CIQUIBIC (CONICET), Departamento de Química Biológica, Facultad de Ciencias Químicas, Universidad Nacional de Córdoba, Córdoba, Argentina.
Oncogene. 2012 Jul 12;31(28):3381-91. doi: 10.1038/onc.2011.510. Epub 2011 Nov 21.
Our previous work showed that in T98G cells, a human glioblastoma multiforme-derived cell line, the association of c-Fos to the endoplasmic reticulum (ER) and consequently, the capacity of c-Fos to activate phospholipid synthesis, is regulated by the phosphorylation state of tyrosine (tyr) residues #10 and #30 of c-Fos. The small amount of c-Fos present in quiescent cells is tyr-phosphorylated, is dissociated from the ER membranes and does not activate phospholipid synthesis. However, on induction of the cell to re-enter growth, c-Fos expression is rapidly induced, it is found dephosphorylated, associated to ER membranes and activating phospholipid synthesis (Portal et al., 2007). Herein, using in vivo and in vitro experimental strategies, we show that the kinase c-Src is capable of phosphorylating tyr residues of c-Fos whereas the phosphatase TC45 T-cell protein-tyr phosphatase (TC-PTP) dephosphorylates them, thus enabling c-Fos/ER association and activation of phospholipid synthesis. Results also suggest that the regulation of the phosphorylation/dephosphorylation cycle of c-Fos occurs at the TC-PTP level: induction of cells to re-enter growth promotes the translocation of TC45 from a nuclear to a cytoplasmic location concomitant with its activation. Activated TC45 in its turn promotes dephosphorylation of pre-formed c-Fos, enabling cells to rapidly activate phospholipid synthesis to respond to its growth demands.
我们之前的工作表明,在 T98G 细胞(一种源自人多形性胶质母细胞瘤的细胞系)中,c-Fos 与内质网(ER)的结合,以及 c-Fos 激活磷脂合成的能力,受 c-Fos 酪氨酸(tyr)残基 #10 和 #30 的磷酸化状态调节。在静止细胞中存在的少量 c-Fos 是 tyr 磷酸化的,与 ER 膜解离,并且不激活磷脂合成。然而,当诱导细胞重新进入生长时,c-Fos 表达迅速诱导,发现其去磷酸化,与 ER 膜结合并激活磷脂合成(Portal 等人,2007)。在此,我们使用体内和体外实验策略,表明激酶 c-Src 能够磷酸化 c-Fos 的 tyr 残基,而磷酸酶 TC45 T 细胞蛋白-tyr 磷酸酶(TC-PTP)则去磷酸化它们,从而使 c-Fos/ER 结合并激活磷脂合成。结果还表明,c-Fos 的磷酸化/去磷酸化循环的调节发生在 TC-PTP 水平:诱导细胞重新进入生长促进了 TC45 从核位置向细胞质位置的易位,同时伴随着其激活。激活的 TC45 反过来促进预先形成的 c-Fos 的去磷酸化,使细胞能够迅速激活磷脂合成以响应其生长需求。