Functional Characterization of Wild-Type and a Mutated Form of SLC26A4 Identified in a Patient with Pendred Syndrome
Open Access
- 1 January 2006
- journal article
- Published by S. Karger AG in Cellular Physiology and Biochemistry
- Vol. 17 (5-6) , 245-256
- https://doi.org/10.1159/000094137
Abstract
Malfunction of the SLC26A4 protein leads to prelingual deafness often associated with mild thyroid dysfunction and goiter. It is assumed that SLC26A4 acts as a chloride/anion exchanger responsible for the iodide organification in the thyroid gland, and conditioning of the endolymphatic fluid in the inner ear. Chloride uptake studies were made using HEK293-Phoenix cells expressing human wild type SLC26A4 (pendrin) and a mutant (SLC26A4(S28R)) we recently described in a patient with hypothyroidism, goiter and sensorineural hearing loss. Experiments are summarized showing the functional characterization of wild type SLC26A4 and a mutant (S28R), which we described recently. This mutant protein is transposed towards the cell membrane, however, its transport capability is markedly reduced if compared to wild-type SLC26A4. Furthermore, we show that the SLC26A4 induced chloride uptake in HEK293-Phoenix cells competes with iodide, and, in addition, that the chloride uptake can be blocked by NPPB and niflumic acid, whereas DIDS is ineffective. The functional characteristics of SLC26A4(S28R) we describe here, are consistent with the clinical phenotype observed in the patient from which the mutant was derived.Keywords
This publication has 49 references indexed in Scilit:
- Screening of SLC26A4 (PDS) gene in Pendred's syndrome: a large spectrum of mutations in France and phenotypic heterogeneityClinical Genetics, 2004
- Functional Characterization of Pendrin in a Polarized Cell SystemJournal of Biological Chemistry, 2004
- The SLC26 gene family of multifunctional anion exchangersPflügers Archiv - European Journal of Physiology, 2004
- Differential Diagnosis between Pendred and Pseudo-Pendred Syndromes: Clinical, Radiologic, and Molecular StudiesPediatric Research, 2002
- Molecular Analysis of the Pendred's Syndrome Gene and Magnetic Resonance Imaging Studies of the Inner Ear Are Essential for the Diagnosis of True Pendred's SyndromeJournal of Clinical Endocrinology & Metabolism, 2000
- Pendrin, the Protein Encoded by the Pendred Syndrome Gene (PDS), Is an Apical Porter of Iodide in the Thyroid and Is Regulated by Thyroglobulin in FRTL-5 CellsEndocrinology, 2000
- The STAS domain — a link between anion transporters and antisigma-factor antagonistsCurrent Biology, 2000
- Radiological malformations of the ear in pendred syndromeClinical Radiology, 1998
- Pendred syndrome is caused by mutations in a putative sulphate transporter gene (PDS)Nature Genetics, 1997
- Retroviral vectors containing putative internal ribosome entry sites: development of a polycistronic gene transfer system and applications to human gene therapyNucleic Acids Research, 1992