Clinical Characteristics and In Silico Analysis of Cystinuria Caused by a Novel SLC3A1 Mutation
Клинические характеристики и in silico-анализ цистинурии, вызванной новой мутацией SLC3A1
2022-11-21
SCID: 54.1/7k5zz3tt
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Cys273Tyr mutationCystinuriaSLC3A1 mutationsWhole Exome Sequencing (WES)compound heterozygous mutations
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Abstract (AI)
Cystinuria is a genetically inherited disorder of renal and intestinal transport, featured as a high concentration of cystine in the urine. Cumulative cystine in urine would cause the formation of kidney stones, which further leads to renal colic and dysfunction. Gene screens have found that mutations in <i>SLC3A1 or SLC7A9</i> gene are responsible for most cases of cystinuria, for encoding defective cystine transporters. Here, we presented the genotypic and phenotypic characteristics of one unique case of a three-generation Chinese family. The proband developed severe urolithiasis combined with renal damage. The radiography and computed tomography (CT) scan showed calculus in the left pelvic kidney. Postoperative stone analysis revealed that the stones were mainly composed of cystine. Therefore, to explore its pathogenesis, next-generation Whole Exome Sequencing (WES) and Sanger sequencing identify the proband mutated gene of the proband's family. In this article, we reported novel compound heterozygous mutations (c.818G>A and c.1011G>A) of the <i>SLC3A1</i> gene in a 5-year-old child suffering from a cystine stone from a three-generation family. Bioinformatic analysis was used to predict the pathogenicity and conservation of the target mutation. Conservative sequence and evolutionary conservation analysis indicated that cystine<sup>273</sup> and proline<sup>337</sup> were highly conserved among species, and both mutations listed here (Cys273Tyr and Pro337Pro) were pathogenic. To conclude, our study expands the phenotypic and genotypic spectrum of <i>SLC3A1</i> and indicates that genetic screening should be considered in the clinic to provide more effective and precise treatment for cystinuria.
Key Findings
1
A three-generation Chinese family proband developed severe urolithiasis with renal damage and a left pelvic kidney calculus composed mainly of cystine.
2
Authors recommend clinical genetic screening for cystinuria to enable more effective and precise treatment.
3
Bioinformatic analyses predict both mutations (Cys273Tyr and Pro337Pro) are pathogenic and occur at evolutionarily conserved residues.
4
The study expands the genotypic and phenotypic spectrum of SLC3A1-associated cystinuria.
5
Whole exome sequencing and Sanger sequencing identified novel compound heterozygous SLC3A1 mutations c.818G>A (Cys273Tyr) and c.1011G>A (Pro337Pro) in the affected 5-year-old child.
Research Object
A three-generation Chinese family case with cystinuria caused by novel compound heterozygous SLC3A1 mutations (c.818G>A and c.1011G>A) in a 5-year-old proband
Research Subject
Genotypic and phenotypic characterization of the SLC3A1 mutations including in silico pathogenicity and evolutionary conservation analyses and association with cystine stone formation and renal dysfunction
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2022-11-21
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