The steroid hormone ADIOL promotes learning by reducing neural kynurenic acid levels

Author:

Lemieux George A.,Yoo Shinja,Lin Lin,Vohra Mihir,Ashrafi Kaveh

Abstract

Reductions in brain kynurenic acid levels, a neuroinhibitory metabolite, improve cognitive function in diverse organisms. Thus, modulation of kynurenic acid levels is thought to have therapeutic potential in a range of brain disorders. Here we report that the steroid 5-androstene 3β, 17β-diol (ADIOL) reduces kynurenic acid levels and promotes associative learning inCaenorhabditis elegans. We identify the molecular mechanisms through which ADIOL links peripheral metabolic pathways to neural mechanisms of learning capacity. Moreover, we show that in aged animals, which normally experience rapid cognitive decline, ADIOL improves learning capacity. The molecular mechanisms that underlie the biosynthesis of ADIOL as well as those through which it promotes kynurenic acid reduction are conserved in mammals. Thus, rather than a minor intermediate in the production of sex steroids, ADIOL is an endogenous hormone that potently regulates learning capacity by causing reductions in neural kynurenic acid levels.

Funder

NIH

Office of Research Infrastructure Programs

Program in Breakthrough Biomedical Research

Publisher

Cold Spring Harbor Laboratory

Subject

Developmental Biology,Genetics

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