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作为感染反应的函数产生的活性杆状病毒重组体p70s6k和p85s6k。

Active baculovirus recombinant p70s6k and p85s6k produced as a function of the infectious response.

作者信息

Kozma S C, McGlynn E, Siegmann M, Reinhard C, Ferrari S, Thomas G

机构信息

Friedrich Miescher Institute, Basel, Switzerland.

出版信息

J Biol Chem. 1993 Apr 5;268(10):7134-8.

PMID:8463249
Abstract

Rat p70s6k and p85s6k have been expressed in baculovirus recombinants propagated in Sf9 insect cells. Surprisingly, both recombinant isoforms were active without coinfection of other kinases which lie upstream in the signaling pathway. Treatment of either recombinant form with phosphatase 2A leads to immediate inactivation in the absence of phosphatase inhibitors. Further studies show that the same four major Ser/Thr-Pro sites associated with p70s6k activation following mitogenic stimulation in vivo are also the four major sites phosphorylated in both the p70s6k and p85s6k during the infection process. It is proposed that the production of phosphorylated and activated recombinant p70s6k and p85s6k is due to activation of a host cell signaling pathway which is triggered by viral infection. In support of this hypothesis, wild-type virus-, but not mock-infected cells, exhibit the multiple phosphorylation of a ribosomal protein which migrates similar to ribosomal protein S6 on two-dimensional-polyacrylamide gels and extracts from these same cells contain elevated levels of S6 kinase activity.

摘要

大鼠p70s6k和p85s6k已在Sf9昆虫细胞中繁殖的杆状病毒重组体中表达。令人惊讶的是,两种重组亚型在没有信号通路中位于上游的其他激酶共感染的情况下均具有活性。在没有磷酸酶抑制剂的情况下,用磷酸酶2A处理任何一种重组形式都会导致立即失活。进一步的研究表明,体内有丝分裂原刺激后与p70s6k激活相关的相同四个主要Ser/Thr-Pro位点,也是感染过程中p70s6k和p85s6k中磷酸化的四个主要位点。有人提出,磷酸化和活化的重组p70s6k和p85s6k的产生是由于病毒感染触发的宿主细胞信号通路的激活。为支持这一假设,野生型病毒感染的细胞(而非模拟感染的细胞)在二维聚丙烯酰胺凝胶上显示出一种核糖体蛋白的多重磷酸化,该核糖体蛋白的迁移类似于核糖体蛋白S6,并且来自这些相同细胞的提取物含有升高水平的S6激酶活性。

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