AbstractLittle is known of mechanisms regulating presynaptic differentiation. We identified rpm-1 in a screen for mutants with defects in patterning of a presynaptic marker at certain interneuronal synapses. The predicted RPM-1 protein contains zinc binding, RCC1, and other conserved motifs. In rpm-1 mutants, mechanosensory neurons fail to accumulate tagged vesicles, retract synaptic branches, and ectopically extend axons. Some motor neurons branch and overgrow; others show altered synaptic organization. Expression of RPM-1 in the presynaptic mechanosensory neurons is sufficient to rescue phenotypes in these cells. Certain rpm-1 phenotypes are temperature sensitive, revealing that RPM-1 function can be bypassed by maintaining mutants at the...
Background: The nematode Caenorhabditis elegans has been used extensively to identify the genetic re...
Synapses are specialized contact sites that mediate information flow between neurons and their targe...
Previous data demonstrate variants in hundreds of genes are causative for the formation of neurodeve...
AbstractLittle is known of mechanisms regulating presynaptic differentiation. We identified rpm-1 in...
AbstractPresynaptic terminals contain highly organized subcellular structures to facilitate neurotra...
The formation of neuronal connections is a complex process that involves several key steps: initiati...
One prevailing question in developmental neurobiology is how neurons form precise connections with t...
SummaryC. elegans RPM-1 (for Regulator of Presynaptic Morphology) is a member of a conserved protein...
The Pam/Highwire/RPM-1 (PHR) proteins are key regulators of neuronal development that function in ax...
The PHR (Pam/Highwire/RPM-1) family of ubiquitin E3 ligases plays conserved roles in axon patterning...
C. elegans RPM-1 (for Regulator of Presynaptic Morphology) is a member of a conserved protein family...
SummarySynapses display a stereotyped ultrastructural organization, commonly containing a single ele...
During development, neural activity is important for forming proper connections in neural networks. ...
Neural circuits are dynamic, with activity-dependent changes in synapse density and connectivity pea...
Ubiquitination occurs at synapses, yet its role remains unclear. Previous studies demonstrated that ...
Background: The nematode Caenorhabditis elegans has been used extensively to identify the genetic re...
Synapses are specialized contact sites that mediate information flow between neurons and their targe...
Previous data demonstrate variants in hundreds of genes are causative for the formation of neurodeve...
AbstractLittle is known of mechanisms regulating presynaptic differentiation. We identified rpm-1 in...
AbstractPresynaptic terminals contain highly organized subcellular structures to facilitate neurotra...
The formation of neuronal connections is a complex process that involves several key steps: initiati...
One prevailing question in developmental neurobiology is how neurons form precise connections with t...
SummaryC. elegans RPM-1 (for Regulator of Presynaptic Morphology) is a member of a conserved protein...
The Pam/Highwire/RPM-1 (PHR) proteins are key regulators of neuronal development that function in ax...
The PHR (Pam/Highwire/RPM-1) family of ubiquitin E3 ligases plays conserved roles in axon patterning...
C. elegans RPM-1 (for Regulator of Presynaptic Morphology) is a member of a conserved protein family...
SummarySynapses display a stereotyped ultrastructural organization, commonly containing a single ele...
During development, neural activity is important for forming proper connections in neural networks. ...
Neural circuits are dynamic, with activity-dependent changes in synapse density and connectivity pea...
Ubiquitination occurs at synapses, yet its role remains unclear. Previous studies demonstrated that ...
Background: The nematode Caenorhabditis elegans has been used extensively to identify the genetic re...
Synapses are specialized contact sites that mediate information flow between neurons and their targe...
Previous data demonstrate variants in hundreds of genes are causative for the formation of neurodeve...