Factors

We need to know every factor which determines lifespan.

Lifespan factors often but not always originate from defined genetic elements. They are not just genes, by definition they can be anything for which a Classifications schema can be build for that is related to the regulation of lifespan, such entities may include Single-Nucleotide Polymorphism, transcript variants, proteins and their complexes, compounds (i.e. small molecules like metabolites and drugs), etc. A factor should be based on a defined molecular entity or genomic position and been classified. It shall be highly flexible and scalable Concept.

While individual lifespan factors within each species or precise defined molecular entities will be captured within the Lifespan App, Data Entries of the Data App may summarize for instance the relevance of each factor class (e.g. homologous group; chemical derivate of related structure and properties, etc.) as well as draw overall conclusions. o

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  • Species: + -
  • Types: + -
  • symbol name observation species
    BNA6 Biosynthesis of Nicotinic Acid 6 Deletion of BNA6 (alias QPT1) has no effect on replicative lifespan and is not required for lifespan extension by DR, but is lethal with mutation of NPT1 [11000115]. Deletion of BNA6 decreases chronological lifespan [17110466]. Nematode
    ctl-1 CaTaLase 1 ctl-1 loss of function shortens lifespan to 77% of wild-type animals. ctl-1 mutants accumulate fluorescent material faster than wild-type, indicating accelerated aging [12610632]. ctl-1 mutation prevents lifespan extension by daf-2 or clk-1. Mutation of ctl-1 reudces catalase activty by 50% [10335847]. All these results have been retracted. Nematode
    • 2 factors
    Factors are an extension of GenAge and GenDR.

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