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首页> 外文期刊>The Journal of Immunology: Official Journal of the American Association of Immunologists >Loss of SHIP and CIS Recruitment to the Granulocyte Colony-Stimulating Factor Receptor Contribute to Hyperproliferative Responses in Severe Congenital Neutropenia/Acute Myelogenous Leukemia.
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Loss of SHIP and CIS Recruitment to the Granulocyte Colony-Stimulating Factor Receptor Contribute to Hyperproliferative Responses in Severe Congenital Neutropenia/Acute Myelogenous Leukemia.

机译:严重先天性中性粒细胞减少症/急性粒细胞性白血病中粒细胞集落刺激因子受体的SHIP和CIS补充缺失。

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Mutations in the G-CSF receptor (G-CSFR) in patients with severe congenital neutropenia (SCN) are postulated to contribute to transformation to acute myelogenous leukemia (AML). These mutations result in defective receptor internalization and sustained cellular activation, suggesting a loss of negative signaling by the G-CSFR. In this paper we investigated the roles of SHIP and cytokine-inducible Src homology 2 protein (CIS) in down-modulating G-CSFR signals and demonstrate that loss of their recruitment as a consequence of receptor mutations leads to aberrant signaling. We show that SHIP binds to phosphopeptides corresponding to Tyr(744) and Tyr(764) in the G-CSFR and that Tyr(764) is required for in vivo phosphorylation of SHIP and the formation of SHIP/Shc complexes. Cells expressing a G-CSFR form lacking Tyr(764) exhibited hypersensitivity to G-CSF and enhanced proliferation, but to a lesser degree than observed with the most common mutant G-CSFR form in patients with SCN/AML, prompting us to investigate whether suppressor of cytokine signaling proteins also down-modulate G-CSFR signals. G-CSF was found to induce the expression of CIS and of CIS bound to phosphopeptides corresponding to Tyr(729) and Tyr(744) of the G-CSFR. The expression of CIS was prolonged in cells with the SCN/AML mutant G-CSFR lacking Tyr(729) and Tyr(744), which also correlated with increased G-CSFR expression. These findings suggest that SHIP and CIS interact with distal phosphotyrosine residues in the G-CSFR to negatively regulate G-CSFR signaling by limiting proliferation and modulating surface expression of the G-CSFR, respectively. Novel therapeutic approaches targeting inhibitory pathways that limit G-CSFR signaling may have promise in the treatment of patients with SCN/AML.
机译:严重先天性中性粒细胞减少症(SCN)患者的G-CSF受体(G-CSFR)突变被认为有助于转化为急性骨髓性白血病(AML)。这些突变导致有缺陷的受体内在化和持续的细胞活化,表明G-CSFR丧失了负信号。在本文中,我们研究了SHIP和细胞因子诱导的Src同源性2蛋白(CIS)在下调G-CSFR信号中的作用,并证明由于受体突变而导致其募集的丧失导致异常信号传导。我们显示,SHIP绑定到对应于G-CSFR中的Tyr(744)和Tyr(764)的磷酸肽,并且Tyr(764)是SHIP体内磷酸化和SHIP / Shc复合物形成所必需的。表达缺乏Tyr(764)的G-CSFR形式的细胞表现出对G-CSF的超敏性并增强了增殖,但程度低于SCN / AML患者中最常见的突变G-CSFR形式所观察到的程度,促使我们研究是否细胞因子信号蛋白的抑制剂也下调G-CSFR信号。发现G-CSF诱导CIS的表达以及与G-CSFR的Tyr(729)和Tyr(744)对应的磷酸肽结合的CIS的表达。缺少Tyr(729)和Tyr(744)的SCN / AML突变G-CSFR细胞中CIS的表达延长,这也与G-CSFR表达的增加有关。这些发现表明,SHIP和CIS与G-CSFR中的远端磷酸酪氨酸残基相互作用,分别通过限制增殖和调节G-CSFR的表面表达来负调控G-CSFR信号传导。针对限制G-CSFR信号传导的抑制途径的新型治疗方法可能在SCN / AML患者的治疗中很有希望。

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