Anttonen M, Parviainen H, Kyrönlahti A, Bielinska M, Wilson D B, Ritvos O, Heikinheimo M
Program for Developmental and Reproductive Biology, Biomedicum Helsinki, Finland.
J Mol Endocrinol. 2006 Jun;36(3):557-68. doi: 10.1677/jme.1.01962.
Part of heterodimeric inhibin, inhibin-alpha is crucial for mammalian ovarian function. Regulation of inhibin-alpha expression in granulosa cells is both endocrine, primarily by follicle-stimulating hormone (FSH), and paracrine, primarily by members of the transforming growth factor beta (TGF-beta) superfamily. Smad proteins transmit TGF-beta signals to the nucleus, but the cooperating transcription factors involved in inhibin-alpha promoter activation remain unknown. Transcription factor GATA-4 regulates inhibin-alpha in gonadal cells, and the FSH cascade activates GATA-4. We hypothesized that the TGF-beta signalling cascade and GATA-4 also cooperate to regulate inhibin-alpha expression. In KK-1 granulosa tumour cells, which resemble normal granulosa cells and express inhibin-alpha, we found that TGF-beta upregulated GATA-4 expression. Transient transfection experiments in KK-1 cells demonstrated that dominant negative GATA-4 variants or mutations of GATA-binding sites in the inhibin-alpha promoter attenuated TGF-beta-induced gene activation. In GATA-4-deficient COS-7 cells, TGF-beta enhanced the expression of the inhibin-alpha promoter only in the presence of exogenous GATA-4. Smad3, but not Smad2, cooperated with GATA-4 in the transcriptional activation of the inhibin-alpha promoter, and immunoprecipitation experiments in KK-1 cells revealed a physical Smad3:GATA-4 interaction. Our data suggest that GATA-4, interacting with Smad3, is a cofactor for TGF-beta signalling to activate inhibin-alpha in granulosa cells.
抑制素α是异源二聚体抑制素的一部分,对哺乳动物卵巢功能至关重要。颗粒细胞中抑制素α表达的调节既有内分泌调节,主要由促卵泡激素(FSH)介导,也有旁分泌调节,主要由转化生长因子β(TGF-β)超家族成员介导。Smad蛋白将TGF-β信号传递至细胞核,但参与抑制素α启动子激活的协同转录因子仍不清楚。转录因子GATA-4调节性腺细胞中的抑制素α,且FSH级联反应可激活GATA-4。我们推测TGF-β信号级联反应和GATA-4也协同调节抑制素α的表达。在类似于正常颗粒细胞且表达抑制素α的KK-1颗粒细胞瘤细胞中,我们发现TGF-β上调了GATA-4的表达。KK-1细胞中的瞬时转染实验表明,显性负性GATA-4变体或抑制素α启动子中GATA结合位点的突变减弱了TGF-β诱导的基因激活。在缺乏GATA-4的COS-7细胞中,TGF-β仅在外源GATA-4存在的情况下增强抑制素α启动子的表达。Smad3而非Smad2与GATA-4在抑制素α启动子的转录激活中协同作用,KK-1细胞中的免疫沉淀实验揭示了Smad3与GATA-4之间存在物理相互作用。我们的数据表明,与Smad3相互作用的GATA-4是TGF-β信号传导以激活颗粒细胞中抑制素α的辅助因子。