Jensen C J, Buch M B, Krag T O, Hemmings B A, Gammeltoft S, Frödin M
Department of Clinical Biochemistry, Glostrup Hospital, DK-2600 Glostrup, Denmark.
J Biol Chem. 1999 Sep 17;274(38):27168-76. doi: 10.1074/jbc.274.38.27168.
90-kDa ribosomal S6 kinase-2 (RSK2) belongs to a family of growth factor-activated serine/threonine kinases composed of two kinase domains connected by a regulatory linker region. The N-terminal kinase of RSK2 is involved in substrate phosphorylation. Its activation requires phosphorylation of the linker region at Ser(369), catalyzed by extracellular signal-regulated kinase (ERK), and at Ser(386), catalyzed by the C-terminal kinase, after its activation by ERK. In addition, the N-terminal kinase must be phosphorylated at Ser(227) in the activation loop by an as yet unidentified kinase. Here, we show that the isolated N-terminal kinase of RSK2 (amino acids 1-360) is phosphorylated at Ser(227) by PDK1, a constitutively active kinase, leading to 100-fold stimulation of kinase activity. In COS7 cells, ectopic PDK1 induced the phosphorylation of full-length RSK2 at Ser(227) and Ser(386), without involvement of ERK, leading to partial activation of RSK2. Similarly, two other members of the RSK family, RSK1 and RSK3, were partially activated by PDK1 in COS7 cells. Finally, our data indicate that full activation of RSK2 by growth factor requires the cooperation of ERK and PDK1 through phosphorylation of Ser(227), Ser(369), and Ser(386). Our study extend recent findings which implicate PDK1 in the activation of protein kinases B and C and p70(S6K), suggesting that PDK1 controls several major growth factor-activated signal transduction pathways.
90千道尔顿核糖体S6激酶2(RSK2)属于生长因子激活的丝氨酸/苏氨酸激酶家族,由两个通过调节连接区相连的激酶结构域组成。RSK2的N端激酶参与底物磷酸化。其激活需要细胞外信号调节激酶(ERK)催化连接区Ser(369)位点的磷酸化,以及在ERK激活C端激酶后,由C端激酶催化Ser(386)位点的磷酸化。此外,N端激酶必须在激活环的Ser(227)位点被一种尚未明确的激酶磷酸化。在此,我们表明,分离的RSK2的N端激酶(氨基酸1 - 360)被组成型活性激酶PDK1在Ser(227)位点磷酸化,导致激酶活性增强100倍。在COS7细胞中,异位表达的PDK1诱导全长RSK2在Ser(227)和Ser(386)位点磷酸化,而无需ERK参与,导致RSK2部分激活。同样,RSK家族的另外两个成员RSK1和RSK3在COS7细胞中也被PDK1部分激活。最后,我们的数据表明,生长因子对RSK2的完全激活需要ERK和PDK1通过对Ser(227)、Ser(369)和Ser(386)的磷酸化协同作用。我们的研究扩展了最近的发现,即PDK1参与蛋白激酶B、C和p70(S6K)的激活,表明PDK1控制几种主要的生长因子激活的信号转导途径。