Endogenous Rho-kinase signaling maintains synaptic strength by stabilizing the size of the readily releasable pool of synaptic vesicles

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URI: http://hdl.handle.net/10498/30955
DOI: 10.1523/JNEUROSCI.3215-11.2012
ISSN: 0270-6474
ISSN: 1529-2401
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2012-01-04Departamento/s
Biomedicina, Biotecnología y Salud PúblicaFuente
Journal of Neuroscience - 2012, Vol. 32 n.1 pp. 68–84Resumen
Rho-associated kinase (ROCK) regulates neural cell migration, proliferation and survival, dendritic spine morphology, and axon guidance
and regeneration. There is, however, little information about whether ROCK modulates the electrical activity and information
processing of neuronal circuits. At neonatal stage, ROCK is expressed in hypoglossal motoneurons (HMNs) and in their afferent inputs,
whereasROCK is found in synaptic terminals on HMNs, but not in their somata. Inhibition of endogenousROCKactivity in neonatal rat
brainstem slices failed to modulate intrinsic excitability of HMNs, but strongly attenuated the strength of their glutamatergic and
GABAergic synaptic inputs. The mechanism acts presynaptically to reduce evoked neurotransmitter release. ROCK inhibition increased
myosin light chain (MLC) phosphorylation, which is known to trigger actomyosin contraction, and reduced the number of synaptic
vesicles docked to active zones in excitatory boutons. Functional and ultrastructural changes induced by ROCK inhibition were fully
prevented/reverted by MLC kinase (MLCK) inhibition. Furthermore, ROCK inhibition drastically reduced the phosphorylated form of
p21-associated kinase (PAK), which directly inhibits MLCK. We conclude that endogenous ROCK activity is necessary for the normal
performance of motor output commands, because it maintains afferent synaptic strength, by stabilizing the size of the readily releasable
pool of synaptic vesicles. The mechanism of action involves a tonic inhibition of MLCK, presumably through PAK phosphorylation. This
mechanism might be present in adults since unilateral microinjection of ROCK or MLCK inhibitors into the hypoglossal nucleus reduced
or increased, respectively, whole XIIth nerve activity.
Materias
Rho quinasa; motoneuronaColecciones
- Artículos Científicos [11777]






