4.7 Article

Aging Induces Hepatic Oxidative Stress and Nuclear Proteomic Remodeling in Liver from Wistar Rats

Journal

ANTIOXIDANTS
Volume 10, Issue 10, Pages -

Publisher

MDPI
DOI: 10.3390/antiox10101535

Keywords

oxidative stress; aging; aging-associated chronic diseases; liver proteome; RNA splicing

Funding

  1. Ministerio de Ciencia, Innovacion y Universidades, Spain [RTI2018-098643-B-I00]
  2. European Regional Development Fund (MCIU/AEI/FEDER, UE)
  3. Institutional Aids [GI20174021, 2019-GRIN-26992]

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Aging is a universal and irreversible process that results in loss of adaptability. Prolonged fasting has a significant impact on lipid peroxidation in the liver of old rats, associated with downregulation of antioxidant genes and alterations in RNA splicing at the nuclear proteome level.
Aging is a continuous, universal, and irreversible process that determines progressive loss of adaptability. The liver is a critical organ that supports digestion, metabolism, immunity, detoxification, vitamin storage, and hormone signaling. Nevertheless, the relationship between aging and the development of liver diseases remains elusive. In fact, although prolonged fasting in adult rodents and humans delays the onset of the disease and increases longevity, whether prolonged fasting could exert adverse effects in old organisms remains incompletely understood. In this work, we aimed to characterize the oxidative stress and nuclear proteome in the liver of 3-month- and 24-month-old male Wistar rats upon 36 h of fasting and its adaptation in response to 30 min of refeeding. To this end, we analyzed the hepatic lipid peroxidation levels (TBARS) and the expression levels of genes associated with fat metabolism and oxidative stress during aging. In addition, to gain a better insight into the molecular and cellular processes that characterize the liver of old rats, the hepatic nuclear proteome was also evaluated by isobaric tag quantitation (iTRAQ) mass spectrometry-based proteomics. In old rats, aging combined with prolonged fasting had great impact on lipid peroxidation in the liver that was associated with a marked downregulation of antioxidant genes (Sod2, Fmo3, and Cyp2C11) compared to young rats. Besides, our proteomic study revealed that RNA splicing is the hepatic nuclear biological process markedly affected by aging and this modification persists upon refeeding. Our results suggest that aged-induced changes in the nuclear proteome could affect processes associated with the adaptative response to refeeding after prolonged fasting, such as those involved in the defense against oxidative stress.

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