eat-2;mekk-3

Lifespan changes: From wild type to eat-2;mekk-3

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Genetic mutants with eat-2, mekk-3 alterations

    Names of genes are ordered alphabetically. For the order of interventions, please see the specific paper.
  • Temperature °C

    20

  • Lifespan (days)

    21.66

  • Lifespan change (compared to wild type)

    13.88%

  • Phenotype

    mekk-3 RNAi failed to increase the long lifespans of eat-2(ad1113) to the same extent as in WT, suggesting that they may function in the same genetic pathway for lifespan regulation.

  • Lifespan comparisons

    Double mutant eat-2(ad1113);mekk-3(RNAi) has a lifespan of 21.66 days, while single mutant mekk-3(RNAi) has a lifespan of 27.48 days, single mutant eat-2(ad1113) has a lifespan of 24.16 days and wild type has a lifespan of 19.02 days.

  • Type of interaction
    See methods

    Antagonistic (positive)

  • Citation
    View abstract

    Chamoli M et al., 2014, A novel kinase regulates dietary restriction-mediated longevity in Caenorhabditis elegans. Aging Cell. 13(4):641-55 PubMed 24655420 Click here to select all mutants from this PubMed ID in the graph

  • Temperature °C

    20

  • Lifespan (days)

    26.91

  • Lifespan change (compared to wild type)

    65.70%

  • Phenotype

    mekk-3 RNAi failed to increase the long lifespans of eat-2(ad1113) to the same extent as in WT, suggesting that they may function in the same genetic pathway for lifespan regulation.

  • Lifespan comparisons

    Double mutant eat-2(ad1113);mekk-3(RNAi) has a lifespan of 26.91 days, while single mutant mekk-3(RNAi) has a lifespan of 30.84 days, single mutant eat-2(ad1113) has a lifespan of 22.98 days and wild type has a lifespan of 16.24 days.

  • Type of interaction
    See methods

    Dependent

  • Citation
    View abstract

    Chamoli M et al., 2014, A novel kinase regulates dietary restriction-mediated longevity in Caenorhabditis elegans. Aging Cell. 13(4):641-55 PubMed 24655420 Click here to select all mutants from this PubMed ID in the graph

    Names of genes are ordered alphabetically. For the order of interventions, please see the specific paper.
  • Temperature °C

    20

  • Lifespan (days)

    27.35

  • Lifespan change (compared to wild type)

    68.41%

  • Phenotype

    mekk-3 RNAi failed to increase the long lifespans of eat-2(ad1116) to the same extent as in WT, suggesting that they may function in the same genetic pathway for lifespan regulation.

  • Lifespan comparisons

    Double mutant eat-2(ad1116);mekk-3(RNAi) has a lifespan of 27.35 days, while single mutant mekk-3(RNAi) has a lifespan of 30.84 days, single mutant eat-2(ad1116) has a lifespan of 28.94 days and wild type has a lifespan of 16.24 days.

  • Type of interaction
    See methods

    Antagonistic (positive)

  • Citation
    View abstract

    Chamoli M et al., 2014, A novel kinase regulates dietary restriction-mediated longevity in Caenorhabditis elegans. Aging Cell. 13(4):641-55 PubMed 24655420 Click here to select all mutants from this PubMed ID in the graph

  • Temperature °C

    20

  • Lifespan (days)

    29.99

  • Lifespan change (compared to wild type)

    57.68%

  • Phenotype

    mekk-3 RNAi failed to increase the long lifespans of eat-2(ad1116) to the same extent as in WT, suggesting that they may function in the same genetic pathway for lifespan regulation.

  • Lifespan comparisons

    Double mutant eat-2(ad1116);mekk-3(RNAi) has a lifespan of 29.99 days, while single mutant mekk-3(RNAi) has a lifespan of 27.48 days, single mutant eat-2(ad1116) has a lifespan of 26.8 days and wild type has a lifespan of 19.02 days.

  • Type of interaction
    See methods

    Almost additive (positive)

  • Citation
    View abstract

    Chamoli M et al., 2014, A novel kinase regulates dietary restriction-mediated longevity in Caenorhabditis elegans. Aging Cell. 13(4):641-55 PubMed 24655420 Click here to select all mutants from this PubMed ID in the graph

    Names of genes are ordered alphabetically. For the order of interventions, please see the specific paper.
  • Temperature °C

    20

  • Lifespan (days)

    25.64

  • Lifespan change (compared to wild type)

    53.99%

  • Phenotype

    mekk-3 RNAi failed to increase the long lifespans of eat-2(ad465) to the same extent as in WT, suggesting that they may function in the same genetic pathway for lifespan regulation.

  • Lifespan comparisons

    Double mutant eat-2(ad465);mekk-3(RNAi) has a lifespan of 25.64 days, while single mutant mekk-3(RNAi) has a lifespan of 27.94 days, single mutant eat-2(ad465) has a lifespan of 28.76 days and wild type has a lifespan of 16.65 days.

  • Type of interaction
    See methods

    Antagonistic (positive)

  • Citation
    View abstract

    Chamoli M et al., 2014, A novel kinase regulates dietary restriction-mediated longevity in Caenorhabditis elegans. Aging Cell. 13(4):641-55 PubMed 24655420 Click here to select all mutants from this PubMed ID in the graph

  • Temperature °C

    20

  • Lifespan (days)

    28.02

  • Lifespan change (compared to wild type)

    72.54%

  • Phenotype

    mekk-3 RNAi failed to increase the long lifespans of eat-2(ad465) to the same extent as in WT, suggesting that they may function in the same genetic pathway for lifespan regulation.

  • Lifespan comparisons

    Double mutant eat-2(ad465);mekk-3(RNAi) has a lifespan of 28.02 days, while single mutant mekk-3(RNAi) has a lifespan of 30.84 days, single mutant eat-2(ad465) has a lifespan of 25.44 days and wild type has a lifespan of 16.24 days.

  • Type of interaction
    See methods

    Dependent

  • Citation
    View abstract

    Chamoli M et al., 2014, A novel kinase regulates dietary restriction-mediated longevity in Caenorhabditis elegans. Aging Cell. 13(4):641-55 PubMed 24655420 Click here to select all mutants from this PubMed ID in the graph

Search genes: eat-2 mekk-3
  • Entrez ID
  • Symbol
  • GenAge
  • Wormbase ID

Neuronal acetylcholine receptor subunit eat-2


Locus: CELE_Y48B6A.4


Wormbase description: eat-2 encodes a ligand-gated ion channel subunit most closely related to the non-alpha-subunits of nicotinic acetylcholine receptors (nAChR); EAT-2 functions postsynaptically in pharyngeal muscle to regulate the rate of pharyngeal pumping; eat-2 is also required for normal life span and defecation; a functional EAT-2::GFP fusion protein localizes to two small dots near the junction of pharyngeal muscles pm4 and pm5, which is the site of the posterior-most MC motor neuron processes and the MC synapse; eat-2 genetically interacts with eat-18, which encodes a predicted novel transmembrane protein expressed in pharyngeal muscle and required for proper function of pharyngeal nicotonic receptors.


  • Symbol
  • GenAge

No gene information for mekk-3


Orthologs of eat-2;mekk-3 in SynergyAge
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Orthologs of eat-2 in SynergyAge
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Orthologs of mekk-3 in SynergyAge
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About

SynergyAge database hosts high-quality, manually curated information about the synergistic and antagonistic lifespan effects of genetic interventions in model organisms, also allowing users to explore the longevity relationships between genes in a visual way.

Read more about SynergyAge database

How to cite us

If you would like to cite this database please use:

Bunu, G., Toren, D., Ion, C. et al. SynergyAge, a curated database for synergistic and antagonistic interactions of longevity-associated genes. Sci Data 7, 366 (2020). https://doi.org/10.1038/s41597-020-00710-z

Contact
Robi Tacutu, Ph.D.
Head: Systems Biology of Aging Group, Bioinformatics & Structural Biochemistry Department
Institute of Biochemistry, Ground floor
Splaiul Independentei 296, Bucharest, Romania
Email:

Group webpage: www.aging-research.group