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The Discovery of Highly Potent THP Derivatives as OCTN2 Inhibitors: From Structure-Based Virtual Screening to In Vivo Biological Activity

Authors :
Umberto Galderisi
Camillo Rosano
Anna Calarco
Filomena Anna Digilio
Carmela Saturnino
Maria Stefania Sinicropi
Gianfranco Peluso
Mariarosa A. B. Melone
Francesca Di Cristo
Di Cristo, Francesca
Calarco, Anna
Anna Digilio, Filomena
Stefania Sinicropi, Maria
Rosano, Camillo
Galderisi, Umberto
Melone, Mariarosa Anna Beatrice
Saturnino, Carmela
Gianfranco Peluso, And
Source :
International Journal of Molecular Sciences, Vol 21, Iss 7431, p 7431 (2020), International Journal of Molecular Sciences, Volume 21, Issue 19
Publication Year :
2020
Publisher :
MDPI AG, 2020.

Abstract

A mismatch between &beta<br />oxidation and the tricarboxylic acid cycle (TCA) cycle flux in mitochondria produces an accumulation of lipid metabolic intermediates, resulting in both blunted metabolic flexibility and decreased glucose utilization in the affected cells. The ability of the cell to switch to glucose as an energy substrate can be restored by reducing the reliance of the cell on fatty acid oxidation. The inhibition of the carnitine system, limiting the carnitine shuttle to the oxidation of lipids in the mitochondria, allows cells to develop a high plasticity to metabolic rewiring with a decrease in fatty acid oxidation and a parallel increase in glucose oxidation. We found that 3-(2,2,2-trimethylhydrazine)propionate (THP), which is able to reduce cellular carnitine levels by blocking both carnitine biosynthesis and the cell membrane carnitine/organic cation transporter (OCTN2), was reported to improve mitochondrial dysfunction in several diseases, such as Huntington&rsquo<br />s disease (HD). Here, new THP-derived carnitine-lowering agents (TCL), characterized by a high affinity for the OCTN2 with a minimal effect on carnitine synthesis, were developed, and their biological activities were evaluated in both in vitro and in vivo HD models. Certain compounds showed promising biological activities: reducing protein aggregates in HD cells, ameliorating motility defects, and increasing the lifespan of HD Drosophila melanogaster.

Details

Language :
English
ISSN :
16616596 and 14220067
Volume :
21
Issue :
7431
Database :
OpenAIRE
Journal :
International Journal of Molecular Sciences
Accession number :
edsair.doi.dedup.....6cd0796211e1676a88b597d08ce0203c