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遗传性血色素沉着症的发病机制:遗传学及其他方面

Pathogenesis of hereditary hemochromatosis: genetics and beyond.

作者信息

Britton Robert S, Fleming Robert E, Parkkila Seppo, Waheed Abdul, Sly William S, Bacon Bruce R

机构信息

Department of Internal Medicine, Saint Louis University School of Medicine, MO 63110-0250, USA.

出版信息

Semin Gastrointest Dis. 2002 Apr;13(2):68-79.

Abstract

Hereditary hemochromatosis (HH) comprises several inherited disorders of iron homeostasis characterized by increased gastrointestinal iron absorption and secondary tissue iron deposition. The most common form of this disorder is called HFE-related HH and is caused by homozygosity for the C282Y mutation in the HFE gene. Recently, other less common hereditary forms of iron overload have been recognized and are designated as non-HFE-related HH. The identification and cloning of HFE and other genes involved in iron metabolism has greatly expanded our understanding of many aspects of HH. The introduction of a commercially available genetic test for the C282Y and H63D mutations of HFE allows presymptomatic diagnosis, and adds precision to studies of the population genetics of HFE-related HH. It is now recognized that a substantial proportion of C282Y homozygotes does not develop clinically significant iron overload, and modifier genes may be involved in this phenomenon. Mouse models of HH and cell culture studies have increased our understanding of the normal physiology and pathophysiology of iron homeostasis. Future investigations will refine our knowledge of the mechanisms of action of HFE protein, the phenotypic variability observed in persons homozygous for the C282Y mutation, and the mechanisms responsible for non-HFE-related HH.

摘要

遗传性血色素沉着症(HH)包括几种遗传性铁稳态失调疾病,其特征为胃肠道铁吸收增加以及继发性组织铁沉积。该疾病最常见的形式称为HFE相关性HH,由HFE基因C282Y突变的纯合性引起。最近,其他不太常见的遗传性铁过载形式已被确认,并被指定为非HFE相关性HH。HFE及其他参与铁代谢的基因的鉴定和克隆极大地扩展了我们对HH诸多方面的理解。针对HFE的C282Y和H63D突变的商业可用基因检测的引入实现了症状前诊断,并提高了对HFE相关性HH群体遗传学研究的精确性。现在人们认识到,相当一部分C282Y纯合子并未发生具有临床意义的铁过载,修饰基因可能参与了这一现象。HH的小鼠模型和细胞培养研究增进了我们对铁稳态正常生理学和病理生理学的理解。未来的研究将完善我们对HFE蛋白作用机制、C282Y突变纯合个体中观察到的表型变异性以及非HFE相关性HH相关机制的认识。

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