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Impaired phosphate transport in SLC34A2 variants in patients with pulmonary alveolar microlithiasis.
Jönsson ÅLM
,
Hernando N
,
Knöpfel T
,
Mogensen S
,
Bendstrup E
,
Hilberg O
,
Christensen JH
,
Simonsen U
,
Wagner CA
.
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BACKGROUND: Variants in SLC34A2 encoding the sodium-dependent phosphate transport protein 2b (NaPi-IIb) cause the rare lung disease pulmonary alveolar microlithiasis (PAM). PAM is characterised by the deposition of calcium-phosphate concretions in the alveoli usually progressing over time. No effective treatment is available. So far, 30 allelic variants in patients have been reported but only a few have been functionally characterised. This study aimed to determine the impact of selected SLC34A2 variants on transporter expression and phosphate uptake in cellular studies.
METHODS: Two nonsense variants (c.910A > T and c.1456C > T), one frameshift (c.1328delT), and one in-frame deletion (c.1402_1404delACC) previously reported in patients with PAM were selected for investigation. Wild-type and mutant c-Myc-tagged human NaPi-IIb constructs were expressed in Xenopus laevis oocytes. The transport function was investigated with a 32Pi uptake assay. NaPi-IIb protein expression and localisation were determined with immunoblotting and immunohistochemistry, respectively.
RESULTS: Oocytes injected with the wild-type human NaPi-IIb construct had significant 32Pi transport compared to water-injected oocytes. In addition, the protein had a molecular weight as expected for the glycosylated form, and it was readily detectable in the oocyte membrane. Although the protein from the Thr468del construct was synthesised and expressed in the oocyte membrane, phosphate transport was similar to non-injected control oocytes. All other mutants were non-functional and not expressed in the membrane, consistent with the expected impact of the truncations caused by premature stop codons.
CONCLUSIONS: Of four analysed SLC34A2 variants, only the Thr468del showed similar protein expression as the wild-type cotransporter in the oocyte membrane. All mutant transporters were non-functional, supporting that dysfunction of NaPi-IIb underlies the pathology of PAM.
Arima,
Glucocorticoid regulation and glycosylation of mouse intestinal type IIb Na-P(i) cotransporter during ontogeny.
2002, Pubmed
Arima,
Glucocorticoid regulation and glycosylation of mouse intestinal type IIb Na-P(i) cotransporter during ontogeny.
2002,
Pubmed
Bendstrup,
Pulmonary alveolar microlithiasis: no longer in the stone age.
2020,
Pubmed
Castellana,
Pulmonary alveolar microlithiasis: review of the 1022 cases reported worldwide.
2015,
Pubmed
Corut,
Mutations in SLC34A2 cause pulmonary alveolar microlithiasis and are possibly associated with testicular microlithiasis.
2006,
Pubmed
Fenollar-Ferrer,
Identification of the first sodium binding site of the phosphate cotransporter NaPi-IIa (SLC34A1).
2015,
Pubmed
,
Xenbase
Fenollar-Ferrer,
Structural fold and binding sites of the human Na⁺-phosphate cotransporter NaPi-II.
2014,
Pubmed
Forster,
The molecular mechanism of SLC34 proteins: insights from two decades of transport assays and structure-function studies.
2019,
Pubmed
Forster,
Phosphate transport kinetics and structure-function relationships of SLC34 and SLC20 proteins.
2012,
Pubmed
,
Xenbase
Forster,
Phosphate transporters of the SLC20 and SLC34 families.
2013,
Pubmed
Frei,
Identification and localization of sodium-phosphate cotransporters in hepatocytes and cholangiocytes of rat liver.
2005,
Pubmed
Hernando,
Mechanisms and Regulation of Intestinal Phosphate Absorption.
2018,
Pubmed
Hernando,
Intestinal Depletion of NaPi-IIb/Slc34a2 in Mice: Renal and Hormonal Adaptation.
2015,
Pubmed
Hilfiker,
Characterization of a murine type II sodium-phosphate cotransporter expressed in mammalian small intestine.
1998,
Pubmed
,
Xenbase
Huber,
Sodium-dependent phosphate transport across the apical membrane of alveolar epithelium in caprine mammary gland.
2007,
Pubmed
Huqun,
Mutations in the SLC34A2 gene are associated with pulmonary alveolar microlithiasis.
2007,
Pubmed
,
Xenbase
Jönsson,
Pulmonary alveolar microlithiasis: two case reports and review of the literature.
2012,
Pubmed
Jönsson,
Eight novel variants in the SLC34A2 gene in pulmonary alveolar microlithiasis.
2020,
Pubmed
Kim,
Reactive oxygen species regulate a slingshot-cofilin activation pathway.
2009,
Pubmed
Knöpfel,
The intestinal phosphate transporter NaPi-IIb (Slc34a2) is required to protect bone during dietary phosphate restriction.
2017,
Pubmed
Lambert,
Cysteine mutagenesis reveals novel structure-function features within the predicted third extracellular loop of the type IIa Na(+)/P(i) cotransporter.
2001,
Pubmed
,
Xenbase
Ma,
Effect of SLC34A2 gene mutation on extracellular phosphorus transport in PAM alveolar epithelial cells.
2018,
Pubmed
Magagnin,
Expression cloning of human and rat renal cortex Na/Pi cotransport.
1993,
Pubmed
,
Xenbase
Motta,
Expression of NaPi-IIb in rodent and human kidney and upregulation in a model of chronic kidney disease.
2020,
Pubmed
Patti,
Conferring electrogenicity to the electroneutral phosphate cotransporter NaPi-IIc (SLC34A3) reveals an internal cation release step.
2013,
Pubmed
,
Xenbase
Perry,
Expression of pluripotency factors in larval epithelia of the frog Xenopus: evidence for the presence of cornea epithelial stem cells.
2013,
Pubmed
,
Xenbase
Proesmans,
Pulmonary alveolar microlithiasis: a case report and review of the literature.
2012,
Pubmed
Sabbagh,
Intestinal npt2b plays a major role in phosphate absorption and homeostasis.
2009,
Pubmed
Saito,
Modeling pulmonary alveolar microlithiasis by epithelial deletion of the Npt2b sodium phosphate cotransporter reveals putative biomarkers and strategies for treatment.
2015,
Pubmed
Sievers,
Fast, scalable generation of high-quality protein multiple sequence alignments using Clustal Omega.
2011,
Pubmed
The UniProt Consortium,
UniProt: the universal protein knowledgebase.
2017,
Pubmed
Traebert,
Expression of type II Na-P(i) cotransporter in alveolar type II cells.
1999,
Pubmed
Virkki,
Functional characterization of two naturally occurring mutations in the human sodium-phosphate cotransporter type IIa.
2003,
Pubmed
,
Xenbase
Wang,
SLC34A2 gene compound heterozygous mutation identification in a patient with pulmonary alveolar microlithiasis and computational 3D protein structure prediction.
2014,
Pubmed
Xu,
Regulation of intestinal NaPi-IIb cotransporter gene expression by estrogen.
2003,
Pubmed
Yates,
Genenames.org: the HGNC and VGNC resources in 2017.
2017,
Pubmed
Yin,
SLC34A2 Gene mutation of pulmonary alveolar microlithiasis: report of four cases and review of literatures.
2013,
Pubmed
Zerbino,
Ensembl 2018.
2018,
Pubmed
Zhong,
[A novel mutation of the SLC34A2 gene in a Chinese pedigree with pulmonary alveolar microlithiasis].
2009,
Pubmed