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利用 AGC2 缺陷酵母模型预测新型 SLC25A13 变异的功能效应。

Prediction of the functional effect of novel SLC25A13 variants using a S. cerevisiae model of AGC2 deficiency.

机构信息

Graduate Program in Molecular Medicine, Faculty of Science, Mahidol University, Bangkok, Thailand.

出版信息

J Inherit Metab Dis. 2013 Sep;36(5):821-30. doi: 10.1007/s10545-012-9543-5. Epub 2012 Oct 3.

Abstract

AGC2, a member of the mitochondrial carrier protein family, is as an aspartate-glutamate carrier and is important for urea synthesis and the maintenance of the malate-aspartate shuttle. Mutations in SLC25A13, the gene encoding AGC2, result in two age dependent disorders: neonatal intrahepatic cholestasis caused by citrin deficiency (NICCD) and type II citrullinemia (CTLN2). The clinical features of CTLN2 are very similar to those of other urea cycle disorders making a clear diagnosis difficult. Analysis of the SLC25A13 gene sequence can provide a definitive diagnosis, however the predictive value of DNA sequencing requires that the disease association of variants be characterized. We utilized the yeast Saccharomyces cerevisiae lacking AGC1 as a model system to study the effect on the function of AGC2 variants and confirmed that this system is capable of distinguishing between AGC2 variants with normal (p.Pro632Leu) or impaired function (p.Gly437Glu, p.Gly531Asp, p.Thr546Met, p.Leu598Arg and p.Glu601Lys). Three novel AGC2 genetic variants, p.Met1? (c.2T>C), p.Pro502Leu (c.1505C>T), and p.Arg605Gln (c.1814G>A) were investigated and our analysis revealed that p.Pro502Leu and p.Arg605Gln substitutions in the AGC2 protein were without effect and these variants were fully functional. The p.Met1? mutant is capable of expressing a truncated p.Met1_Phe34del AGC2 variant, however this protein is not functional due to disruptions in a calcium binding EF hand as well as incorrect intracellular localization. Our study demonstrates that the characterization of AGC2 expressed in yeast cells is a powerful technique to investigate AGC2 variants, and this analysis should aid in establishing the disease association of novel variants.

摘要

AGC2 是线粒体载体蛋白家族的一员,作为天冬氨酸-谷氨酸载体,对于尿素合成和苹果酸-天冬氨酸穿梭的维持很重要。编码 AGC2 的 SLC25A13 基因突变导致两种年龄依赖性疾病:由 citrin 缺乏引起的新生儿肝内胆汁淤积症(NICCD)和 II 型瓜氨酸血症(CTLN2)。CTLN2 的临床特征与其他尿素循环障碍非常相似,这使得明确诊断变得困难。SLC25A13 基因序列分析可以提供明确的诊断,但 DNA 测序的预测价值要求对变异与疾病的关联进行特征分析。我们利用缺乏 AGC1 的酵母 Saccharomyces cerevisiae 作为模型系统来研究 AGC2 变异对其功能的影响,并证实该系统能够区分具有正常功能(p.Pro632Leu)或功能受损(p.Gly437Glu、p.Gly531Asp、p.Thr546Met、p.Leu598Arg 和 p.Glu601Lys)的 AGC2 变异。我们研究了三个新的 AGC2 遗传变异,p.Met1?(c.2T>C)、p.Pro502Leu(c.1505C>T)和 p.Arg605Gln(c.1814G>A),分析表明 AGC2 蛋白中的 p.Pro502Leu 和 p.Arg605Gln 取代没有影响,这些变异是完全功能的。p.Met1?突变体能够表达截断的 p.Met1_Phe34del AGC2 变体,但由于钙结合 EF 手的破坏以及错误的细胞内定位,该蛋白没有功能。我们的研究表明,在酵母细胞中表达的 AGC2 的特征分析是研究 AGC2 变异的有力技术,这种分析应该有助于确定新型变异与疾病的关联。

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