; TFEB; autophagy; mitochondria; Reactive Oxygen Species; calcium
List of contributors:
DI BENEDETTO, Giulietta; Biasutto, Lucia; Zoratti, Mario
Authors of the University:
BIASUTTO LUCIA
DI BENEDETTO GIULIETTA
Handle:
https://iris.cnr.it/handle/20.500.14243/440729
Published in:
OXIDATIVE MEDICINE AND CELLULAR LONGEVITY (ONLINE)
Journal
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