Literature DB >> 26635355

Effect of SLC26 anion transporter disease-causing mutations on the stability of the homologous STAS domain of E. coli DauA (YchM).

Xiaoyun Bai1, Trevor F Moraes1, Reinhart A F Reithmeier2.   

Abstract

The human solute carrier 26 (SLC26) family of anion transporters consists of ten members that are found in various organs in the body including the stomach, intestine, kidney, thyroid and ear where they transport anions including bicarbonate, chloride and sulfate, typically in an exchange mode. Mutations in these genes cause a plethora of diseases such as diastrophic dysplasia affecting sulfate uptake into chondrocytes (SLC26A2), congenital chloride-losing diarrhoea (SLC26A3) affecting chloride secretion in the intestine and Pendred's syndrome (SLC26A4) resulting in hearing loss. To understand how these mutations affect the structures of the SLC26 membrane proteins and their ability to function properly, 12 human disease-causing mutants from SLC26A2, SLC26A3 and SLC26A4 were introduced into the equivalent sites of the sulfate transporter anti-sigma factor antagonist (STAS) domain of a bacterial homologue SLC26 protein DauA (YchM). Biophysical analyses including size-exclusion chromatography, circular dichroism (CD), differential scanning fluorimetry (DSF) and tryptophan fluorescence revealed that most mutations caused protein instability and aggregation. The mutation A463K, equivalent to N558K in human SLC26A4, which is located within α-helix 1 of the DauA STAS domain, stabilized the protein. CD measurements showed that most disease-related mutants had a mildly reduced helix content, but were more sensitive to thermal denaturation. Fluorescence spectroscopy showed that the mutants had more open structures and were more readily denatured by urea, whereas DSF indicated more labile folds. Overall, we conclude that the disease-associated mutations destabilized the STAS domain resulting in an increased propensity to misfold and aggregate.
© 2016 Authors; published by Portland Press Limited.

Entities:  

Keywords:  SLC26; STAS domain; anion transporters; inherited diseases; membrane protein folding

Mesh:

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Year:  2015        PMID: 26635355     DOI: 10.1042/BJ20151025

Source DB:  PubMed          Journal:  Biochem J        ISSN: 0264-6021            Impact factor:   3.857


  3 in total

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Authors:  Ariadna Delgado-Bermúdez; Marc Yeste; Sergi Bonet; Elisabeth Pinart
Journal:  Int J Mol Sci       Date:  2022-06-06       Impact factor: 6.208

2.  Human SLC26A4/Pendrin STAS domain is a nucleotide-binding protein: Refolding and characterization for structural studies.

Authors:  Alok K Sharma; Tobias Krieger; Alan C Rigby; Israel Zelikovic; Seth L Alper
Journal:  Biochem Biophys Rep       Date:  2016-08-26

Review 3.  Importance of SLC26 Transmembrane Anion Exchangers in Sperm Post-testicular Maturation and Fertilization Potential.

Authors:  Aminata Touré
Journal:  Front Cell Dev Biol       Date:  2019-10-18
  3 in total

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