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酰化调节 Ras 定位从而实现细胞内信号传播的模式。

Regulation of Ras localization by acylation enables a mode of intracellular signal propagation.

机构信息

European Molecular Biology Laboratory, Meyerhofstrasse 1, 69117 Heidelberg, Germany.

出版信息

Sci Signal. 2010 Sep 21;3(140):ra68. doi: 10.1126/scisignal.20001370.

Abstract

Growth factor stimulation generates transient H-Ras activity at the plasma membrane but sustained activity at the Golgi. Two overlapping regulatory networks control compartmentalized H-Ras activity: the guanosine diphosphate-guanosine triphosphate cycle and the acylation cycle, which constitutively traffics Ras isoforms that can be palmitoylated between intracellular membrane compartments. Quantitative imaging of H-Ras activity after decoupling of these networks revealed regulation of H-Ras activity at the plasma membrane but not at the Golgi. Nevertheless, upon stimulation with epidermal growth factor, Ras activity at the Golgi displayed a pulse-like profile similar to that at the plasma membrane but also remained high after the initial stimulus. A compartmental model that included the acylation cycle and H-Ras regulation at the plasma membrane accounted for the pulse-like profile of H-Ras activity at the Golgi but implied that sustained H-Ras activity at the Golgi required H-Ras activation at an additional compartment, which we experimentally determined to be the endoplasmic reticulum. Thus, in addition to maintaining the localization of Ras, the acylation cycle underlies a previously unknown form of signal propagation similar to radio transmission in its generation of a constitutive Ras "carrier wave" that transmits Ras activity between subcellular compartments.

摘要

生长因子刺激会在质膜上产生短暂的 H-Ras 活性,但在高尔基体上则会产生持续的活性。两个重叠的调控网络控制着区室化的 H-Ras 活性:鸟苷二磷酸-鸟苷三磷酸循环和酰化循环,它们使可棕榈酰化的 Ras 同工型在细胞内膜区室之间持续运输。解耦这些网络后对 H-Ras 活性进行定量成像,揭示了对质膜上 H-Ras 活性的调节,但对高尔基体上的 H-Ras 活性没有调节。然而,在表皮生长因子刺激下,高尔基体上的 Ras 活性呈现出与质膜上相似的脉冲样特征,但在初始刺激后仍保持较高水平。一个包含酰化循环和质膜上 H-Ras 调节的区室模型解释了高尔基体上 H-Ras 活性的脉冲样特征,但暗示高尔基体上持续的 H-Ras 活性需要 H-Ras 在另一个区室中被激活,我们通过实验确定该区室为内质网。因此,除了维持 Ras 的定位外,酰化循环还构成了一种以前未知的信号传递形式,类似于无线电传输,它产生了一种组成性的 Ras“载波”,在亚细胞区室之间传递 Ras 活性。

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