The left and right AWC olfactory neurons in Caenorhabditis elegans differ in their functions and in their expression of chemosensory receptor genes; in each animal, one AWC randomly takes on one identity, designated AWCOFF, and the contralateral AWC becomes AWCON. Signaling between AWC neurons induces left-right asymmetry through a gap junction network and a claudin-related protein, which inhibit a calcium-regulated MAP kinase pathway in the neuron that becomes AWCON. Results We show here that the asymmetry gene olrn-1 acts downstream of the gap junction and claudin genes to inhibit the calcium-MAP kinase pathway in AWCON. OLRN-1, a protein with potential membrane-association domains, is related to the Drosophila Raw protein, a negative reg...
AbstractTo make the most of a small number of neurons, the nematode olfactory system includes neuron...
At discrete points in development, transient signals are transformed into long-lasting cell fates. F...
Cellular polarization is critical for many stages of neuronal development, including the asymmetric ...
SummaryEarly in C. elegans development, signaling between bilaterally symmetric AWC olfactory neuron...
<div><p>The <i>C</i>. <i>elegans</i> AWC olfactory neuron pair communicates to specify asymmetric su...
The C. elegans left and right AWC olfactory neurons specify asymmetric subtypes, one default AWC(OFF...
AbstractC. elegans detects several odorants with the bilaterally symmetric pair of AWC olfactory neu...
SummaryEarly in C. elegans development, signaling between bilaterally symmetric AWC olfactory neuron...
AbstractC. elegans detects several odorants with the bilaterally symmetric pair of AWC olfactory neu...
Gap junctions are increasingly recognized as key regulators of embryonic development, nervous system...
The Caenorhabditis elegans left and right AWC olfactory neurons communicate to establish stochastic ...
Left/right asymmetric features of animals are either randomly distributed on either the left or righ...
<div><p>The <em>Caenorhabditis elegans</em> left and right AWC olfactory neurons communicate to esta...
AbstractA stochastic cell fate decision mediated by axon contact and calcium signaling causes one of...
Gap junctions are increasingly recognized as key regulators of embryonic development, nervous system...
AbstractTo make the most of a small number of neurons, the nematode olfactory system includes neuron...
At discrete points in development, transient signals are transformed into long-lasting cell fates. F...
Cellular polarization is critical for many stages of neuronal development, including the asymmetric ...
SummaryEarly in C. elegans development, signaling between bilaterally symmetric AWC olfactory neuron...
<div><p>The <i>C</i>. <i>elegans</i> AWC olfactory neuron pair communicates to specify asymmetric su...
The C. elegans left and right AWC olfactory neurons specify asymmetric subtypes, one default AWC(OFF...
AbstractC. elegans detects several odorants with the bilaterally symmetric pair of AWC olfactory neu...
SummaryEarly in C. elegans development, signaling between bilaterally symmetric AWC olfactory neuron...
AbstractC. elegans detects several odorants with the bilaterally symmetric pair of AWC olfactory neu...
Gap junctions are increasingly recognized as key regulators of embryonic development, nervous system...
The Caenorhabditis elegans left and right AWC olfactory neurons communicate to establish stochastic ...
Left/right asymmetric features of animals are either randomly distributed on either the left or righ...
<div><p>The <em>Caenorhabditis elegans</em> left and right AWC olfactory neurons communicate to esta...
AbstractA stochastic cell fate decision mediated by axon contact and calcium signaling causes one of...
Gap junctions are increasingly recognized as key regulators of embryonic development, nervous system...
AbstractTo make the most of a small number of neurons, the nematode olfactory system includes neuron...
At discrete points in development, transient signals are transformed into long-lasting cell fates. F...
Cellular polarization is critical for many stages of neuronal development, including the asymmetric ...