Notch-mediated regulation of β-Catenin-TCF activity instructs anteroposterior neuron positioning in C. elegans
Chan, W.; Justin, E.; Roenspies, T.; Rumley, J. D.; Murray, J. I.; Colavita, A.
Show abstract
Motor neuron positioning and organization along the neuroaxis is crucial for proper nervous system connectivity and function. In newly hatched C. elegans, the ventral nerve cord contains 22 motor neurons, divided into three classes (DD, DA, and DB), with their cell bodies showing a largely stereotypical positioning and sequential arrangement. However, the mechanisms controlling this precise positioning are not fully understood. Here, we uncover a left-right asymmetry in {beta}-catenin-TCF complex activity that controls motor neuron positioning. Loss of BAR-1/{beta}-catenin or POP-1/TCF causes a shift of motor neuron cell bodies toward the anterior, while loss of PRY-1/Axin shifts them toward the posterior. During embryonic ventral cord morphogenesis, BAR-1 expression is restricted to right-side motor neuron precursors through asymmetric Notch signaling, which promotes PRY-1 expression on the left to degrade BAR-1. Our findings highlight an atypical Notch-mediated regulation of Axin expression and reveal that left-right asymmetry during neuroaxis formation specifies anteroposterior motor neuron placement in the central nerve cord.
Matching journals
The top 3 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Visualizing the organization and differentiation of the male-specific nervous system of C. elegans 97%
- Dynamic expression and localization of the LIN-2/7/10 protein scaffolding complex during C. elegans vulval development 97%
- Restricted effects of the sole C. elegans Daughterless/E homolog, HLH-2, on nervous system development 96%
Similar papers in this journal
Similar papers in this journal
- Sticks and Stones, a conserved cell surface ligand for the Type IIa RPTP Lar, regulates neural circuit wiring in Drosophila 98%
- Gradient-independent Wnt signaling instructs asymmetric neurite pruning in C. elegans 97%
- The enteric nervous system of C. elegans is specified by the Sine Oculis-like homeobox gene ceh-34 97%
Similar papers in this journal
- Caenorhabditis elegans junctophilin has tissue-specific functions and regulates neurotransmission with extended-synaptotagmin 97%
- Neuronal post-developmentally acting SAX-7S/L1CAM can function as cleaved fragments to maintain neuronal architecture in C. elegans 97%
- Selective disruption of synaptic BMP signaling by a Smad mutation adjacent to the highly conserved H2 helix 97%
Similar papers in this journal
- Caenorhabditis elegans LET-413 Scribble is essential in the epidermis for growth, viability, and directional outgrowth of epithelial seam cells 97%
- The anterior Hox gene ceh-13 and elt-1/GATA activate the posterior Hox genes nob-1 and php-3 to specify posterior lineages in the C. elegans embryo 97%
- daf-16/FOXO blocks adult cell fate in Caenorhabditis elegans dauer larvae via lin-41/TRIM71 97%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.