Adipose tissue coregulates cognitive function

Author:

Oliveras-Cañellas Núria1234ORCID,Castells-Nobau Anna1234ORCID,de la Vega-Correa Lisset1234ORCID,Latorre-Luque Jessica1234ORCID,Motger-Albertí Anna123ORCID,Arnoriaga-Rodriguez Maria123ORCID,Garre-Olmo Josep5ORCID,Zapata-Tona Cristina12ORCID,Coll-Martínez Clàudia6ORCID,Ramió-Torrentà Lluís467ORCID,Moreno-Navarrete José Maria123ORCID,Puig Josep8ORCID,Villarroya Francesc39ORCID,Ramos Rafel410ORCID,Casadó-Anguera Verònica1112ORCID,Martín-García Elena1112ORCID,Maldonado Rafael1112,Mayneris-Perxachs Jordi123ORCID,Fernández-Real José Manuel1234ORCID

Affiliation:

1. Department of Diabetes, Endocrinology and Nutrition, Dr. Josep Trueta University Hospital, Girona, Spain.

2. Nutrition, Eumetabolism and Health Group, Girona Biomedical Research Institute (IdibGi), Girona, Spain.

3. CIBER Fisiopatología de la Obesidad y Nutrición (CIBERobn), Instituto de Salud Carlos III, Madrid, Spain.

4. Department of Medical Sciences, School of Medicine, University of Girona, Girona, Spain.

5. Department of Nursing (Serra-Hunter Professor), University of Girona, Girona, Spain.

6. Neuroimmunology and Multiple Sclerosis Unit, Department of Neurology, Dr. Josep Trueta University Hospital, Girona, Spain.

7. Girona Neurodegeneration and Neuroinflammation Group, Girona Biomedical Research Institute (IdibGi), Girona, Spain.

8. Department of Radiology (IDI), Girona Biomedical Research Institute (IdIBGi), Dr. Josep Trueta University Hospital, Girona, Spain.

9. Department of Biology, University of Barcelona, Barcelona. Spain.

10. Vascular Health Research Group of Girona (ISV-Girona), Jordi Gol Institute for Primary Care Research (Institut Universitari per a la Recerca en Atenció Primària Jordi Gol I Gorina -IDIAPJGol), Girona, Spain.

11. Laboratory of Neuropharmacology-Neurophar, Department of Medicine and Life Sciences, Universitat Pompeu Fabra (UPF), Barcelona, Spain.

12. Hospital del Mar Medical Research Institute (IMIM), Barcelona, Catalonia, Spain.

Abstract

Obesity is associated with cognitive decline. Recent observations in mice propose an adipose tissue (AT)–brain axis. We identified 188 genes from RNA sequencing of AT in three cohorts that were associated with performance in different cognitive domains. These genes were mostly involved in synaptic function, phosphatidylinositol metabolism, the complement cascade, anti-inflammatory signaling, and vitamin metabolism. These findings were translated into the plasma metabolome. The circulating blood expression levels of most of these genes were also associated with several cognitive domains in a cohort of 816 participants. Targeted misexpression of candidate gene ortholog in the Drosophila fat body significantly altered flies memory and learning. Among them, down-regulation of the neurotransmitter release cycle–associated gene SLC18A2 improved cognitive abilities in Drosophila and in mice. Up-regulation of RIMS1 in Drosophila fat body enhanced cognitive abilities. Current results show previously unidentified connections between AT transcriptome and brain function in humans, providing unprecedented diagnostic/therapeutic targets in AT.

Publisher

American Association for the Advancement of Science (AAAS)

Subject

Multidisciplinary

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