Literature DB >> 20079424

Modulation of CTNS gene expression by intracellular thiols.

Francesco Bellomo1, Serena Corallini, Anna Pastore, Alessia Palma, Chiara Laurenzi, Francesco Emma, Anna Taranta.   

Abstract

The cysteine/cystine (Cys/CySS) couple represents one of the major cell thiol/disulfide systems and is involved in the regulation of several metabolic pathways and the cell redox state. Nephropathic cystinosis (NC) is an autosomal recessive disease characterized by renal cellular dysfunction due to mutations in the CTNS gene, which encodes cystinosin, a CySS lysosomal transporter. To analyze the mechanisms involved in cell damage in NC, we have investigated the effects of CTNS gene overexpression or inhibition on cell thiol/disulfide systems and vice versa. Overexpression of the CTNS gene had no remarkable effect on intracellular Cys/CySS and GSH/GSSG redox state. Silencing the CTNS gene increased cell CySS and Cys and decreased cell GSH and GSSG and increased mildly the redox state of the Cys/CySS-couple. Extracellular CySS and Cys deprivation for 48 h caused an oxidation of the Cys/CySS (73 mV) and GSH/GSSG (100 mV) redox couples and increased CTNS mRNA levels by 1.9+/-0.2-fold (p<0.001). Conversely, a reduced cell environment associated with a GSH/GSSG reduction from -250.1+/-3.10 to -330.6+/-4.70 mV (p<0.001) and a Cys/CySS reduction from -167.0+/-11.30 to -240.0+/-8.17 mV (p<0.005) was associated with a 40% decrease in CTNS mRNA levels (p<0.05). By regression analysis, CTNS gene expression was correlated with intracellular Cys level and with Cys/CySS redox state. 2010 Elsevier Inc. All rights reserved.

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Year:  2010        PMID: 20079424     DOI: 10.1016/j.freeradbiomed.2010.01.011

Source DB:  PubMed          Journal:  Free Radic Biol Med        ISSN: 0891-5849            Impact factor:   7.376


  10 in total

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2.  Gyrfalcons Falco rusticolus adjust CTNS expression to food abundance: a possible contribution to cysteine homeostasis.

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Journal:  Oecologia       Date:  2017-07-20       Impact factor: 3.225

3.  Cystine accumulation attenuates insulin release from the pancreatic β-cell due to elevated oxidative stress and decreased ATP levels.

Authors:  Bernadette McEvoy; Rodolfo Sumayao; Craig Slattery; Tara McMorrow; Philip Newsholme
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4.  Cell-Based Phenotypic Drug Screening Identifies Luteolin as Candidate Therapeutic for Nephropathic Cystinosis.

Authors:  Ester De Leo; Mohamed A Elmonem; Sante Princiero Berlingerio; Marine Berquez; Beatrice Paola Festa; Roberto Raso; Francesco Bellomo; Tobias Starborg; Manoe Jacoba Janssen; Zeinab Abbaszadeh; Sara Cairoli; Bianca Maria Goffredo; Rosalinde Masereeuw; Olivier Devuyst; Martin Lowe; Elena Levtchenko; Alessandro Luciani; Francesco Emma; Laura Rita Rega
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5.  Distribution of cystinosin-LKG in human tissues.

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6.  Nephropathic cystinosis: an international consensus document.

Authors:  Francesco Emma; Galina Nesterova; Craig Langman; Antoine Labbé; Stephanie Cherqui; Paul Goodyer; Mirian C Janssen; Marcella Greco; Rezan Topaloglu; Ewa Elenberg; Ranjan Dohil; Doris Trauner; Corinne Antignac; Pierre Cochat; Frederick Kaskel; Aude Servais; Elke Wühl; Patrick Niaudet; William Van't Hoff; William Gahl; Elena Levtchenko
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Review 7.  The Role of Cystinosin in the Intermediary Thiol Metabolism and Redox Homeostasis in Kidney Proximal Tubular Cells.

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Review 9.  Programmed Cell Death in Cystinosis.

Authors:  Elizabeth G Ames; Jess G Thoene
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10.  Carboxyl-Terminal SSLKG Motif of the Human Cystinosin-LKG Plays an Important Role in Plasma Membrane Sorting.

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  10 in total

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