Several gene mutations linked to intellectual disability in humans code for synaptic molecules implicated in small GTPase signaling. This is the case of the Rac/Cdc42 effector p21-activated kinase 3 (PAK3). The mechanisms responsible for the intellectual defects and the consequences of the mutation on the development and wiring of brain networks remain unknown. Here we show that expression of PAK3 mutants, suppression of PAK3, or inhibition of PAK3 function in rat hippocampal slice cultures interfere with activity-mediated spine dynamics. Inhibition of PAK3 resulted in two main alterations: (1) an increased growth of new, unstable spines, occurring in clusters, and mediated by activity; and (2) an impairment of plasticity-mediated spine sta...
Loss of function mutations in PAK3 contribute to non-syndromic X-linked intellectual disability (NS-...
Loss of function mutations in PAK3 contribute to non-syndromic X-linked intellectual disability (NS-...
Loss of function mutations in PAK3 contribute to non-syndromic X-linked intellectual disability (NS-...
Mutations of the gene coding for PAK3 (p21-activated kinase 3) are associated with X-linked, nonsynd...
PAK1 and PAK3 belong to a family of protein kinases that are effectors of small Rho GTPases. In huma...
The p21-activated kinase 3 (PAK3) codes for a serine threonine protein kinase implicated in non synd...
The biological mechanisms underlying the mental retardation associated with mutation of the ARHGEF6 ...
The dynamics of actin, the major cytoskeletal component in dendritic spines, is responsible for the ...
The dynamics of actin, the major cytoskeletal component in dendritic spines, is responsible for the ...
ABSTRACT: The serine/threonine kinase p21-acti-vated kinase 1 (Pak1) modulates actin and microtubule...
Several of the genes currently known to be associated, when mutated, with mental retardation, code f...
The molecular mechanisms that coordinate postnatal brain enlargement, synaptic properties and cognit...
The molecular mechanisms that coordinate postnatal brain enlargement, synaptic properties and cognit...
Several of the genes currently known to be associated, when mutated, with mental retardation, code f...
The importance of our research consists of the identification of novel pathophysiological mechanisms...
Loss of function mutations in PAK3 contribute to non-syndromic X-linked intellectual disability (NS-...
Loss of function mutations in PAK3 contribute to non-syndromic X-linked intellectual disability (NS-...
Loss of function mutations in PAK3 contribute to non-syndromic X-linked intellectual disability (NS-...
Mutations of the gene coding for PAK3 (p21-activated kinase 3) are associated with X-linked, nonsynd...
PAK1 and PAK3 belong to a family of protein kinases that are effectors of small Rho GTPases. In huma...
The p21-activated kinase 3 (PAK3) codes for a serine threonine protein kinase implicated in non synd...
The biological mechanisms underlying the mental retardation associated with mutation of the ARHGEF6 ...
The dynamics of actin, the major cytoskeletal component in dendritic spines, is responsible for the ...
The dynamics of actin, the major cytoskeletal component in dendritic spines, is responsible for the ...
ABSTRACT: The serine/threonine kinase p21-acti-vated kinase 1 (Pak1) modulates actin and microtubule...
Several of the genes currently known to be associated, when mutated, with mental retardation, code f...
The molecular mechanisms that coordinate postnatal brain enlargement, synaptic properties and cognit...
The molecular mechanisms that coordinate postnatal brain enlargement, synaptic properties and cognit...
Several of the genes currently known to be associated, when mutated, with mental retardation, code f...
The importance of our research consists of the identification of novel pathophysiological mechanisms...
Loss of function mutations in PAK3 contribute to non-syndromic X-linked intellectual disability (NS-...
Loss of function mutations in PAK3 contribute to non-syndromic X-linked intellectual disability (NS-...
Loss of function mutations in PAK3 contribute to non-syndromic X-linked intellectual disability (NS-...