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首页> 外文期刊>Molecular Genetics & Genomic Medicine >Allelic spectrum of formiminotransferase-cyclodeaminase gene variants in individuals with formiminoglutamic aciduria
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Allelic spectrum of formiminotransferase-cyclodeaminase gene variants in individuals with formiminoglutamic aciduria

机译:甲氨基谷氨酸尿症个体中甲氨基转移酶-环脱氨酶基因变异的等位基因谱

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摘要

Abstract Background Elevated plasma and urine formiminoglutamic acid (FIGLU) levels are commonly indicative of formiminoglutamic aciduria (OMIM #229100), a poorly understood autosomal recessive disorder of histidine and folate metabolism, resulting from formiminotransferase-cyclodeaminase (FTCD) deficiency, a bifunctional enzyme encoded by FTCD . Methods In order to further understanding about the molecular alterations that contribute to FIGLU-uria, we sequenced FTCD in 20 individuals with putative FTCD deficiency and varying laboratory findings, including increased FIGLU excretion. Results Individuals tested had biallelic loss-of-function variants in protein-coding regions of FTCD . The FTCD allelic spectrum comprised of 12 distinct variants including 5 missense alterations that replace conserved amino acid residues (c.223A>C, c.266A>G, c.319T>C, c.430G>A, c.514G>T), an in-frame deletion (c.1373_1375delTGG), with the remaining alterations predicted to affect mRNA processing/stability. These included two frameshift variants (c.990dup, c.1366dup) and four nonsense variants (c.337C>T, c.451A>T, c.763C>T, c.1607T>A). Conclusion We observed additional FTCD alleles leading to urinary FIGLU elevations, and thus, providing molecular evidence of FTCD deficiency in cases identified by newborn screening or clinical biochemical genetic laboratory testing.
机译:摘要背景血浆和尿液中的谷氨酸谷氨酸(FIGLU)水平升高通常表示谷氨酸和叶酸代谢的常识性常染色体隐性遗传疾病,这是由形式化的双功能酶编码的双功能性谷氨酰胺转移酶(FTCD)缺乏引起的,尚不为人所知。由FTCD提供。方法为了进一步了解导致FIGLU-尿的分子改变,我们对20名患有FTCD缺乏症且实验室检查结果多样(包括FIGLU排泄增加)的个体进行了FTCD测序。结果测试的个体在FTCD的蛋白质编码区具有双等位基因功能丧失的变异。 FTCD等位基因谱由12个不同的变体组成,包括5个错义突变,可替代保守的氨基酸残基(c.223A> C,c.266A> G,c.319T> C,c.430G> A,c.514G> T)框内删除(c.1373_1375delTGG),而其余的变化预计会影响mRNA的加工/稳定性。这些包括两个移码变体(c.990dup,c.1366dup)和四个废话变体(c.337C> T,c.451A> T,c.763C> T,c.1607T> A)。结论我们观察到其他FTCD等位基因导致尿FIGLU升高,因此,在通过新生儿筛查或临床生化遗传实验室检测确定的病例中,提供了FTCD缺乏的分子证据。

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