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钙参与花粉管中振荡的 ROP1 Rho GTPase 的反馈调节。

Calcium participates in feedback regulation of the oscillating ROP1 Rho GTPase in pollen tubes.

机构信息

Center for Plant Cell Biology, Department of Botany and Plant Sciences, University of California, Riverside, CA 92521, USA.

出版信息

Proc Natl Acad Sci U S A. 2009 Dec 22;106(51):22002-7. doi: 10.1073/pnas.0910811106. Epub 2009 Dec 1.

Abstract

Biological oscillation occurs at various levels, from cellular signaling to organismal behaviors. Mathematical modeling has allowed a quantitative understanding of slow oscillators requiring changes in gene expression (e.g., circadian rhythms), but few theoretical studies have focused on the rapid oscillation of cellular signaling. The tobacco pollen tube, which exhibits growth bursts every 80 s or so, is an excellent system for investigating signaling oscillation. Pollen tube growth is controlled by a tip-localized ROP1 GTPase, whose activity oscillates in a phase about 90 degrees ahead of growth. We constructed a mathematical model of ROP1 activity oscillation consisting of interlinking positive and negative feedback loops involving F-actin and calcium, ROP1-signaling targets that oscillate in a phase about 20 degrees and 110 degrees behind ROP1 activity, respectively. The model simulates the observed changes in ROP1 activity caused by F-actin disruption and predicts a role for calcium in the negative feedback regulation of the ROP1 activity. Our experimental data strongly support this role of calcium in tip growth. Thus, our findings provide insight into the mechanism of pollen tube growth and the oscillation of cellular signaling.

摘要

生物振荡发生在多个层面,从细胞信号传递到生物体行为。数学建模允许对需要改变基因表达的慢振荡器(例如,昼夜节律)进行定量理解,但很少有理论研究关注细胞信号的快速振荡。烟草花粉管每隔 80 秒左右就会出现生长爆发,是研究信号振荡的绝佳系统。花粉管的生长由局部尖端的 ROP1 GTPase 控制,其活性在生长之前约 90 度的相位上振荡。我们构建了一个由涉及 F-肌动蛋白和钙的正反馈和负反馈环相互连接的 ROP1 活性振荡数学模型,其信号靶标分别在 ROP1 活性之后约 20 度和 110 度的相位上振荡。该模型模拟了由 F-肌动蛋白破坏引起的 ROP1 活性的观察到的变化,并预测了钙在 ROP1 活性的负反馈调节中的作用。我们的实验数据强烈支持钙在尖端生长中的这种作用。因此,我们的发现为花粉管生长和细胞信号的振荡机制提供了深入的了解。

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