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胱硫醚 β-合酶是维持机体铁平衡所必需的。

Cystathionine β-synthase is required for body iron homeostasis.

机构信息

Laboratory of Neuropharmacology, Fudan University School of Pharmacy, Shanghai, China.

School of Biomedical Sciences, Faculty of Medicine, The Chinese University of Hong Kong, Shatin, NT, Hong Kong.

出版信息

Hepatology. 2018 Jan;67(1):21-35. doi: 10.1002/hep.29499.

DOI:10.1002/hep.29499
PMID:28859237
Abstract

UNLABELLED

Cystathionine β-synthase (CBS) catalyzes the transsulfuration pathway and contributes, among other functions, to the generation of hydrogen sulfide. In view of the exceptionally high expression of CBS in the liver and the common interleukin-6 pathway used in the regulatory systems of hydrogen sulfide and hepcidin, we speculate that CBS is involved in body iron homeostasis. We found that CBS knockout (CBS ) mice exhibited anemia and a significant increase in iron content in the serum, liver, spleen, and heart, along with severe damage to the liver, displaying a hemochromatosis-like phenotype. A high level of hepatic and serum hepcidin was also found. A major cause of the systemic iron overload is the reduced iron usage due to suppressed erythropoiesis, which is consistent with an increase in interleukin-6 and reduced expression of erythropoietin. Importantly, in the liver, absence of CBS caused both a reduction in the transcriptional factor nuclear factor erythroid 2-related factor-2 and an up-regulation of hepcidin that led to a decrease in the iron export protein ferroportin 1. The resulting suppression of iron export exacerbates iron retention, causing damage to hepatocytes. Finally, administration of CBS-overexpressing adenovirus into CBS mutant mice could partially reverse the iron-related phenotype.

CONCLUSION

Our findings point to a critical role of CBS in iron homeostasis of the body, and the liver in particular; it is likely that a hemochromatosis-like phenotype in patients can be induced by aberration not only in the expression of key molecules in the hepcidin pathway but also of those related to CBS. (Hepatology 2018;67:21-35).

摘要

未加标注

胱硫醚β-合酶(CBS)催化转硫途径,并有助于生成硫化氢。鉴于 CBS 在肝脏中的表达水平极高,以及在调控硫化氢和铁调素的系统中普遍存在的白细胞介素-6途径,我们推测 CBS 参与了体内铁稳态。我们发现 CBS 敲除(CBS-/-)小鼠表现出贫血和血清、肝脏、脾脏和心脏中铁含量显著增加,同时肝脏严重受损,表现出类似于血色病的表型。还发现肝和血清中hepcidin 水平升高。全身性铁过载的一个主要原因是由于红细胞生成受到抑制导致铁利用减少,这与白细胞介素-6增加和促红细胞生成素表达减少一致。重要的是,在肝脏中,CBS 的缺失导致转录因子核因子红细胞 2 相关因子-2 的减少和 hepcidin 的上调,导致铁输出蛋白亚铁蛋白 1 减少。由此导致的铁输出抑制加剧了铁的保留,导致肝细胞损伤。最后,向 CBS 突变小鼠中给予过表达 CBS 的腺病毒可部分逆转与铁相关的表型。

结论

我们的研究结果表明 CBS 在体内铁稳态中具有关键作用,尤其是在肝脏中;患者的血色病样表型可能不仅由铁调素途径关键分子的表达异常,还可能由与 CBS 相关的分子的表达异常引起。(Hepatology 2018;67:21-35)。

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