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一名小细胞性贫血和铁过载患者中DMT1人类突变的鉴定。

Identification of a human mutation of DMT1 in a patient with microcytic anemia and iron overload.

作者信息

Mims Martha P, Guan Yongli, Pospisilova Dagmar, Priwitzerova Monika, Indrak Karel, Ponka Prem, Divoky Vladimir, Prchal Josef T

机构信息

Department of Hematology/Oncology, Baylor College of Medicine, One Baylor Plaza 802E, Houston, TX 77030, USA.

出版信息

Blood. 2005 Feb 1;105(3):1337-42. doi: 10.1182/blood-2004-07-2966. Epub 2004 Sep 30.

Abstract

Divalent metal transporter 1 (DMT1) is a transmembrane protein crucial for duodenal iron absorption and erythroid iron transport. DMT1 function has been elucidated largely in studies of the mk mouse and the Belgrade rat, which have an identical single nucleotide mutation of this gene that affects protein processing, stability, and function. These animals exhibit hypochromic microcytic anemia due to impaired intestinal iron absorption, and defective iron utilization in red cell precursors. We report here the first human mutation of DMT1 identified in a female with severe hypochromic microcytic anemia and iron overload. This homozygous mutation in the ultimate nucleotide of exon 12 codes for a conservative E399D amino acid substitution; however, its pre-dominant effect is preferential skipping of exon 12 during processing of pre-messenger RNA (mRNA). The lack of full-length mRNA would predict deficient iron absorption in the intestine and deficient iron utilization in erythroid precursors; however, unlike the animal models of DMT1 mutation, the patient is iron overloaded. This does not appear to be due to up-regulation of total DMT1 mRNA. DMT1 protein is easily detectable by immunoblotting in the patient's duodenum, but it is unclear whether the protein is properly processed or targeted.

摘要

二价金属转运蛋白1(DMT1)是一种跨膜蛋白,对十二指肠铁吸收和红细胞铁转运至关重要。DMT1的功能在很大程度上已在mk小鼠和贝尔格莱德大鼠的研究中得到阐明,这两种动物该基因存在相同的单核苷酸突变,影响蛋白质加工、稳定性和功能。这些动物由于肠道铁吸收受损以及红细胞前体中铁利用缺陷而表现出低色素小细胞性贫血。我们在此报告在一名患有严重低色素小细胞性贫血和铁过载的女性中首次鉴定出的人类DMT1突变。外显子12最后一个核苷酸的这种纯合突变编码保守的E399D氨基酸取代;然而,其主要影响是在前信使RNA(mRNA)加工过程中外显子12的优先跳跃。全长mRNA的缺乏预计会导致肠道铁吸收不足和红细胞前体中铁利用不足;然而,与DMT1突变的动物模型不同,该患者铁过载。这似乎不是由于总DMT1 mRNA上调所致。通过免疫印迹在患者十二指肠中很容易检测到DMT1蛋白,但尚不清楚该蛋白是否经过正确加工或靶向。

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