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人类二价金属离子转运体1(SLC11A2)中的一种新型R416C突变对其功能具有多效性影响,并导致小细胞性贫血和肝脏铁过载。

A novel R416C mutation in human DMT1 (SLC11A2) displays pleiotropic effects on function and causes microcytic anemia and hepatic iron overload.

作者信息

Lam-Yuk-Tseung Steven, Camaschella Clara, Iolascon Achille, Gros Philippe

机构信息

Department of Biochemistry, McGill Cancer Center and Center for Host Resistance, McGill University, 3655 Promenade Sir William Osler, Montreal, Quebec, Canada H3G 1Y6.

出版信息

Blood Cells Mol Dis. 2006 May-Jun;36(3):347-54. doi: 10.1016/j.bcmd.2006.01.011. Epub 2006 Apr 3.

Abstract

A patient suffering from microcytic anemia and hepatic iron overload was found to be compound heterozygote for polymorphisms in the iron transporter DMT1 (Nramp2, SLC11A2), including a 3-bp deletion (DMT1(delCTT)) in intron 4 that partially impairs splicing and an amino acid substitution (DMT1(C1246T), R416C) at a conserved residue in transmembrane domain 9 of the protein. The functional properties and possible contribution to disease of the DMT1 R416C mutation were studied in independent mutants at that position (R416C, R416A, R416K, R416E) expressed in LLC-PK(1) kidney cells. Non-conservative substitutions at R416 (C, A, E) cause multiple functional deficiencies including defective protein processing, loss of transport activity, impaired cell surface targeting, and recycling through endosomes, concomitant with retention of the transporter in the endoplasmic reticulum. Conversely, a conservative isoelectric substitution (R416K) was less vulnerable, resulting in a functional transporter that was properly processed and targeted to the cell surface and to recycling endosomes. We propose that DMT1(C1246T) (R416C) represents a complete loss-of-function, and that a quantitative reduction in DMT1 expression is the cause of the microcytic anemia and iron overload in the patient.

摘要

一名患有小细胞性贫血和肝脏铁过载的患者被发现是铁转运蛋白DMT1(Nramp2,SLC11A2)多态性的复合杂合子,包括内含子4中的一个3碱基缺失(DMT1(delCTT)),该缺失部分损害剪接,以及该蛋白跨膜结构域9中一个保守残基处的氨基酸替代(DMT1(C1246T),R416C)。在LLC-PK(1)肾细胞中表达的该位置的独立突变体(R416C、R416A、R416K、R416E)中研究了DMT1 R416C突变的功能特性及其对疾病的可能影响。R416处的非保守替代(C、A、E)导致多种功能缺陷,包括蛋白质加工缺陷、转运活性丧失、细胞表面靶向受损以及通过内体循环,同时转运蛋白保留在内质网中。相反,保守的等电替代(R416K)较不易受影响,产生一种功能正常的转运蛋白,其加工正常并靶向细胞表面和再循环内体。我们提出DMT1(C1246T)(R416C)代表功能完全丧失,并且DMT1表达的定量减少是该患者小细胞性贫血和铁过载的原因。

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