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首页> 外文期刊>Hepatology: Official Journal of the American Association for the Study of Liver Diseases >Implication of the proprotein convertases in iron homeostasis: Proprotein convertase 7 sheds human transferrin receptor 1 and furin activates hepcidin
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Implication of the proprotein convertases in iron homeostasis: Proprotein convertase 7 sheds human transferrin receptor 1 and furin activates hepcidin

机译:前蛋白转化酶在铁体内平衡中的意义:前蛋白转化酶7释放人转铁蛋白受体1,弗林蛋白酶激活铁调素

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摘要

The first seven members of the proprotein convertase (PC) family activate protein precursors by cleavage after basic residues. While PC7 has no known specific substrates, it shows redundancy with other PCs. A genome-wide association study suggested that circulating levels of shed human transferrin receptor 1 (hTfR1) are regulated by PC7. We thus examined whether hTfR1 constitutes a specific substrate for PC7. Coexpression of hTfR1 with PCs in several cell lines indicated that PC7 is the only convertase that sheds this receptor into the medium. Site-directed mutagenesis showed that cleavage occurs at the unusual site KTECER100↓LA, in which the P1 Arg100 and P6 Lys95 are critical. Pharmacological treatments revealed that shedding of hTfR1 by PC7 requires endocytosis into acidic clathrin-coated vesicles. A PC7 chimera, in which the transmembrane domain and the cytosolic tail of PC7 were replaced by that of the convertase furin, lost its ability to cleave the receptor, demonstrating the importance of these domains in the regulation of PC7 function. Analysis of primary hepatocytes from mice lacking furin, PC5, PACE4, or PC7 revealed that hepcidin, which limits iron availability in the circulation, is specifically generated by furin and not by PC7. Finally, depletion of iron in the medium of hepatoma cell lines incubated with the iron chelator desferrioxamine resulted in PC7 down-regulation. Conclusion: Among the PC family members, only furin activates hepcidin in hepatocytes, and uniquely the full-length membrane-bound PC7 can directly shed hTfR1 by cleavage at Arg100↓. Our results support the notion that, when iron is limiting, hTfR1 levels increase at least in part by way of the down-regulation of PC7 expression.
机译:前蛋白转化酶(PC)家族的前七个成员通过在碱性残基后裂解来激活蛋白前体。尽管PC7没有已知的特定基板,但它显示了与其他PC的冗余。全基因组关联研究表明,脱落的人类转铁蛋白受体1(hTfR1)的循环水平受PC7调节。因此,我们检查了hTfR1是否构成PC7的特定底物。 hTfR1与PC在几种细胞系中的共表达表明PC7是唯一将这种受体释放到培养基中的转化酶。定点诱变表明切割发生在异常位点KTECER100↓LA,其中P1 Arg100和P6 Lys95至关重要。药理学治疗表明,PC7释放hTfR1需要将内吞作用变成酸性网格蛋白包被的囊泡。 PC7嵌合体(其中PC7的跨膜结构域和胞质尾部被转化酶弗林蛋白酶所替代)失去了切割受体的能力,这表明这些结构域在调节PC7功能中的重要性。对缺乏弗林蛋白酶,PC5,PACE4或PC7的小鼠的原代肝细胞进行分析后发现,限制循环中铁利用的铁调素是弗林蛋白酶而不是PC7特异性产生的。最后,与铁螯合剂去铁草胺温育的肝癌细胞系培养基中铁的消耗导致PC7下调。结论:在PC家族成员中,只有弗林蛋白酶激活肝细胞中的铁调素,并且独特的全长膜结合PC7可以通过在Arg100↓处裂解直接释放hTfR1。我们的结果支持以下观点:当铁受到限制时,hTfR1水平至少部分地通过PC7表达的下调而增加。

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