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Pro- and anti-apoptotic dual functions of the C5a receptor: involvement of regulator of G protein signaling 3 and extracellular signal-regulated kinase

机译:C5a受体的促凋亡和抗凋亡双重功能:涉及G蛋白信号传导3的调节剂和细胞外信号调节的激酶

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When apoptosis is initiated by manganese (II) loading, hyperthermia or thapsigargin treatment, human HL-60 and AsPC-1 cells initiate de novo synthesis of the C5a receptor (C5aR) and generation of its ligand, the ribosomal protein S19 (RP S19) homodimer. The ligand–receptor interaction, in an autocrine/paracrine fashion, promotes apoptosis, which can be bypassed by exogenous administration of C5a, another ligand. The proapoptotic function of the RP S19 dimer is reproduced by a C5a/RPS19 chimera that contains the body of C5a and the C-terminal region (Ile134-His145) of RP S19. The RP S19 dimer or C5a/RPS19 and C5a inversely regulate the expression of Regulator of G protein Signaling 3 (RGS3) gene in the apoptosis-initiated cells. Namely, the RP S19-type proteins upregulate RGS3 expression, whereas the C5a reduce it. Transformation of HL-60 cells to overexpress RGS3 promotes apoptosis in association with the downregulation of the Extracellular signal-Regulated Kinase (ERK) signal, and vice versa in the RGS3 knocked-down cells. Consistent with this result, an inhibitor of ERK phosphorylation effectively enhances the apoptotic rate in wild-type HL-60 cells. Moreover, a dominant negative effect on the RP S19 dimer production encourages apoptosis-initiated HL-60 cells with a longer lifespan in mouse than the natural effect. Our data indicate that, in apoptosis-initiated cells, the ligand-dependent C5aR-mediated dual signal affects the fate of cells, either apoptosis execution or survival, through regulation of RGS3 gene expression and subsequent modulation of ERK signal.
机译:当通过锰(II)加载,热疗或毒胡萝卜素处理引发细胞凋亡时,人HL-60和AsPC-1细胞将开始从头合成C5a受体(C5aR)并产生其配体核糖体蛋白S19(RP S19)同二聚体。配体与受体的相互作用以自分泌/旁分泌的方式促进了细胞凋亡,可以通过外源给予另一种配体C5a来绕过细胞凋亡。 RP S19二聚体的促凋亡功能由包含C5a主体和RP S19 C端区域(Ile134-His145)的C5a / RPS19嵌合体复制。 RP S19二聚体或C5a / RPS19和C5a反向调节细胞凋亡启动细胞中G蛋白信号传导3(RGS3)调节因子的表达。即,RP S19型蛋白上调RGS3表达,而C5a降低它。 HL-60细胞过表达RGS3的转化会促进细胞凋亡,并伴随细胞外信号调节激酶(ERK)信号的下调,反之亦然。与此结果一致,ERK磷酸化抑制剂可有效提高野生型HL-60细胞的凋亡率。此外,对RP S19二聚体产生的显性负作用鼓励小鼠体内比自然作用寿命更长的细胞凋亡引发的HL-60细胞。我们的数据表明,在凋亡起始细胞中,配体依赖性C5aR介导的双重信号通过调节RGS3基因表达和随后调节ERK信号,影响细胞的命运,无论是执行凋亡还是存活。

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