Literature DB >> 17141609

Early embryonic programming of neuronal left/right asymmetry in C. elegans.

Richard J Poole1, Oliver Hobert.   

Abstract

BACKGROUND: Nervous systems are largely bilaterally symmetric on a morphological level but often display striking degrees of functional left/right (L/R) asymmetry. How L/R asymmetric functional features are superimposed onto an essentially bilaterally symmetric structure and how nervous-system laterality relates to the L/R asymmetry of internal organs are poorly understood. We address these questions here by using the establishment of L/R asymmetry in the ASE chemosensory neurons of C. elegans as a paradigm. This bilaterally symmetric neuron pair is functionally lateralized in that it senses a distinct class of chemosensory cues and expresses a putative chemoreceptor family in a L/R asymmetric manner.
RESULTS: We show that the directionality of the asymmetry of the two postmitotic ASE neurons ASE left (ASEL) and ASE right (ASER) in adults is dependent on a L-/R-symmetry-breaking event at a very early embryonic stage, the six-cell stage, which also establishes the L/R asymmetric placement of internal organs. However, the L/R asymmetry of the ASE neurons per se is dependent on an even earlier anterior-posterior (A/P) Notch signal that specifies embryonic ABa/ABp blastomere identities at the four-cell stage. This Notch signal, which functions through two T box genes, acts genetically upstream of a miRNA-controlled bistable feedback loop that regulates the L/R asymmetric gene-expression program in the postmitotic ASE cells.
CONCLUSIONS: Our results link adult neuronal laterality to the generation of the A/P axis at the two-cell stage and raise the possibility that neural asymmetries observed across the animal kingdom are similarly established by very early embryonic interactions.

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Year:  2006        PMID: 17141609     DOI: 10.1016/j.cub.2006.09.041

Source DB:  PubMed          Journal:  Curr Biol        ISSN: 0960-9822            Impact factor:   10.834


  36 in total

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3.  Genetic screens for Caenorhabditis elegans mutants defective in left/right asymmetric neuronal fate specification.

Authors:  Sumeet Sarin; M Maggie O'Meara; Eileen B Flowers; Celia Antonio; Richard J Poole; Dominic Didiano; Robert J Johnston; Sarah Chang; Surinder Narula; Oliver Hobert
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Review 5.  Making a difference together: reciprocal interactions in C. elegans and zebrafish asymmetric neural development.

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7.  Notch-dependent induction of left/right asymmetry in C. elegans interneurons and motoneurons.

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Journal:  Curr Biol       Date:  2011-07-07       Impact factor: 10.834

Review 8.  Stochastic mechanisms of cell fate specification that yield random or robust outcomes.

Authors:  Robert J Johnston; Claude Desplan
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Review 9.  Diversity and convergence in the mechanisms establishing L/R asymmetry in metazoa.

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10.  Natural reversal of left-right gut/gonad asymmetry in C. elegans males is independent of embryonic chirality.

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