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首页> 外文期刊>Blood cells, molecules and diseases >A novel N491S mutation in the human SLC11A2 gene impairs protein trafficking and in association with the G212V mutation leads to microcytic anemia and liver iron overload.
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A novel N491S mutation in the human SLC11A2 gene impairs protein trafficking and in association with the G212V mutation leads to microcytic anemia and liver iron overload.

机译:人SLC11A2基因中的新型N491S突变会损害蛋白质运输,并且与G212V突变相关联会导致小细胞性贫血和肝铁超负荷。

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BACKGROUND: DMT1 is a transmembrane iron transporter involved in iron duodenal absorption and cellular iron uptake. Mutations in the human SLC11A2 gene coding DMT1 lead to microcytic anemia and hepatic iron overload, with unexpectedly low levels of plasma ferritin in the presence of iron stores. DESIGN AND METHODS: We report a patient with a similar phenotype due to two mutations in the SLC11A2 gene, the known p.Gly212Val (G212V) mutation and a novel one, p.Asn491Ser (N491S). To assess the expression of DMT1 in human liver, we studied the expression of the four DMT1 mRNA isoforms by real-time quantitative PCR in control human liver samples. We also studied the effect of G212V and N491S DMT1 mutations on RNA splicing in blood leukocytes and cellular trafficking of dsRed2-tagged-DMT1 protein in the human hepatic cell line HuH7. RESULTS: Our results showed that i) only the isoforms 1B-IRE and 1B-nonIRE were significantly expressed in human liver; ii) the G212V mutation did not seem to affect mRNA splicing and the N491S mutation induced a splicing alteration leading to a truncated protein, which seemed quantitatively of low relevance; and iii) the N491S mutation, in contrast to the G212V mutation, led to abnormal protein trafficking. CONCLUSIONS: Our data confirm the major role of DMT1 in the maintenance of iron homeostasis in humans and demonstrate that the N491S mutation, through its deleterious effect on protein trafficking, contributes together with the G212V mutation to the development of anemia and hepatic iron overload.
机译:背景:DMT1是跨膜铁转运蛋白,参与十二指肠铁吸收和细胞铁吸收。编码DMT1的人类SLC11A2基因的突变会导致小细胞性贫血和肝铁超负荷,在存在铁存储的情况下血浆铁蛋白水平异常低。设计和方法:我们报告了一个患者,由于SLC11A2基因的两个突变,即已知的p.Gly212Val(G212V)突变和新的p.Asn491Ser(N491S),具有相似的表型。为了评估DMT1在人肝中的表达,我们通过实时定量PCR在对照人肝样品中研究了四种DMT1 mRNA同工型的表达。我们还研究了人肝细胞系HuH7中G212V和N491S DMT1突变对血液白细胞RNA剪接和dsRed2-tagged-DMT1蛋白的细胞运输的影响。结果:我们的结果表明:i)只有1B-IRE和1B-nonIRE亚型在人肝中显着表达; ii)G212V突变似乎并未影响mRNA的剪接,而N491S突变则诱导了剪接的改变,导致截短的蛋白质,从数量上看,其相关性较低; iii)与G212V突变相比,N491S突变导致蛋白质运输异常。结论:我们的数据证实了DMT1在维持人类铁稳态中的主要作用,并证明N491S突变通过其对蛋白质运输的有害作用,与G212V突变一起促进贫血和肝铁超负荷的发展。

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