1 research outputs found
NDE1 and GSK3β Associate with TRAK1 and Regulate Axonal Mitochondrial Motility: Identification of Cyclic AMP as a Novel Modulator of Axonal Mitochondrial Trafficking
Mitochondria
are essential for neuronal function, providing the
energy required to power neurotransmission, and fulfilling many important
additional roles. In neurons, mitochondria must be efficiently transported
to sites, including synapses, where their functions are required.
Neurons, with their highly elongated morphology, are consequently
extremely sensitive to defective mitochondrial trafficking which can
lead to neuronal ill-health/death. We recently demonstrated that DISC1
associates with mitochondrial trafficking complexes where it associates
with the core kinesin and dynein adaptor molecule TRAK1. We now show
that the DISC1 interactors NDE1 and GSK3β also associate robustly
with TRAK1 and demonstrate that NDE1 promotes retrograde axonal mitochondrial
movement. GSK3β is known to modulate axonal mitochondrial motility,
although reports of its actual effect are conflicting. We show that,
in our system, GSK3β promotes anterograde mitochondrial transport.
Finally, we investigated the influence of cAMP elevation upon mitochondrial
motility, and found a striking increase in mitochondrial motility
and retrograde movement. DISC1, NDE1, and GSK3β are implicated
as risk factors for major mental illness. Our demonstration that they
function together within mitochondrial trafficking complexes suggests
that defective mitochondrial transport may be a contributory disease
mechanism in some cases of psychiatric disorder