Drosophila Pumilio (Pum) protein is a translational regulator involved in embryonic patterning and germline development. Recent findings demonstrate that Pum also plays an important role in the nervous system, both at the neuromuscular junction (NMJ) and in long-term memory formation. In neurons, Pum appears to play a role in homeostatic control of excitability via down regulation of para, a voltage gated sodium channel, and may more generally modulate local protein synthesis in neurons via translational repression of eIF-4E. Aside from these, the biologically relevant targets of Pum in the nervous system remain largely unknown. We hypothesized that Pum might play a role in regulating the local translation underlying synapse-specific modifi...
Dynamic changes in synaptic connectivity and strength, which occur during both embryonic development...
Coordinated mRNA translation at the synapse is increasingly recognized as a critical mechanism for n...
Coordinated mRNA translation at the synapse is increasingly recognized as a critical mechanism for n...
AbstractTranslational repression by Drosophila Pumilio (Pum) protein controls posterior patterning d...
Homeostatic regulation of ionic currents is of paramount importance during periods of synaptic growt...
We identified Pumilio (Pum), a Drosophila translational repressor, in a computational search for met...
Translational repression by Drosophila Pumilio (Pum) protein controls posterior patterning during em...
Homeostatic regulation of ionic currents is of paramount importance during periods of synaptic growt...
AbstractThe translational regulators Nanos (Nos) and Pumilio (Pum) work together to regulate the mor...
Translational repression is a key component of the mechanism that establishes segment polarity durin...
Pumilio (Pum) is a translational repressor that binds selectively to target mRNAs and recruits Nanos...
AbstractBackground: Memory formation after olfactory learning in Drosophila displays behavioral and ...
Background: Memory formation after olfactory learning in Drosophila displays behavioral and molecula...
AbstractMuch attention has focused on dendritic translational regulation of neuronal signaling and p...
AbstractTranslation regulation plays an essential role in the differentiation and development of ani...
Dynamic changes in synaptic connectivity and strength, which occur during both embryonic development...
Coordinated mRNA translation at the synapse is increasingly recognized as a critical mechanism for n...
Coordinated mRNA translation at the synapse is increasingly recognized as a critical mechanism for n...
AbstractTranslational repression by Drosophila Pumilio (Pum) protein controls posterior patterning d...
Homeostatic regulation of ionic currents is of paramount importance during periods of synaptic growt...
We identified Pumilio (Pum), a Drosophila translational repressor, in a computational search for met...
Translational repression by Drosophila Pumilio (Pum) protein controls posterior patterning during em...
Homeostatic regulation of ionic currents is of paramount importance during periods of synaptic growt...
AbstractThe translational regulators Nanos (Nos) and Pumilio (Pum) work together to regulate the mor...
Translational repression is a key component of the mechanism that establishes segment polarity durin...
Pumilio (Pum) is a translational repressor that binds selectively to target mRNAs and recruits Nanos...
AbstractBackground: Memory formation after olfactory learning in Drosophila displays behavioral and ...
Background: Memory formation after olfactory learning in Drosophila displays behavioral and molecula...
AbstractMuch attention has focused on dendritic translational regulation of neuronal signaling and p...
AbstractTranslation regulation plays an essential role in the differentiation and development of ani...
Dynamic changes in synaptic connectivity and strength, which occur during both embryonic development...
Coordinated mRNA translation at the synapse is increasingly recognized as a critical mechanism for n...
Coordinated mRNA translation at the synapse is increasingly recognized as a critical mechanism for n...