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Cystinosis is an autosomal recessive disorder characterized by defective transport of cystine across the lysosomal membrane and resulting in renal, ophthalmic, and other organ abnormalities. Mutations in the CTNS gene cause a deficiency of the transport protein, cystinosin. We performed mutation analysis of CTNS in six cystinosis patients from four families in Thailand. Using PCR sequencing of the entire coding regions, we identified all eight mutant alleles, including two mutations, p.G309D and p.Q284X, that have not been previously reported. This study expands the mutational and population spectrum of nephropathic cystinosis.  相似文献   
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Recent evidence implies that impaired metabolism of glutathione has a role in the pathogenesis of nephropathic cystinosis. This recessive inherited disorder is characterized by lysosomal cystine accumulation and results in renal Fanconi syndrome progressing to end stage renal disease in the majority of patients. The most common treatment involves intracellular cystine depletion by cysteamine, delaying the development of end stage renal disease by a yet elusive mechanism. However, cystine depletion does not arrest the disease nor cures Fanconi syndrome in patients, indicating involvement of other yet unknown pathologic pathways. Using a newly developed proximal tubular epithelial cell model from cystinotic patients, we investigate the effect of cystine accumulation and cysteamine on both glutathione and ATP metabolism. In addition to the expected increase in cystine and defective sodium-dependent phosphate reabsorption, we observed less negative glutathione redox status and decreased intracellular ATP levels. No differences between control and cystinosis cell lines were observed with respect to protein turnover, albumin uptake, cytosolic and mitochondrial ATP production, total glutathione levels, protein oxidation and lipid peroxidation. Cysteamine treatment increased total glutathione in both control and cystinotic cells and normalized cystine levels and glutathione redox status in cystinotic cells. However, cysteamine did not improve decreased sodium-dependent phosphate uptake. Our data implicate that cysteamine increases total glutathione and restores glutathione redox status in cystinosis, which is a positive side-effect of this agent next to cystine depletion. This beneficial effect points to a potential role of cysteamine as anti-oxidant for other renal disorders associated with enhanced oxidative stress.  相似文献   
3.
Kiehntopf M  Varga RE  Koch HG  Beetz C 《Gene》2012,495(1):89-92
Infantile nephropatic cystinosis is a rare, recessive, and genetically homogeneous disorder impairing renal function. It is caused by mutations in CTNS. Several large copy number aberrations have been identified but, for the majority of these, heterozygous patients and carriers can not easily be identified. We therefore developed a multiplex ligation-dependent probe amplification assay targeting eight of the twelve CTNS exons. We show that this assay is valid in detecting known deletions in both the homozygous and heterozygous state. The application to a family previously found mutation-negative by conventional screening revealed a novel large deletion which, as the first of its kind, does not involve the coding region. We conclude that our assay represents a valid tool for further completing the CTNS mutation spectrum and for simplified carrier testing in cystinosis families harboring copy number mutations. More generally, our study exemplifies the use of synthetic, homemade MLPA probesets as cheap, efficient, and rapidly available screening tools for small genes and/or very rare diseases.  相似文献   
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