gpa-1;gpc-1

Lifespan changes: From wild type to gpa-1;gpc-1

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Genetic mutants with gpa-1, gpc-1 alterations

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

    20

  • Lifespan (days)

    20.3

  • Lifespan change (compared to wild type)

    21.56%

  • Phenotype

    The life span extension in gpa-1; gpc-1 double mutants was similar to that in either single mutant ( Fig. 2D; Supplementary Table 1), suggesting that gpa-1 also functions in a genetic pathway with gpc-1. 

  • Lifespan comparisons

    Double mutant gpa-1(pk15);gpc-1(pk298te) has a lifespan of 20.3 days, while single mutant gpc-1(pk298te) has a lifespan of 20.3 days, single mutant gpa-1(pk15) has a lifespan of 20.4 days and wild type has a lifespan of 16.7 days.

  • Type of interaction
    See methods

    Dependent

  • Citation
    View abstract

    Lans H, Jansen G, 2007, Multiple sensory G proteins in the olfactory, gustatory and nociceptive neurons modulate longevity in Caenorhabditis elegans. Dev Biol. 303(2):474-82 PubMed 17187771 Click here to select all mutants from this PubMed ID in the graph

Search genes: gpa-1 gpc-1
  • Entrez ID
  • Symbol
  • GenAge
  • Wormbase ID

G Protein, Alpha subunit;Guanine nucleotide-binding protein alpha-1 subunit


Locus: CELE_T19C4.6


Wormbase description: gpa-1 encodes a member of the G protein alpha subunit family of heterotrimeric GTPases that is involved in chemotaxis to water-soluble odorants; it is expressed in sensory neurons and in the spicule and phasmid neurons of the male tail.


  • Entrez ID
  • Symbol
  • GenAge
  • Wormbase ID

Guanine nucleotide-binding protein subunit gamma


Locus: CELE_K02A4.2


Wormbase description: The gpc-1 gene encodes a heterotrimeric guanine nucleotide-binding protein gamma subunit, expressed specifically in sensory neurons, that is involved in taste adaptation.


Orthologs of gpa-1;gpc-1 in SynergyAge
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Species Gene
Orthologs of gpa-1 in SynergyAge
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Species Gene
Orthologs of gpc-1 in SynergyAge
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Species Gene
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