Untargeted Metabolomics Uncovers the Essential Lysine Transporter in .

Metabolites

Department of Microbiology and Molecular Medicine, University of Geneva, CMU, Rue Michel-Servet 1, 1211 Geneva, Switzerland.

Published: July 2021

AI Article Synopsis

  • Apicomplexan parasites cause serious diseases like malaria and toxoplasmosis, and existing treatments face challenges such as drug resistance and high costs.
  • These parasites need to take in specific nutrients from their hosts and lack the ability to synthesize some key metabolites, including lysine.
  • The research identified a transporter called TgApiAT6-1 that helps these parasites absorb lysine, using untargeted metabolomics to demonstrate this essential nutrient uptake.

Article Abstract

Apicomplexan parasites are responsible for devastating diseases, including malaria, toxoplasmosis, and cryptosporidiosis. Current treatments are limited by emerging resistance to, as well as the high cost and toxicity of existing drugs. As obligate intracellular parasites, apicomplexans rely on the uptake of many essential metabolites from their host. , the causative agent of toxoplasmosis, is auxotrophic for several metabolites, including sugars (e.g., myo-inositol), amino acids (e.g., tyrosine), lipidic compounds and lipid precursors (cholesterol, choline), vitamins, cofactors (thiamine) and others. To date, only few apicomplexan metabolite transporters have been characterized and assigned a substrate. Here, we set out to investigate whether untargeted metabolomics can be used to identify the substrate of an uncharacterized transporter. Based on existing genome- and proteome-wide datasets, we have identified an essential plasma membrane transporter of the major facilitator superfamily in -previously termed TgApiAT6-1. Using an inducible system based on RNA degradation, TgApiAT6-1 was depleted, and the mutant parasite's metabolome was compared to that of non-depleted parasites. The most significantly reduced metabolite in parasites depleted in TgApiAT6-1 was identified as the amino acid lysine, for which is predicted to be auxotrophic. Using stable isotope-labeled amino acids, we confirmed that TgApiAT6-1 is required for efficient lysine uptake. Our findings highlight untargeted metabolomics as a powerful tool to identify the substrate of orphan transporters.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC8399914PMC
http://dx.doi.org/10.3390/metabo11080476DOI Listing

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