Yang Yuhong, He Qun, Cheng Ping, Wrage Philip, Yarden Oded, Liu Yi
Department of Physiology, University of Texas Southwestern Medical Center, Dallas, Texas 75390, USA.
Genes Dev. 2004 Feb 1;18(3):255-60. doi: 10.1101/gad.1152604.
Phosphorylation of the Neurospora circadian clock protein FREQUENCY by several kinases promotes its degradation and is important for the function of the circadian feedback loop. Here, we show that FRQ is less stable in a ppp-1 (catalytic subunit of PP1) mutant, resulting in its advanced phase and short period. In contrast, FRQ stability is not altered in a rgb-1 (a regulatory subunit of PP2A) mutant, but levels of frq protein and mRNA are low, resulting in a low-amplitude and long-period oscillation of the clock. Furthermore, PP1 and PP2A expressed in Neurospora can dephosphorylate the endogenous FRQ in vitro, suggesting that these two phosphatases may differentially regulate FRQ and, consequently, the behavior of the circadian clock.
几种激酶对粗糙脉孢菌生物钟蛋白频率(FREQUENCY)的磷酸化作用促进其降解,这对生物钟反馈回路的功能很重要。在此,我们表明,在ppp-1(蛋白磷酸酶1的催化亚基)突变体中,FRQ的稳定性较低,导致其相位提前和周期缩短。相比之下,在rgb-1(蛋白磷酸酶2A的调节亚基)突变体中,FRQ的稳定性没有改变,但frq蛋白和mRNA的水平较低,导致生物钟出现低振幅和长周期振荡。此外,在粗糙脉孢菌中表达的PP1和PP2A在体外可使内源性FRQ去磷酸化,这表明这两种磷酸酶可能对FRQ进行差异调节,从而影响生物钟的行为。