Looyenga Brendan D, Hammer Gary D
Cellular and Molecular Biology Graduate Program, Division of Metabolism, Endocrinology and Diabetes, University of Michigan, Ann Arbor, Michigan 48109-2200, USA.
Mol Endocrinol. 2007 Oct;21(10):2440-57. doi: 10.1210/me.2006-0402. Epub 2007 Jul 24.
Inhibin and activin are members of the TGFbeta family that perform mutually antagonistic signaling roles in the anterior pituitary, gonads, and adrenal gland. Unopposed activin signaling in inhibin-null (Inha-/-) mice causes the formation of granulosa cell tumors in the gonads and adrenal cortex, which depend upon FSH for efficient growth and progression. In this study, we demonstrate that Smad3, a key effector of activin signaling, is expressed at high levels and is constitutively activated in tumors from these mice. Removal of Smad3 from Inha-/- mice by a genetic cross to Smad3-null (Madh3-/-) mice leads to a significant decrease in cyclinD2 expression and a significant attenuation of tumor progression in the gonads and adrenal. The decrease in cyclinD2 levels in compound knockout mice is related to a reduction in mitogenic signaling through the phosphoinositide-3-kinase (PI3-kinase)/Akt pathway, which is required for normal cell cycle progression in tumor cells. Loss of PI3-kinase/Akt signaling cannot be attributed to alterations in IGF expression, suggesting instead that signaling through the FSH receptor is attenuated. Gene expression profiling in the ovaries of Madh3-/- and Inha-/-:Madh3-/- compound knockout mice supports this hypothesis and further suggests that Smad3 is specifically required for FSH to activate PI3-kinase/Akt, but not protein kinase A. Together these observations imply that activin/Smad3 signaling is necessary for efficient signaling by FSH in Inha-/- tumor cells and that interruption of this pathway uncouples FSH from its intracellular mitogenic effectors.
抑制素和激活素是转化生长因子β(TGFβ)家族的成员,它们在前脑垂体、性腺和肾上腺中发挥相互拮抗的信号传导作用。在抑制素基因敲除(Inha-/-)小鼠中,无对抗的激活素信号传导会导致性腺和肾上腺皮质中颗粒细胞瘤的形成,这些肿瘤的有效生长和进展依赖于促卵泡生成素(FSH)。在本研究中,我们证明激活素信号传导的关键效应因子Smad3在这些小鼠的肿瘤中高水平表达且持续激活。通过与Smad3基因敲除(Madh3-/-)小鼠进行遗传杂交,从Inha-/-小鼠中去除Smad3,会导致细胞周期蛋白D2(cyclinD2)表达显著降低,性腺和肾上腺中的肿瘤进展明显减缓。复合基因敲除小鼠中cyclinD2水平的降低与通过磷酸肌醇-3-激酶(PI3-激酶)/蛋白激酶B(Akt)途径的促有丝分裂信号传导减少有关,这是肿瘤细胞正常细胞周期进展所必需的。PI3-激酶/Akt信号传导的丧失不能归因于胰岛素样生长因子(IGF)表达的改变,相反表明通过FSH受体的信号传导减弱。Madh3-/-和Inha-/-:Madh3-/-复合基因敲除小鼠卵巢中的基因表达谱分析支持这一假设,并进一步表明Smad3是FSH激活PI3-激酶/Akt所特必需的,但不是蛋白激酶A。这些观察结果共同表明,激活素/Smad3信号传导对于Inha-/-肿瘤细胞中FSH的有效信号传导是必需的,并且该途径的中断使FSH与其细胞内促有丝分裂效应器解偶联。