Left/right asymmetrically expressed ephrin and Flamingo proteins regulate lateralized axon growth in C. elegans

While the nervous system of bilaterian animals is mainly left-right (L-R) symmetric at the anatomical level, some molecular and functional L-R asymmetries exist. However, the extent of these molecular asymmetries and their functional consequences remain poorly characterized. C. elegans allows to stu...

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Veröffentlicht in:Developmental biology 2025-01, Vol.517, p.117-125
Hauptverfasser: Buyannemekh, Khulganaa, Villoutreix, Paul, Bertrand, Vincent
Format: Artikel
Sprache:eng
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Zusammenfassung:While the nervous system of bilaterian animals is mainly left-right (L-R) symmetric at the anatomical level, some molecular and functional L-R asymmetries exist. However, the extent of these molecular asymmetries and their functional consequences remain poorly characterized. C. elegans allows to study L-R asymmetries in the nervous system with single-neuron resolution. We have previously shown that a neural bHLH transcription factor, HLH-16/Olig, is L-R asymmetrically expressed in the AIY neuron lineage and regulates AIY axon projections in a L-R asymmetric manner. Here, by combining a candidate approach and single-cell RNA sequencing data analysis, we identify the ephrin protein EFN-2 and the Flamingo protein FMI-1 as downstream targets of HLH-16 that are L-R asymmetrically expressed in the AIY lineage. We show that EFN-2 and FMI-1 collaborate in the L-R asymmetric regulation of axonal growth. EFN-2 may act via a non-canonical receptor of the L1CAM family, SAX-7. Our study reveals novel molecular L-R asymmetries in the C. elegans nervous system and their functional consequences. [Display omitted] •EFN-2/ephrin and FMI-1/Flamingo are asymmetrically expressed in the nervous system.•The transcription factor HLH-16/Olig regulates this left-right asymmetric expression.•EFN-2 and FMI-1 collaborate in an asymmetric axonal growth program in C. elegans.
ISSN:0012-1606
1095-564X
1095-564X
DOI:10.1016/j.ydbio.2024.09.014