Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

MAVS maintains mitochondrial homeostasis via autophagy

View through CrossRef
AbstractMitochondrial antiviral signalling protein (MAVS) acts as a critical adaptor protein to transduce antiviral signalling by physically interacting with activated RIG-I and MDA5 receptors. MAVS executes its functions at the outer membrane of mitochondria to regulate downstream antiviral signalling, indicating that the mitochondria provides a functional platform for innate antiviral signalling transduction. However, little is known about whether and how MAVS-mediated antiviral signalling contributes to mitochondrial homeostasis. Here we show that the activation of MAVS is sufficient to induce autophagic signalling, which may mediate the turnover of the damaged mitochondria. Importantly, we find MAVS directly interacts with LC3 through its LC3-binding motif ‘YxxI’, suggesting that MAVS might act as an autophagy receptor to mediate mitochondrial turnover upon excessive activation of RLR signalling. Furthermore, we provide evidence that both MAVS self-aggregation and its interaction with TRAF2/6 proteins are important for MAVS-mediated mitochondrial turnover. Collectively, our findings suggest that MAVS acts as a potential receptor for mitochondria-associated autophagic signalling to maintain mitochondrial homeostasis.
Title: MAVS maintains mitochondrial homeostasis via autophagy
Description:
AbstractMitochondrial antiviral signalling protein (MAVS) acts as a critical adaptor protein to transduce antiviral signalling by physically interacting with activated RIG-I and MDA5 receptors.
MAVS executes its functions at the outer membrane of mitochondria to regulate downstream antiviral signalling, indicating that the mitochondria provides a functional platform for innate antiviral signalling transduction.
However, little is known about whether and how MAVS-mediated antiviral signalling contributes to mitochondrial homeostasis.
Here we show that the activation of MAVS is sufficient to induce autophagic signalling, which may mediate the turnover of the damaged mitochondria.
Importantly, we find MAVS directly interacts with LC3 through its LC3-binding motif ‘YxxI’, suggesting that MAVS might act as an autophagy receptor to mediate mitochondrial turnover upon excessive activation of RLR signalling.
Furthermore, we provide evidence that both MAVS self-aggregation and its interaction with TRAF2/6 proteins are important for MAVS-mediated mitochondrial turnover.
Collectively, our findings suggest that MAVS acts as a potential receptor for mitochondria-associated autophagic signalling to maintain mitochondrial homeostasis.

Related Results

ULK1 and ULK2 modulate different aspects of skeletal muscle autophagy
ULK1 and ULK2 modulate different aspects of skeletal muscle autophagy
<p>Macroautophagy, hereafter referred to as autophagy, is a catabolic process involving the degradation of cellular proteins and structures sequestered into a vesicle known a...
Regulation of Syk activity by antiviral adaptor MAVS in FcεRI signaling pathway
Regulation of Syk activity by antiviral adaptor MAVS in FcεRI signaling pathway
BackgroundMast cells are the major effector cell type for IgE-mediated allergic reactions. Recent studies revealed a role for mast cells in orchestrating the host response to viral...
Avaliação Situacional da Segurança na Terapia Medicamentosa em farmácias hospitalares e UPAS no ERJ
Avaliação Situacional da Segurança na Terapia Medicamentosa em farmácias hospitalares e UPAS no ERJ
Introdução: Na ocorrência de falhas de utilização, os medicamentos de alta vigilância (MAVs) possuem risco elevado de Eventos Adversos(EA) que podem levar a lesões permanentes ou f...
AUTOPHAGY CONTROLS EPITHELIAL PROTEOLYTIC HOMEOSTASIS OF THE INTESTINAL MUCOSA
AUTOPHAGY CONTROLS EPITHELIAL PROTEOLYTIC HOMEOSTASIS OF THE INTESTINAL MUCOSA
Background Crohn's Disease (CD) is a chronic relapsing inflammatory bowel disease (IBD) with mucosal ulcerations affecting all of the digestive tract. Intestina...
MAVS Safeguards Mitochondrial Integrity to Drive a Potent Intrinsic Antiviral Program
MAVS Safeguards Mitochondrial Integrity to Drive a Potent Intrinsic Antiviral Program
ABSTRACT Intrinsic antiviral defenses can restrict infection independent of paracrine interferon (IFN) signaling. While mitochondrial homeostasis is essential for i...
Identification of stress specific autophagy regulators from tandem CRISPR screens
Identification of stress specific autophagy regulators from tandem CRISPR screens
Abstract Autophagy is a conserved degradative process that promotes cellular homeostasis under stress conditions. Under nutrient starvation autophagy is largely non...
Abstract 1674: Inhibition of GSK3 reduces p70S6K activity and promotes autophagy independently of the JNK-cJun pathway.
Abstract 1674: Inhibition of GSK3 reduces p70S6K activity and promotes autophagy independently of the JNK-cJun pathway.
Abstract Considering that a tumor promoting role for GSK3 has been suggested in pancreatic cancer (PC) cells and that GSK3 inhibitors are currently under clinical tr...

Back to Top