Javascript must be enabled to continue!
Identification of Elongation Factor-2 as a Novel Regulator of Mitochondrial Fission
View through CrossRef
Abstract
Mitochondria continuously undergo morphologically dynamic processes of fusion and fission to maintain their size, shape, amount, and function; yet the precise molecular mechanisms by which mitochondrial dynamics is regulated remain to be fully elucidated. Here, we report a previous unappreciated but critical role of eukaryotic elongation factor 2 (eEF2) in regulating mitochondrial fission. eEF2, a G-protein superfamily member encoded by EEF2 gene in human, has long been appreciated as a promoter of the GTP-dependent translocation of the ribosome during protein synthesis. We found unexpectedly in several types of cells that eEF2 was not only present in the cytosol but also in the mitochondria. Furthermore, we showed that mitochondrial length was significantly increased when the cells were subjected to silencing of eEF2 expression, suggesting a promotive role for eEF2 in the mitochondrial fission. Inversely, overexpression of eEF2 decreased mitochondrial length, suggesting an increase of mitochondrial fission. Inhibition of mitochondrial fission caused by eEF2 depletion was accompanied by alterations of cellular metabolism, as evidenced by a reduction of oxygen consumption and an increase of oxidative stress in the mitochondria. We further demonstrated that eEF2 and Drp1, a key driver of mitochondrial fission, co-localized at the mitochondria, as evidenced by microscopic observation, co-immunoprecipitation, and GST pulldown assay. Deletion of the GTP binding motif of eEF2 decreased its association with Drp1 and abrogated its effect on mitochondria fission. Moreover, we showed that wild-type eEF2 stimulated GTPase activity of Drp1, whereas deletion of the GTP binding site of eEF2 diminished its stimulatory effect on GTPase activity. This work not only reveals a previously unrecognized function of eEF2 (i.e., promoting mitochondrial fission), but also uncovers the interaction of eEF2 with Drp1 as a novel regulatory mechanism of the mitochondrial dynamics. Therefore, eEF2 warrants further exploration for its potential as a therapeutic target for the mitochondria-related diseases.
Springer Science and Business Media LLC
Title: Identification of Elongation Factor-2 as a Novel Regulator of Mitochondrial Fission
Description:
Abstract
Mitochondria continuously undergo morphologically dynamic processes of fusion and fission to maintain their size, shape, amount, and function; yet the precise molecular mechanisms by which mitochondrial dynamics is regulated remain to be fully elucidated.
Here, we report a previous unappreciated but critical role of eukaryotic elongation factor 2 (eEF2) in regulating mitochondrial fission.
eEF2, a G-protein superfamily member encoded by EEF2 gene in human, has long been appreciated as a promoter of the GTP-dependent translocation of the ribosome during protein synthesis.
We found unexpectedly in several types of cells that eEF2 was not only present in the cytosol but also in the mitochondria.
Furthermore, we showed that mitochondrial length was significantly increased when the cells were subjected to silencing of eEF2 expression, suggesting a promotive role for eEF2 in the mitochondrial fission.
Inversely, overexpression of eEF2 decreased mitochondrial length, suggesting an increase of mitochondrial fission.
Inhibition of mitochondrial fission caused by eEF2 depletion was accompanied by alterations of cellular metabolism, as evidenced by a reduction of oxygen consumption and an increase of oxidative stress in the mitochondria.
We further demonstrated that eEF2 and Drp1, a key driver of mitochondrial fission, co-localized at the mitochondria, as evidenced by microscopic observation, co-immunoprecipitation, and GST pulldown assay.
Deletion of the GTP binding motif of eEF2 decreased its association with Drp1 and abrogated its effect on mitochondria fission.
Moreover, we showed that wild-type eEF2 stimulated GTPase activity of Drp1, whereas deletion of the GTP binding site of eEF2 diminished its stimulatory effect on GTPase activity.
This work not only reveals a previously unrecognized function of eEF2 (i.
e.
, promoting mitochondrial fission), but also uncovers the interaction of eEF2 with Drp1 as a novel regulatory mechanism of the mitochondrial dynamics.
Therefore, eEF2 warrants further exploration for its potential as a therapeutic target for the mitochondria-related diseases.
Related Results
Mitochondria Fusion and Fission
Mitochondria Fusion and Fission
Abstract
Mitochondrial structural dynamics is regulated by the fusion or fission of these organelles. Recently published evidence indicates the ...
GW24-e3762 Role Of mitochondrial fission In cardiac microvascular endothelial cells after ischaemia/reperfusion
GW24-e3762 Role Of mitochondrial fission In cardiac microvascular endothelial cells after ischaemia/reperfusion
Objectives
This study is aimed to establish a simulated ischaemia/reperfusion (SI/R) model in cultured CMECs from adult rat, and investigate the role of mitochond...
Principles of the mitochondrial fusion and fission cycle in neurons
Principles of the mitochondrial fusion and fission cycle in neurons
Mitochondrial fusion-fission dynamics play a crucial role in many important cell processes. These dynamics control mitochondrial morphology, which in turn influences several import...
Abstract 283: SGK1-Dependent Sirt3 Phosphorylation Regulates Mitochondrial Dynamics
Abstract 283: SGK1-Dependent Sirt3 Phosphorylation Regulates Mitochondrial Dynamics
Mitochondrial dynamics (i.e. fusion and fission) is impaired in models of obesity and can result in target organ dysfunction. However, the mechanisms that regulate mitochondrial dy...
SOCS-6 promotes mitochondrial fission and cardiomyocyte apoptosis and is negatively regulated by QKI mediated miR-19b
SOCS-6 promotes mitochondrial fission and cardiomyocyte apoptosis and is negatively regulated by QKI mediated miR-19b
Abstract
Background Ischemia/reperfusion (IR) injury following myocardial infarction can result in debilitating complications and morbidity. Mitochondrial dysfunction and a...
Nonproliferation and fusion power plants
Nonproliferation and fusion power plants
Abstract
The world now appears to be on the brink of realizing commercial fusion. As fusion energy progresses towards near-term commercial deployment, the question arises a...
Impact of nuclear inertia momenta on fission observables
Impact of nuclear inertia momenta on fission observables
Fission is probably the nuclear process the less accurately described with current models because it involves dynamics of nuclear matter with strongly coupled manybody interactions...
Implementation of a multi-chance fission model in FIFRELIN for 235U(n,f) reaction
Implementation of a multi-chance fission model in FIFRELIN for 235U(n,f) reaction
Neutron emission is a physical process that can occur at various stages of nuclear fission. The main source of neutron emission comes from primary fission fragments after full acce...


