首页> 外文期刊>Cancer biology & therapy >The C-terminus of interferon gamma receptor beta chain (IFNgammaR2) has antiapoptotic activity as a Bax inhibitor.
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The C-terminus of interferon gamma receptor beta chain (IFNgammaR2) has antiapoptotic activity as a Bax inhibitor.

机译:干扰素γ受体β链(IFNgammaR2)的C末端具有抗凋亡活性,作为Bax抑制剂。

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Bax is a pro-apoptotic protein that mediates intrinsic cell-death signaling. Using a yeast-based functional screening approach, we identified interferon gamma receptor beta chain (IFNgammaR2) as a new Bax suppressor. IFNgammaR2 is a component of the IFNgamma receptor complex along with the IFNgammaR alpha chain (IFNgammaR1). Upon IFNgamma binding, a conformational change in the receptor complex occurs that activates the Jak2/STAT1 signaling cascade. We found that the C-terminal region (amino acids 296-337) of IFNgammaR2 (IFNgammaR2(296-337)) contains a novel Bax inhibitory domain. This portion does not contain the Jak2-binding domain; therefore, the antiapoptotic function of IFNgammaR2 is independent of JAK/STAT signaling. IFNgammaR2(296-337) rescued human cells from apoptosis induced by overexpression of Bax but not Bak. Overexpression of IFNgammaR2 (wild type and IFNgammaR2(296-337)) rescued cells from etoposide and staurosporine, which are known to induce Bax-mediated cell death. Interestingly, IFNgammaR2 inhibited apoptosis induced by the BH3-only protein Bim-EL, suggesting that IFNgammaR2 inhibits Bax activation through a BH3-only protein. Bax and IFNgammaR2 were co-immunoprecipitated from cell lysates prepared from HEK293 and DAMI cells. Furthermore, direct binding of purified recombinant proteins of Bax and IFNgammaR2 was also confirmed. Addition of recombinant Bcl-2 protein to cell lysates significantly reduced the interaction of IFNgammaR2 and Bax, suggesting that Bcl-2 and IFNgammaR2 bind a similar domain of Bax. We found that the C-terminal fragment (cytoplasmic domain) of IFNgammaR2 is expressed in human cancer cell lines of megakaryocytic cancer (DAMI), breast cancer (MDA-MD-468), and prostate cancer (PC3 cells). The presence of the C-terminal fragment of IFNgammaR2 may confer on cancer cells resistance to apoptotic stresses. Our discovery of the anti-Bax activity of the cytoplasmic domain of IFNgammaR2 may shed new light on the mechanism of how cell death is controlled by IFNgamma and Bax.
机译:Bax是一种介导内在细胞死亡信号的促凋亡蛋白。使用基于酵母的功能筛选方法,我们确定了干扰素γ受体β链(IFNgammaR2)作为新的Bax抑制剂。 IFNgammaR2与IFNgammaRα链(IFNgammaR1)一起是IFNgamma受体复合物的组成部分。在IFNγ结合后,受体复合物中发生构象变化,从而激活Jak2 / STAT1信号级联。我们发现IFNgammaR2(IFNgammaR2(296-337))的C端区域(氨基酸296-337)包含一个新的Bax抑制域。此部分不包含Jak2绑定域;因此,IFNgammaR2的抗凋亡功能独立于JAK / STAT信号传导。 IFNgammaR2(296-337)拯救了人类细胞,使其免于Bax的过度表达所诱导的凋亡,但Bak却无法。过量表达的IFNgammaR2(野生型和IFNgammaR2(296-337))从依托泊苷和星形孢菌素中拯救了细胞,已知它们会诱导Bax介导的细胞死亡。有趣的是,IFNgammaR2抑制了仅BH3蛋白Bim-EL诱导的凋亡,这表明IFNgammaR2抑制了仅BH3蛋白的Bax激活。从HEK293和DAMI细胞制备的细胞裂解物中共免疫沉淀Bax和IFNgammaR2。此外,还证实了纯化的Bax重组蛋白与IFNgammaR2的直接结合。将重组Bcl-2蛋白添加到细胞裂解物中会显着降低IFNgammaR2和Bax的相互作用,这表明Bcl-2和IFNgammaR2结合了Bax的相似结构域。我们发现IFNgammaR2的C端片段(胞质域)在巨核细胞癌(DAMI),乳腺癌(MDA-MD-468)和前列腺癌(PC3细胞)的人类癌细胞系中表达。 IFNgammaR2 C端片段的存在可能赋予癌细胞对凋亡压力的抗性。我们对IFNgammaR2胞质域抗Bax活性的发现可能为IFNgamma和Bax如何控制细胞死亡的机制提供了新的思路。

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