The molecular signature and cis-regulatory architecture of a C. elegans gustatory neuron
- 1 July 2007
- journal article
- Published by Cold Spring Harbor Laboratory in Genes & Development
- Vol. 21 (13) , 1653-1674
- https://doi.org/10.1101/gad.1560107
Abstract
Taste receptor cells constitute a highly specialized cell type that perceives and conveys specific sensory information to the brain. The detailed molecular composition of these cells and the mechanisms that program their fate are, in general, poorly understood. We have generated serial analysis of gene expression (SAGE) libraries from two distinct populations of single, isolated sensory neuron classes, the gustatory neuron class ASE and the thermosensory neuron class AFD, from the nematode Caenorhabditis elegans. By comparing these two libraries, we have identified >1000 genes that define the ASE gustatory neuron class on a molecular level. This set of genes contains determinants of the differentiated state of the ASE neuron, such as a surprisingly complex repertoire of transcription factors (TFs), ion channels, neurotransmitters, and receptors, as well as seven-transmembrane receptor (7TMR)-type putative gustatory receptor genes. Through the in vivo dissection of the cis-regulatory regions of several ASE-expressed genes, we identified a small cis-regulatory motif, the “ASE motif,” that is required for the expression of many ASE-expressed genes. We demonstrate that the ASE motif is a binding site for the C2H2 zinc finger TF CHE-1, which is essential for the correct differentiation of the ASE gustatory neuron. Taken together, our results provide a unique view of the molecular landscape of a single neuron type and reveal an important aspect of the regulatory logic for gustatory neuron specification in C. elegans.Keywords
This publication has 70 references indexed in Scilit:
- Detection of broadly expressed neuronal genes in C. elegansDevelopmental Biology, 2007
- The ELT-2 GATA-factor and the global regulation of transcription in the C. elegans intestineDevelopmental Biology, 2007
- Early Embryonic Programming of Neuronal Left/Right Asymmetry in C. elegansCurrent Biology, 2006
- Genome‐wide natural antisense transcription: coupling its regulation to its different regulatory mechanismsEMBO Reports, 2006
- Insulin-like signaling and the neural circuit for integrative behavior in C. elegansGenes & Development, 2006
- A genomic code for nucleosome positioningNature, 2006
- Overlapping transcripts, double-stranded RNA and antisense regulation: A genomic perspectiveCellular and Molecular Life Sciences, 2006
- Identification of C. elegans sensory ray genes using whole-genome expression profilingDevelopmental Biology, 2004
- Comprehensive Analysis of Photoreceptor Gene Expression and the Identification of Candidate Retinal Disease GenesCell, 2001
- The structure of the nervous system of the nematodeCaenorhabditis elegansPhilosophical Transactions of the Royal Society of London. B, Biological Sciences, 1986