首页> 美国卫生研究院文献>The Journal of Biological Chemistry >CD81 Promotes Both the Degradation of Transferrin Receptor 2 (TfR2) and the Tfr2-mediated Maintenance of Hepcidin Expression
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CD81 Promotes Both the Degradation of Transferrin Receptor 2 (TfR2) and the Tfr2-mediated Maintenance of Hepcidin Expression

机译:CD81促进转铁蛋白受体2(TfR2)的降解和Tfr2介导的铁调素维持表达

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摘要

Mutations in transferrin receptor 2 (TfR2) cause a rare form of the hereditary hemochromatosis, resulting in iron overload predominantly in the liver. TfR2 is primarily expressed in hepatocytes and is hypothesized to sense iron levels in the blood to positively regulate the expression of hepcidin through activation of the BMP signaling pathway. Hepcidin is a peptide hormone that negatively regulates iron egress from cells and thus limits intestinal iron uptake. In this study, a yeast two-hybrid approach using the cytoplasmic domain of TfR2 identified CD81 as an interacting protein. CD81 is an abundant tetraspanin in the liver. Co-precipitations of CD81 with different TfR2 constructs demonstrated that both the cytoplasmic and ecto-transmembrane domains of TfR2 interact with CD81. Knockdown of CD81 using siRNA significantly increased TfR2 levels by increasing the half-life of TfR2, indicating that CD81 promotes degradation of TfR2. Previous studies showed that CD81 is targeted for degradation by GRAIL, an ubiquitin E3 ligase. Knockdown of GRAIL in Hep3B-TfR2 cells increased TfR2 levels, consistent with inhibition of CD81 ubiquitination. These results suggest that down-regulation of CD81 by GRAIL targets TfR2 for degradation. Surprisingly, knockdown of CD81 decreased hepcidin expression, implying that the TfR2/CD81 complex is involved in the maintenance of hepcidin mRNA. Moreover, knockdown of CD81 did not affect the stimulation of hepcidin expression by BMP6 but increased both the expression of ID1 and SMAD7, direct targets of BMP signaling pathway, and the phosphorylation of ERK1/2, indicating that the CD81 regulates hepcidin expression differently from the BMP and ERK1/2 signaling pathways.
机译:转铁蛋白受体2(TfR2)中的突变会导致罕见的遗传性血色素沉着症,导致肝脏中铁超负荷。 TfR2主要在肝细胞中表达,并被认为可通过激活BMP信号通路来感知血液中的铁水平,从而正向调节铁调素的表达。铁调素是一种肽激素,可负调节铁从细胞中流出,从而限制肠道铁的吸收。在这项研究中,使用TfR2胞质域的酵母双杂交方法将CD81鉴定为相互作用蛋白。 CD81是肝脏中丰富的四跨膜蛋白。 CD81与不同TfR2构建体的共沉淀表明,TfR2的胞质和胞外膜结构域均与CD81相互作用。使用siRNA抑制CD81,可以通过增加TfR2的半衰期来显着提高TfR2的水平,这表明CD81可以促进TfR2的降解。先前的研究表明CD81是GRAIL(一种泛素E3连接酶)靶向降解的。敲除Hep3B-TfR2细胞中的GRAIL可提高TfR2水平,与抑制CD81泛素化相一致。这些结果表明,GRAIL对CD81的下调以TfR2为降解靶标。令人惊讶地,CD81的敲低降低了铁调素的表达,这暗示着TfR2 / CD81复合物参与了铁调素mRNA的维持。而且,敲除CD81不会影响BMP6对hepcidin表达的刺激,但会增加ID1和SMAD7的表达,BMP信号通路的直接靶点以及ERK1 / 2的磷酸化,这表明CD81对Hepcidin表达的调节不同于BMP和ERK1 / 2信号通路。

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