Justman Quincey A, Serber Zach, Ferrell James E, El-Samad Hana, Shokat Kevan M
Graduate Group in Biophysics, University of California, San Francisco, CA 94158, USA.
Science. 2009 Apr 24;324(5926):509-12. doi: 10.1126/science.1169498.
Determining proper responsiveness to incoming signals is fundamental to all biological systems. We demonstrate that intracellular signaling nodes can tune a signaling network's response threshold away from the basal median effective concentration established by ligand-receptor interactions. Focusing on the bistable kinase network that governs progesterone-induced meiotic entry in Xenopus oocytes, we characterized glycogen synthase kinase-3beta (GSK-3beta) as a dampener of progesterone responsiveness. GSK-3beta engages the meiotic kinase network through a double-negative feedback loop; this specific feedback architecture raises the progesterone threshold in correspondence with the strength of double-negative signaling. We also identified a marker of nutritional status, l-leucine, which lowers the progesterone threshold, indicating that oocytes integrate additional signals into their cell-fate decisions by modulating progesterone responsiveness.
确定对传入信号的适当反应能力是所有生物系统的基础。我们证明细胞内信号节点可以将信号网络的反应阈值从由配体-受体相互作用建立的基础半数有效浓度上调。聚焦于控制非洲爪蟾卵母细胞中孕酮诱导减数分裂进入的双稳态激酶网络,我们将糖原合酶激酶-3β(GSK-3β)鉴定为孕酮反应性的抑制因子。GSK-3β通过双负反馈环参与减数分裂激酶网络;这种特定的反馈结构会根据双负信号的强度提高孕酮阈值。我们还鉴定出一种营养状态标志物L-亮氨酸,它会降低孕酮阈值,这表明卵母细胞通过调节孕酮反应性将额外信号整合到其细胞命运决定中。