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激活素B可通过促性腺激素细胞中的ALK4和ALK7进行信号传导。

Activin B can signal through both ALK4 and ALK7 in gonadotrope cells.

作者信息

Bernard Daniel J, Lee Katharine B, Santos Michelle M

机构信息

Center for Biomedical Research, Population Council and The Rockefeller University, New York, NY 10021, USA.

出版信息

Reprod Biol Endocrinol. 2006 Oct 13;4:52. doi: 10.1186/1477-7827-4-52.

Abstract

BACKGROUND

Activins stimulate pituitary FSH synthesis via transcriptional regulation of the FSHbeta subunit gene (Fshb). Like other members of the TGFbeta superfamily, these ligands signal through complexes of type I and type II receptor serine/threonine kinases. The type I receptors, or activin receptor-like kinases (ALKs), propagate intracellular signals upon ligand binding and phosphorylation by associated type II receptors. ALK4 is generally regarded as the type I receptor for activins; however, recent data suggested that activin B and AB might also signal through ALK7. Here, we examined a role for ALK7 in activin B-regulated Fshb transcription.

METHODS

We analyzed ALK7 mRNA expression in immortalized gonadotrope cells, LbetaT2, and adult murine pituitary by RT-PCR. We next transfected LbetaT2 cells with wild-type and kinase-deficient (Lys to Arg, KR) forms of ALK4 and ALK7 and examined the effects of these receptors on activin A and B stimulated Fshb promoter-reporter activity. Cells were also transfected with constitutively active (Thr to Asp, TD) forms of the receptors and their effects on endogenous Fshb mRNA levels and phosphorylation of transfected Smad2/3 were measured by RT-PCR and Western blot, respectively. Finally, we measured ALK4(TD) and ALK7(TD) stimulation of Fshb transcription when endogenous Smad3 levels were depleted using short hairpin RNAs.

RESULTS

ALK7 mRNA was expressed in LbetaT2 cells and pituitary gland. Transfection of ALK4 cDNA potentiated the effects of both activin A and activin B on Fshb promoter-reporter activity in LbetaT2 cells. In contrast, ALK7 transfection selectively potentiated activin B's effects. Transfection of ALK4(KR) and ALK7(KR) partly inhibited basal and activin B-stimulated reporter activity, whereas ALK4(TD) and ALK7(TD) potently stimulated the Fshb promoter and endogenous mRNA levels. Transfection of both ALK4(TD) and ALK7(TD) stimulated Smad2/3 phosphorylation, and the effects of both receptors on Fshb promoter activity were inhibited by depletion of endogenous Smad3 protein levels.

CONCLUSION

These data suggest that immortalized gonadotropes express ALK7 and that activin B can signal through this receptor to stimulate Fshb transcription. The relative roles of endogenous ALK4 and ALK7 receptors in mediating activin B's effects in these cells have yet to be determined.

摘要

背景

激活素通过对促卵泡激素β亚基基因(Fshb)的转录调控来刺激垂体促卵泡激素(FSH)的合成。与转化生长因子β(TGFβ)超家族的其他成员一样,这些配体通过I型和II型受体丝氨酸/苏氨酸激酶复合物来传递信号。I型受体,即激活素受体样激酶(ALKs),在配体结合并被相关II型受体磷酸化后,传递细胞内信号。ALK4通常被认为是激活素的I型受体;然而,最近的数据表明,激活素B和激活素AB也可能通过ALK7来传递信号。在此,我们研究了ALK7在激活素B调节Fshb转录中的作用。

方法

我们通过逆转录聚合酶链反应(RT-PCR)分析了永生化促性腺激素细胞LbetaT2和成年小鼠垂体中ALK7信使核糖核酸(mRNA)的表达。接下来,我们用野生型和激酶缺陷型(赖氨酸突变为精氨酸,KR)的ALK4和ALK7转染LbetaT2细胞,并研究这些受体对激活素A和激活素B刺激的Fshb启动子-报告基因活性的影响。还用组成型激活型(苏氨酸突变为天冬氨酸,TD)的受体转染细胞,分别通过RT-PCR和蛋白质免疫印迹法检测它们对内源性Fshb mRNA水平以及转染的Smad2/磷酸化的影响。最后,当使用短发夹RNA耗尽内源性Smad3水平时,我们检测了ALK4(TD)和ALK7(TD)对Fshb转录的刺激作用。

结果

ALK7 mRNA在LbetaT2细胞和垂体中表达。转染ALK4互补脱氧核糖核酸(cDNA)增强了激活素A和激活素B对LbetaT2细胞中Fshb启动子-报告基因活性的影响。相比之下,转染ALK7则选择性地增强了激活素B的作用。转染ALK4(KR)和ALK7(KR)部分抑制基础和激活素B刺激的报告基因活性,而ALK4(TD)和ALK7(TD)则强烈刺激Fshb启动子和内源性mRNA水平。转染ALK4(TD)和ALK7(TD)均刺激Smad2/3磷酸化,并且两种受体对Fshb启动子活性的影响都因内源性Smad3蛋白水平的耗尽而受到抑制。

结论

这些数据表明,永生化促性腺激素细胞表达ALK7,并且激活素B可以通过该受体传递信号来刺激Fshb转录。内源性ALK4和ALK7受体在介导激活素B对这些细胞的作用中的相对作用尚未确定。

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