Steroid hormones sulfatase inactivation extends lifespan and ameliorates age-related diseases

Aging and fertility are two interconnected processes. From invertebrates to mammals, absence of the germline increases longevity. Here we show that loss of function of sul-2 , the Caenorhabditis elegans steroid sulfatase (STS), raises the pool of sulfated steroid hormones, increases longevity and am...

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Veröffentlicht in:Nature communications 2021-01, Vol.12 (1), p.49-49, Article 49
Hauptverfasser: Pérez-Jiménez, Mercedes M., Monje-Moreno, José M., Brokate-Llanos, Ana María, Venegas-Calerón, Mónica, Sánchez-García, Alicia, Sansigre, Paula, Valladares, Amador, Esteban-García, Sara, Suárez-Pereira, Irene, Vitorica, Javier, Ríos, José Julián, Artal-Sanz, Marta, Carrión, Ángel M., Muñoz, Manuel J.
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Sprache:eng
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Zusammenfassung:Aging and fertility are two interconnected processes. From invertebrates to mammals, absence of the germline increases longevity. Here we show that loss of function of sul-2 , the Caenorhabditis elegans steroid sulfatase (STS), raises the pool of sulfated steroid hormones, increases longevity and ameliorates protein aggregation diseases. This increased longevity requires factors involved in germline-mediated longevity ( daf-16 , daf-12 , kri-1 , tcer-1 and daf-36 genes) although sul-2 mutations do not affect fertility. Interestingly, sul-2 is only expressed in sensory neurons, suggesting a regulation of sulfated hormones state by environmental cues. Treatment with the specific STS inhibitor STX64, as well as with testosterone-derived sulfated hormones reproduces the longevity phenotype of sul-2 mutants. Remarkably, those treatments ameliorate protein aggregation diseases in C. elegans , and STX64 also Alzheimer’s disease in a mammalian model. These results open the possibility of reallocating steroid sulfatase inhibitors or derivates for the treatment of aging and aging related diseases. Sul-2 is a steroid sulfatase in c.elegans. Here the authors show that, in the absence of sul-2 enzymatic activity, worm lifespan is increased, and that chemical inhibition ameliorates symptoms of neurodegenerative disorders in worms and mice.
ISSN:2041-1723
2041-1723
DOI:10.1038/s41467-020-20269-y