Brito Ana Sofia, Soto Diaz Silvia, Van Vooren Pascale, Godard Patrice, Marini Anna Maria, Boeckstaens Mélanie
Laboratory of Biology of Membrane Transport, IBMM, Université Libre de Bruxelles, rue des Professeurs Jeener et Brachet 12, 6041 Gosselies, Belgium.
UCB Pharma, Chemin du Foriest, 1420 Braine-l'Alleud, Belgium.
iScience. 2019 Oct 25;20:415-433. doi: 10.1016/j.isci.2019.09.025. Epub 2019 Sep 18.
To adjust cell growth and metabolism according to environmental conditions, the conserved TORC1 signaling network controls autophagy, protein synthesis, and turnover. Here, we dissected the signals controlling phosphorylation and activity of the TORC1-effector kinase Npr1, involved in tuning the plasma membrane permeability to nitrogen sources. By evaluating a role of pH as a signal, we show that, although a transient cytosolic acidification accompanies nitrogen source entry and is correlated to a rapid TORC1-dependent phosphorylation of Npr1, a pH drop is not a prerequisite for TORC1 activation. We show that the Gtr1/Gtr2 and Pib2 regulators of TORC1 both independently and differently contribute to regulate Npr1 phosphorylation and activity. Finally, our data reveal that Npr1 mediates nitrogen-dependent phosphorylation of Pib2, as well as a Pib2-dependent inhibition of TORC1. This work highlights a feedback control loop likely enabling efficient downregulation and faster re-activation of TORC1 in response to a novel stimulating signal.
为了根据环境条件调节细胞生长和代谢,保守的TORC1信号网络控制自噬、蛋白质合成和周转。在这里,我们剖析了控制TORC1效应激酶Npr1磷酸化和活性的信号,Npr1参与调节质膜对氮源的通透性。通过评估pH作为信号的作用,我们发现,尽管氮源进入伴随着短暂的胞质酸化,且与Npr1的快速TORC1依赖性磷酸化相关,但pH下降不是TORC1激活的先决条件。我们表明,TORC1的Gtr1/Gtr2和Pib2调节因子对Npr1磷酸化和活性的调节既有独立作用,又有不同作用。最后,我们的数据表明,Npr1介导Pib2的氮依赖性磷酸化,以及Pib2对TORC1的依赖性抑制。这项工作突出了一个反馈控制回路,该回路可能使TORC1能够有效地下调,并在响应新的刺激信号时更快地重新激活。