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Analysis of LPI-causing mutations on y+LAT1 function and localization

BACKGROUND: y+LAT1, encoded by SCL7A7, is the protein mutated in Lysinuric Protein Intolerance (LPI), a rare metabolic disease caused by a defective cationic amino acid (CAA, arginine, lysine, ornithine) transport at the basolateral membrane of intestinal and renal tubular cells. The disease is char...

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Autores principales: Rotoli, Bianca Maria, Barilli, Amelia, Ingoglia, Filippo, Visigalli, Rossana, Bianchi, Massimiliano G., Ferrari, Francesca, Martinelli, Diego, Dionisi-Vici, Carlo, Dall’Asta, Valeria
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6399926/
https://www.ncbi.nlm.nih.gov/pubmed/30832686
http://dx.doi.org/10.1186/s13023-019-1028-2
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author Rotoli, Bianca Maria
Barilli, Amelia
Ingoglia, Filippo
Visigalli, Rossana
Bianchi, Massimiliano G.
Ferrari, Francesca
Martinelli, Diego
Dionisi-Vici, Carlo
Dall’Asta, Valeria
author_facet Rotoli, Bianca Maria
Barilli, Amelia
Ingoglia, Filippo
Visigalli, Rossana
Bianchi, Massimiliano G.
Ferrari, Francesca
Martinelli, Diego
Dionisi-Vici, Carlo
Dall’Asta, Valeria
author_sort Rotoli, Bianca Maria
collection PubMed
description BACKGROUND: y+LAT1, encoded by SCL7A7, is the protein mutated in Lysinuric Protein Intolerance (LPI), a rare metabolic disease caused by a defective cationic amino acid (CAA, arginine, lysine, ornithine) transport at the basolateral membrane of intestinal and renal tubular cells. The disease is characterized by protein-rich food intolerance with secondary urea cycle disorder, but symptoms are heterogeneous with lung and immunological complications that are not explainable by the CAA transport defect. With the exception of the Finnish founder mutation (c.895-2A > T, LPI(Fin)), LPI-causative mutations are heterogeneous and genotype-phenotype correlations have not been found. Here we addressed system y(+)L-mediated arginine uptake in monocytes from three LPI Italian patients and in lymphoblasts carrying the same mutations; in parallel, the genetic defects carried by the patients were reproduced as eGFP-tagged y+LAT1 mutants in transfected CHO cells to define the function and localization protein. RESULTS: System y(+)L activity is impaired in monocytes isolated from all LPI patients, and in CHO cells transfected with the three eGFP-y+LAT1 mutants, but not in lymphoblasts bearing the same mutations. The analysis of protein localization with confocal microscopy revealed that the eGFP-tagged mutants were retained inside the cytosol, with a pattern of expression quite heterogeneous among the mutants. CONCLUSIONS: The three mutations studied of y+LAT1 transporter result in a defective arginine transport both in ex vivo (monocytes) and in vitro (CHO transfected cells) models, likely caused by the retention of the mutated proteins in the cytosol. The different effect of y+LAT1 mutation on arginine transport in monocytes and lymphoblasts is supposed to be due to the different expression of SLC7A7 mRNA in the two models, supporting the hypothesis that the impact of LPI defect largely depends on the relative abundance of LPI target gene in each cell type. ELECTRONIC SUPPLEMENTARY MATERIAL: The online version of this article (10.1186/s13023-019-1028-2) contains supplementary material, which is available to authorized users.
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spelling pubmed-63999262019-03-13 Analysis of LPI-causing mutations on y+LAT1 function and localization Rotoli, Bianca Maria Barilli, Amelia Ingoglia, Filippo Visigalli, Rossana Bianchi, Massimiliano G. Ferrari, Francesca Martinelli, Diego Dionisi-Vici, Carlo Dall’Asta, Valeria Orphanet J Rare Dis Research BACKGROUND: y+LAT1, encoded by SCL7A7, is the protein mutated in Lysinuric Protein Intolerance (LPI), a rare metabolic disease caused by a defective cationic amino acid (CAA, arginine, lysine, ornithine) transport at the basolateral membrane of intestinal and renal tubular cells. The disease is characterized by protein-rich food intolerance with secondary urea cycle disorder, but symptoms are heterogeneous with lung and immunological complications that are not explainable by the CAA transport defect. With the exception of the Finnish founder mutation (c.895-2A > T, LPI(Fin)), LPI-causative mutations are heterogeneous and genotype-phenotype correlations have not been found. Here we addressed system y(+)L-mediated arginine uptake in monocytes from three LPI Italian patients and in lymphoblasts carrying the same mutations; in parallel, the genetic defects carried by the patients were reproduced as eGFP-tagged y+LAT1 mutants in transfected CHO cells to define the function and localization protein. RESULTS: System y(+)L activity is impaired in monocytes isolated from all LPI patients, and in CHO cells transfected with the three eGFP-y+LAT1 mutants, but not in lymphoblasts bearing the same mutations. The analysis of protein localization with confocal microscopy revealed that the eGFP-tagged mutants were retained inside the cytosol, with a pattern of expression quite heterogeneous among the mutants. CONCLUSIONS: The three mutations studied of y+LAT1 transporter result in a defective arginine transport both in ex vivo (monocytes) and in vitro (CHO transfected cells) models, likely caused by the retention of the mutated proteins in the cytosol. The different effect of y+LAT1 mutation on arginine transport in monocytes and lymphoblasts is supposed to be due to the different expression of SLC7A7 mRNA in the two models, supporting the hypothesis that the impact of LPI defect largely depends on the relative abundance of LPI target gene in each cell type. ELECTRONIC SUPPLEMENTARY MATERIAL: The online version of this article (10.1186/s13023-019-1028-2) contains supplementary material, which is available to authorized users. BioMed Central 2019-03-04 /pmc/articles/PMC6399926/ /pubmed/30832686 http://dx.doi.org/10.1186/s13023-019-1028-2 Text en © The Author(s). 2019 Open AccessThis article is distributed under the terms of the Creative Commons Attribution 4.0 International License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution, and reproduction in any medium, provided you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The Creative Commons Public Domain Dedication waiver (http://creativecommons.org/publicdomain/zero/1.0/) applies to the data made available in this article, unless otherwise stated.
spellingShingle Research
Rotoli, Bianca Maria
Barilli, Amelia
Ingoglia, Filippo
Visigalli, Rossana
Bianchi, Massimiliano G.
Ferrari, Francesca
Martinelli, Diego
Dionisi-Vici, Carlo
Dall’Asta, Valeria
Analysis of LPI-causing mutations on y+LAT1 function and localization
title Analysis of LPI-causing mutations on y+LAT1 function and localization
title_full Analysis of LPI-causing mutations on y+LAT1 function and localization
title_fullStr Analysis of LPI-causing mutations on y+LAT1 function and localization
title_full_unstemmed Analysis of LPI-causing mutations on y+LAT1 function and localization
title_short Analysis of LPI-causing mutations on y+LAT1 function and localization
title_sort analysis of lpi-causing mutations on y+lat1 function and localization
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6399926/
https://www.ncbi.nlm.nih.gov/pubmed/30832686
http://dx.doi.org/10.1186/s13023-019-1028-2
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