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首页> 外文期刊>Biochimica et biophysica acta. Molecular cell research >E6AP inhibits G-CSFR turnover and functions by promoting its ubiquitin-dependent proteasome degradation
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E6AP inhibits G-CSFR turnover and functions by promoting its ubiquitin-dependent proteasome degradation

机译:E6AP通过促进其泛素依赖性蛋白酶体劣化来抑制G-CSFR转变和功能

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Abstract Granulocyte colony-stimulating factor receptor (G-CSFR) plays a crucial role in regulating myeloid cell survival, proliferation, and neutrophilic granulocyte precursor cells maturation. Previously, we demonstrated that Fbw7α negatively regulates G-CSFR and its downstream signaling through ubiquitin–proteasome mediated degradation. However, whether additional ubiquitin ligases for G-CSFR exist is not known. Identifying multiple E3 ubiquitin ligases for G-CSFR shall improve our understanding of activation and subsequent attenuation of G-CSFR signaling required for differentiation and proliferation. Here, for the first time we demonstrate that E6 associated protein (E6AP), an E3 ubiquitin ligase physically associates with G-CSFR and targets it for ubiquitin-mediated proteasome degradation and thereby attenuates its functions. We further show that E6AP promoted G-CSFR degradation leads to reduced phosphorylation of signal transducer and activator of transcription 3 (STAT3) which is required for G-CSF dependent granulocytic differentiation. More importantly, our finding shows that E6AP also targets mutant form of G-SCFR (G-CSFR-T718), frequently observed in severe congenital neutropenia (SCN) patients that very often culminate to AML, however, at a quite slower rate than wild type G-CSFR. In addition, our data showed that knockdown of E6AP restores G-CSFR and its signaling thereby promoting granulocytic differentiation. Collectively, our data demonstrates that E6AP facilitates ubiquitination and subsequent degradation of G-CSFR leading to attenuation of its downstream signaling and inhibition of granulocytic differentiation. Highlights ? E6AP colocalizes and physically interacts with G-CSFR. ? E3 ubiquitin Ligase E6AP promotes ubiquitin-dependent proteasome degradation of G-CSFR. ? E6AP ubiquitinates G-CSFR faster than truncated G-CSFR-T718 may provide plausible explanation for stabilized expression of truncated G-CSFR on the surface of cells harboring such mutation. ? E6AP depletion restores G-CSFR and promotes myeloid differentiation. ]]>
机译:摘要粒细胞菌落刺激因子受体(G-CSFR)在调节骨髓细胞存活率,增殖和中性粒细胞前体细胞成熟方面发挥着至关重要的作用。以前,我们证明FBW7α通过泛素 - 蛋白酶体介导的降解负调节G-CSFR及其下游信号。然而,不知道是否存在用于G-CSFR的额外泛素连接酶。鉴定G-CSFR的多个E3泛素连接酶应改善我们对激活的理解,随后衰减分化和增殖所需的G-CSFR信号。这里,首次证明E6相关蛋白(E6AP),E3泛素连接酶与G-CSFR物理相关,并靶向遍在蛋白介导的蛋白酶体劣化,从而抑制其功能。我们进一步表明,E6AP促进了G-CSFR降解导致降低信号传感器和转录3(STAT3)的激活剂的磷酸化,这是G-CSF依赖性粒细胞分化所必需的。更重要的是,我们的发现表明,E6AP还针对G-SCFR(G-CSFR-T718)的突变形式,经常在严重的先天性衰竭(SCN)患者中经常观察到,其经常达到AML,但是,比野生率相当较慢键入G-CSFR。此外,我们的数据显示E6AP的敲低恢复G-CSFR及其信号传导,从而促进粒细胞分化。统称,我们的数据表明E6AP促进了泛素化和随后的G-CSFR降解导致其下游信号传导和粒细胞分化的抑制作用。强调 ? E6AP与G-CSFR分开并物理相互作用。还E3泛素连接酶E6AP促进G-CSFR的泛素依赖性蛋白酶体劣化。还E6AP ubiquitinate G-CSFR快于截短的G-CSFR-T718可以为涉及这种突变的细胞表面的截短G-CSFR的稳定表达提供可粘附的解释。还E6AP耗尽恢复G-CSFR并促进骨髓差异化。 ]]>

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