Stress‐ and cell cycle‐associated regulation of RGS2 mRNA levels

J. Zmijewski, Ling Song, R. Jope
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引用次数: 4

Abstract

Regulators of G-protein signaling family members, such as RGS2, are thought to primarily be involved in regulating the activity of second messenger systems by attenuating heterotrimeric G-protein actions. However, we found previously that RGS2 is predominantly located in the nucleus, not at the plasma membrane where most G-proteins exist, and that stressful conditions increased RGS2 expression. Here we report that induction of DNA damage-induced cell cycle arrest with camptothecin caused prolonged increases in RGS2, and decreases in RGS4, mRNA levels. Cell cycle arrest caused by nocodazole also increased RGS2, and decreased RGS4, mRNA levels. Additionally, using synchronization to minimize cell stress, RGS2 mRNA levels were low in G0 and G1, and elevated in the other phases of the cell cycle. These results demonstrate that RGS2 expression is coupled to cellular stress and the cell cycle, and that these conditions cause opposite effects on RGS2 and RGS4 mRNA levels.
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应激和细胞周期相关的RGS2 mRNA水平调控
g蛋白信号家族成员的调节因子,如RGS2,被认为主要参与通过减弱异源三聚体g蛋白的作用来调节第二信使系统的活性。然而,我们之前发现RGS2主要位于细胞核,而不是大多数g蛋白存在的质膜,并且应激条件增加了RGS2的表达。在这里,我们报道了喜树碱诱导DNA损伤诱导的细胞周期阻滞导致RGS2的持续增加,RGS4 mRNA水平降低。诺可达唑引起的细胞周期阻滞使RGS2升高,RGS4 mRNA水平降低。此外,通过同步减少细胞应激,RGS2 mRNA水平在G0和G1期较低,而在细胞周期的其他阶段升高。这些结果表明,RGS2的表达与细胞应激和细胞周期相耦合,这些条件对RGS2和RGS4 mRNA水平产生相反的影响。
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