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It is possible to limit the accumulation of lipids in cells

Spanish researchers from the August Pi i Sunyer Biomedical Research Institute (IDIBAPS) in Bardelone have discovered a new molecular mechanism involved in regulating the movement of cholesterol in cells. Their work has been published in the journal Cellular and Molecular Life Sciences.

The study was conducted by Carles Enrich and Carles Rentero, professors in the cell biology unit of the department of biomedicine at the faculty of medicine and health sciences at the Cellex Biomedical Research Center.

Block cholesterol concentration

During the study, the researchers identified the protein Annexin A6 (AnxA6), which acts as a key factor in regulating the movement of cholesterol in cells. In cases where diseases caused by the accumulation of cholesterol and other lipids in the endosomes can be avoided, it can act as a potential therapeutic target. This new molecular mechanism can protect against conditions such as Niemann-Pick type C1 disease, which is caused by a mutation in the NPC1 gene, which causes cholesterol buildup in the cellular interior of the endosome and which is an incurable minority genetic disease, causing liver damage and a type of dementia.

“Understanding these mechanisms is very important in treating diseases where the accumulation of cholesterol and other lipids causes serious physiological changes in the liver, spleen and nervous system,” note Carles Enrich and Carles Rentero.

For a deeper understanding, the researchers used the genetic editing technique CRISPR-Cas9 to block AnxA6 in cells with the disease phenotype. This resulted in the release of endosomal cholesterol, showing the key role of this protein in the regulation of cholesterol transfer.

One possible use against a dozen diseases

This release occurred due to a significant increase in membrane contact sites, nanoscale structures visible under the electron microscope. The researchers explain that these membrane contact sites are just a few inside the cells of affected patients.

Therefore, silencing AnxA6 stops the effect of the NPC1 gene mutation and redirects cholesterol to other cellular compartments, to return to cellular normal.

“The results could help address the clinical consequences of cholesterol buildup in patients with Niemann-Pick disease and a dozen other pathologies, including different types of cancer (pancreas, prostate, breast), in which lipid metabolism plays a fundamental role ”, underline the researchers.

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