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1.
Anal Bioanal Chem ; 407(8): 2283-91, 2015 Mar.
Article En | MEDLINE | ID: mdl-25542581

Fabry disease is an X-linked lysosomal storage disease due to deficient α-galactosidase A (α-Gal A) activity and the resultant lysosomal accumulation of globotriaosylceramide (Gb3) and related lipids primarily in blood vessels, kidney, heart, and other organs. The renal distribution of stored glycolipid species in the α-Gal A knockout mouse model was compared to that in mice to assess relative distribution and absolute amounts of accumulated sphingolipid isoforms. Twenty isoforms of five sphingolipid groups were visualized by mass spectrometry imaging (MSI), and their distribution was compared with immunohistochemical (IHC) staining of Gb3, the major stored glycosphingolipid in consecutive tissue sections. Quantitative bulk lipid analysis of tissue sections was assessed by electrospray ionization with tandem mass spectrometry (ESI-MS/MS). In contrast to the findings in wild-type mice, all three analytical techniques (MSI, IHC, and ESI-MS/MS) revealed increases in Gb3 isoforms and ceramide dihexosides (composed mostly of galabiosylceramides), respectively. To our knowledge, this is the first report of the distribution of individual molecular species of Gb3 and galabiosylceramides in kidney sections in Fabry disease mouse. In addition, the spatial distribution of ceramides, ceramide monohexosides, and sphingomyelin forms in renal tissue is presented and discussed in the context of their biosynthesis.


Fabry Disease/metabolism , Kidney/chemistry , Sphingolipids/metabolism , Animals , Disease Models, Animal , Fabry Disease/enzymology , Fabry Disease/genetics , Humans , Immunochemistry , Kidney/metabolism , Mass Spectrometry , Mice , Mice, Knockout , Sphingolipids/chemistry , alpha-Galactosidase/genetics , alpha-Galactosidase/metabolism
2.
Eur J Hum Genet ; 21(10): 1067-73, 2013 Oct.
Article En | MEDLINE | ID: mdl-23386035

Renal hypouricemia (RHUC) is a heterogeneous inherited disorder characterized by impaired tubular uric acid (UA) transport with severe complications, such as acute kidney injury (AKI). Type 1 is caused by a loss-of-function mutation in the SLC22A12 gene (URAT1), type 2 in the SLC2A9 gene (GLUT9). This article describes three Czech families with RHUC type 1. The serum UA in the probands was 0.9, 1.1 and 0.5 mg/dl and expressed as an increase in the fractional excretion of UA (48, 43 and 39%). The sequencing analysis of SLC22A12 revealed three novel variants: p.G366R, p.T467M and a deletion p.L415_G417del. A detailed metabolic investigation in proband C for progressive visual failure supported suspicion of neuronal ceroid lipofuscinosis type 7 conditioned by the mutation in the MFSD8 gene. Functional studies showed significantly decreased urate uptake and a mis-localized URAT1 signal in p.G366R, p.L415_G417del and p.T467M. Furthermore, colocalization studies showed accumulation of URAT1 protein in the endoplasmic reticulum. The findings suggest that loss-of-function mutations cause RHUC via loss of UA absorption partly by protein misfolding. However, they do not necessarily lead to AKI and a possible genotype-phenotype correlation was not proposed. Furthermore, results confirm an uneven geographical and ethnic distribution of SLC22A12 variants; the p.L415_G417del mutation predominates in the Roma ethnic group in the Czech Republic.


Alleles , Gene Frequency , Mutation , Organic Anion Transporters/genetics , Organic Cation Transport Proteins/genetics , Renal Tubular Transport, Inborn Errors/genetics , Urinary Calculi/genetics , Absorption , Acute Kidney Injury/diagnosis , Acute Kidney Injury/etiology , Acute Kidney Injury/genetics , Adult , Animals , Child , Czech Republic , Endoplasmic Reticulum/metabolism , Female , Heterozygote , Humans , Male , Membrane Transport Proteins/genetics , Neuronal Ceroid-Lipofuscinoses/diagnosis , Neuronal Ceroid-Lipofuscinoses/etiology , Neuronal Ceroid-Lipofuscinoses/genetics , Organic Anion Transporters/metabolism , Organic Cation Transport Proteins/metabolism , Pedigree , Renal Tubular Transport, Inborn Errors/complications , Renal Tubular Transport, Inborn Errors/diagnosis , Renal Tubular Transport, Inborn Errors/ethnology , Roma/genetics , Uric Acid/urine , Urinary Calculi/complications , Urinary Calculi/diagnosis , Urinary Calculi/ethnology , Xenopus
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