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Phosphorylation of three regulatory serines of Tob by Erk1 and Erk2 is required for Ras-mediated cell proliferation and transformation

机译:Ras介导的细胞增殖和转化需要Erk1和Erk2对Tob的三种调节丝氨酸进行磷酸化

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摘要

tob is a member of an emerging family of genes with antiproliferative function. Tob is rapidly phosphorylated at Ser 152, Ser 154, and Ser 164 by Erk1 and Erk2 upon growth-factor stimulation. Oncogenic Ras-induced transformation and growth-factor-induced cell proliferation are efficiently suppressed by mutant Tob that carries alanines but not glutamates, mimicking phosphoserines, at these sites. Wild-type Tob inhibits cell growth when the three serine residues are not phosphorylated but is less inhibitory when the serines are phosphorylated. Because growth of Rb-deficient cells was not affected by Tob, Tob appears to function upstream of Rb. Intriguingly, cyclin D1 expression is elevated in serum-starved tob−/− cells. Reintroduction of wild-type Tob and mutant Tob with serine-to-alanine but not to glutamate mutations on the Erk phosphorylation sites in these cells restores the suppression of cyclin D1 expression. Finally, the S-phase population was significantly increased in serum-starved tob−/− cells as compared with that in wild-type cells. Thus, Tob inhibits cell growth by suppressing cyclin D1 expression, which is canceled by Erk1- and Erk2-mediated Tob phosphorylation. We propose that Tob is critically involved in the control of early G1 progression.
机译:tob是具有抗增殖功能的新兴基因家族的成员。生长因子刺激后,Erk1和Erk2会使Tob在Ser 152,Ser 154和Ser 164处迅速磷酸化。突变的Tob可有效抑制致癌的Ras诱导的转化和生长因子诱导的细胞增殖,该突变Tob在这些位点上携带丙氨酸而不是谷氨酸,模仿磷酸丝氨酸。当三个丝氨酸残基不被磷酸化时,野生型Tob抑制细胞生长,而当丝氨酸被磷酸化时,野生型Tob抑制性降低。由于缺乏Rb的细胞的生长不受Tob影响,因此Tob似乎在Rb的上游起作用。有趣的是,在血清饥饿的tob -/-细胞中,细胞周期蛋白D1的表达升高。在这些细胞的Erk磷酸化位点上,将野生型Tob和突变型Tob重新引入丝氨酸到丙氨酸,但不引入谷氨酸突变,恢复了对细胞周期蛋白D1表达的抑制。最后,与野生型细胞相比,血清饥饿的tob -/-细胞中的S期种群显着增加。因此,Tob通过抑制细胞周期蛋白D1的表达来抑制细胞生长,这种表达被Erk1和Erk2介导的Tob磷酸化所抵消。我们建议Tob关键参与早期G1进程的控制。

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