Antioxidant Supplement Inhibits Skeletal Muscle Constitutive Autophagy rather than Fasting-Induced Autophagy in Mice
OXIDATIVE MEDICINE AND CELLULAR LONGEVITY
Authors: Qi, Zhengtang; He, Qiang; Ji, Liu; Ding, Shuzhe
Abstract
In this study, we tested the hypothesis that NAC administration leads to reduced oxidative stress and thus to decreased expression of autophagy markers in young mice. Our results reveal that NAC administration results in reduced muscle mRNA levels of several autophagy markers, including Beclin-1, Atg7, LC3, Atg9, and LAMP2. However, NAC supplement fails to block the activation of skeletal muscle autophagy in response to fasting, because fasting significantly increases the mRNA level of several autophagy markers and LC3 lipidation. We further examined the effects of NAC administration on mitochondrial antioxidant capacity in fed and 24-hour fasted mice. Our results clearly show that NAC administration depresses the expression of manganese superoxide dismutase (MnSOD) and TP53-induced glycolysis and apoptosis regulator (TIGAR), both of which play a predominant antioxidant role in mitochondria by reducing ROS level. In addition, we found no beneficial effect of NAC supplement on muscle mass but it can protect from muscle loss in response to fasting. Collectively, our findings indicate that ROS is required for skeletal muscle constitutive autophagy, rather than starvation-induced autophagy, and that antioxidant NAC inhibits constitutive autophagy by the regulation of mitochondrial ROS production and antioxidant capacity.
HIF-1 alpha regulates IL-1 beta and IL-17 in sarcoidosis
ELIFE
Authors: Talreja, Jaya; Talwar, Harvinder; Bauerfeld, Christian; Grossman, Lawrence, I; Zhang, Kezhong; Tranchida, Paul; Samavati, Lobelia
Abstract
Sarcoidosis is a complex systemic granulomatous disease of unknown etiology characterized by the presence of activated macrophages and Th1/Th17 effector cells. Data mining of our RNA-Seq analysis of CD14(+) monocytes showed enrichment for metabolic and hypoxia inducible factor (HIF) pathways in sarcoidosis. Further investigation revealed that sarcoidosis macrophages and monocytes exhibit higher protein levels for HIF-alpha isoforms, HIF-1 beta, and their transcriptional co-activator p300 as well as glucose transporter 1 (Glut1). In situ hybridization of sarcoidosis granulomatous lung tissues showed abundance of HIF-1 alpha in the center of granulomas. The abundance of HIF isoforms was mechanistically linked to elevated IL-1 beta and IL-17 since targeted down regulation of HIF-1 alpha via short interfering RNA or a HIF-1 alpha inhibitor decreased their production. Pharmacological intervention using chloroquine, a lysosomal inhibitor, decreased lysosomal associated protein 2 (LAMP2) and HIF-1 alpha levels and modified cytokine production. These data suggest that increased activity of HIF-alpha isoforms regulate Th1/Th17 mediated inflammation in sarcoidosis.