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地中海贫血中高水平的生长分化因子15抑制铁调节蛋白铁调素的表达。

High levels of GDF15 in thalassemia suppress expression of the iron regulatory protein hepcidin.

作者信息

Tanno Toshihiko, Bhanu Natarajan V, Oneal Patricia A, Goh Sung-Ho, Staker Pamela, Lee Y Terry, Moroney John W, Reed Christopher H, Luban Naomi L C, Wang Rui-Hong, Eling Thomas E, Childs Richard, Ganz Tomas, Leitman Susan F, Fucharoen Suthat, Miller Jeffery L

机构信息

Molecular Medicine Branch, National Institute of Diabetes and Digestive and Kidney Diseases, National Institutes of Health, 10 Center Drive, Bethesda, Maryland 20892, USA.

出版信息

Nat Med. 2007 Sep;13(9):1096-101. doi: 10.1038/nm1629. Epub 2007 Aug 26.

Abstract

In thalassemia, deficient globin-chain production during erythropoiesis results in anemia. Thalassemia may be further complicated by iron overload (frequently exacerbated by blood transfusion), which induces numerous endocrine diseases, hepatic cirrhosis, cardiac failure and even death. Accumulation of iron in the absence of blood transfusions may result from inappropriate suppression of the iron-regulating peptide hepcidin by an erythropoietic mechanism. To test this hypothesis, we examined erythroblast transcriptome profiles from 15 healthy, nonthalassemic donors. Growth differentiation factor 15 (GDF15), a member of the transforming growth factor-beta superfamily, showed increased expression and secretion during erythroblast maturation. Healthy volunteers had mean GDF15 serum concentrations of 450 +/- 50 pg/ml. In comparison, individuals with beta-thalassemia syndromes had elevated GDF15 serum levels (mean 66,000 +/- 9,600 pg/ml; range 4,800-248,000 pg/ml; P < 0.05) that were positively correlated with the levels of soluble transferrin receptor, erythropoietin and ferritin. Serum from thalassemia patients suppressed hepcidin mRNA expression in primary human hepatocytes, and depletion of GDF15 reversed hepcidin suppression. These results suggest that GDF15 overexpression arising from an expanded erythroid compartment contributes to iron overload in thalassemia syndromes by inhibiting hepcidin expression.

摘要

在thalassemia中,红细胞生成过程中珠蛋白链生成不足导致贫血。thalassemia可能会因铁过载(常因输血而加剧)而进一步复杂化,铁过载会引发多种内分泌疾病、肝硬化、心力衰竭甚至死亡。在未输血的情况下,铁的积累可能是由于红细胞生成机制对铁调节肽铁调素的不适当抑制所致。为了验证这一假设,我们检测了15名健康、非thalassemic供者的成红细胞转录组谱。生长分化因子15(GDF15)是转化生长因子-β超家族的成员,在成红细胞成熟过程中表达和分泌增加。健康志愿者的GDF15血清平均浓度为450±50 pg/ml。相比之下,β-地中海贫血综合征患者的GDF15血清水平升高(平均66,000±9,600 pg/ml;范围4,800 - 248,000 pg/ml;P < 0.05),且与可溶性转铁蛋白受体、促红细胞生成素和铁蛋白水平呈正相关。地中海贫血患者的血清抑制原代人肝细胞中铁调素mRNA的表达,而去除GDF15可逆转铁调素的抑制作用。这些结果表明,红细胞池扩大导致的GDF15过表达通过抑制铁调素表达,促成了地中海贫血综合征中的铁过载。

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