Reyes de la Cruz Homero, Aguilar Raúl, Sánchez de Jiménez Estela
Departamento de Bioquímica, Facultad de Química, UNAM, Ciudad Universitaria 04510, México DF, Mexico.
Biochemistry. 2004 Jan 20;43(2):533-9. doi: 10.1021/bi035222z.
Ribosomal protein S6 (S6rp) is phosphorylated by the p70S6K enzyme in mammals, under mitogen/IGF regulation. This event has been correlated with an increase in 5'TOP mRNA translation. In this research, a maize S6 kinase (ZmS6K) was isolated from maize (Zea mays L.) embryonic axes by human p70S6K antibody immunoprecipitation. This enzyme, a 62 kDa peptide, proved to be specific for S6rp phosphorylation, as revealed by in vivo and in vitro kinase activity using either the 40S ribosomal subunit or the RSK synthetic peptide as the substrates. ZmS6K activation was achieved by phosphorylation on serine/threonine residues. Specific phospho-Threo recognition by the p70S6K antibody directed to target phospho-Threo residue 389 correlated with ZmS6K activation. The ZmS6K protein content remained almost steady during maize seed germination, whereas the ZmS6K activity increased during this process, consistent with Zm6SK phosphorylation. Addition of insulin to germinating maize axes proved to increase ZmS6K activity and the extent of S6rp phosphorylation. These events were blocked by rapamycin, an inhibitor of the insulin signal transduction pathway in mammals, at the TOR (target of rapamycin) enzyme level. We conclude that ZmS6K is a kinase, structurally and functionally ortholog of the mammalian p70S6K, responsible for in vivo S6rp phosphorylation in maize. Its activation is induced by insulin in a TOR-dependent manner by phosphorylation on conserved serine/threonine residues.
在哺乳动物中,核糖体蛋白S6(S6rp)在有丝分裂原/胰岛素样生长因子(IGF)的调控下被p70S6K酶磷酸化。这一事件与5'TOP mRNA翻译的增加相关。在本研究中,通过人p70S6K抗体免疫沉淀从玉米(Zea mays L.)胚轴中分离出一种玉米S6激酶(ZmS6K)。该酶为一种62 kDa的肽,使用40S核糖体亚基或RSK合成肽作为底物的体内和体外激酶活性表明,它对S6rp磷酸化具有特异性。ZmS6K通过丝氨酸/苏氨酸残基的磷酸化实现激活。针对磷酸化苏氨酸残基389的p70S6K抗体对特定磷酸化苏氨酸的识别与ZmS6K的激活相关。在玉米种子萌发过程中,ZmS6K蛋白含量几乎保持稳定,而ZmS6K活性在此过程中增加,这与Zm6SK的磷酸化一致。向萌发的玉米胚轴中添加胰岛素可增加ZmS6K活性和S6rp磷酸化程度。这些事件在哺乳动物胰岛素信号转导途径的抑制剂雷帕霉素作用下,在雷帕霉素靶蛋白(TOR)酶水平上被阻断。我们得出结论,ZmS6K是一种激酶,在结构和功能上与哺乳动物的p70S6K直系同源,负责玉米体内S6rp的磷酸化。其激活是由胰岛素以TOR依赖的方式通过保守丝氨酸/苏氨酸残基的磷酸化诱导的。