Cell cycle regulation of the double stranded RNA activated protein kinase, PKR

被引:0
作者
Maryam Zamanian-Daryoush
Sandy D Der
Bryan RG Williams
机构
[1] Lerner Research Institute,Department of Cancer Biology
[2] The Cleveland Clinic Foundation,undefined
来源
Oncogene | 1999年 / 18卷
关键词
interferon; PKR; cell cycle;
D O I
暂无
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学科分类号
摘要
The interferon (IFN)-induced, double stranded RNA (dsRNA)-activated serine/threonine kinase, PKR, is a potent negative regulator of cell growth when overexpressed in yeast or mammalian cells. To determine whether endogenous PKR plays a role in cell growth control, we have investigated the regulation of PKR levels and activity during the cell cycle in human glioblastoma T98G cells. The steady-state level of PKR mRNA in T98G cells was highest in growth arrested cells, dropped sharply within 3 h of serum stimulation then gradually increased as cells progressed through G1, reaching a plateau in early S phase. PKR protein level increased following serum stimulation reaching a peak at the G2+M boundary and declining thereafter. In contrast, PKR kinase activity exhibited two peaks, in early G1 and at the G1/S boundary, declining sharply in early S phase. Thus, the activity profile did not follow the protein profile indicating a tight regulation of PKR at the level of activity. In T98G cells expressing the catalytically inactive PKRK296R the dsRNA-induced activation of NF-κB and IRF-1 was suppressed and the mutant cells exhibited resistance to stress induced apoptosis. Cell cycle distribution analysis showed that the mutant expressing cells exhibited longer G1 phase and fewer cells engaged in S phase. Furthermore, early passage mouse embryo fibroblasts derived from PKR knockout mice grew more slowly compared with the control cells. Taken together these results suggest that PKR may play a role in cell cycle progression.
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页码:315 / 326
页数:11
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  • [1] Barber G N(1995)Mutants of the RNA-dependent protein kinase (PKR) lacking double-stranded RNA binding domain I can act as transdominant inhibitors and induce malignant transformation Molecular and Cellular Biology 15 3138-3146
  • [2] Wambach M(1997)Characterization of the Solution Complex between the Interferon-induced, Double-stranded RNA-activated Protein Kinase and HIV-I Trans-activating Region RNA Journal of Biological Chemistry 272 9510-9516
  • [3] Thompson S(1998)Potential Alu Function: Regulation of the Activity of Double-Stranded RNA-Activated Kinase PKR Molecular and Cellular Biology 18 58-68
  • [4] Jagus R(1985)Close link between reduction of c-myc expression by interferon and G0/G1 arrest Nature 313 597-600
  • [5] Katze M G(1993)Functional interactions of the retinoblastoma protein with mammalian D-type cyclins Cell 73 487-497
  • [6] Carpick Bruce W.(1977)Phosphorylation of initiation factor eIF-2 and the control of reticulocyte protein synthesis Cell 11 187-200
  • [7] Graziano Vito(1985)Two interferon-induced proteins are involved in the protein kinase complex dependent on double-stranded RNA Cell 43 685-694
  • [8] Schneider Dieter(1988)The protein kinase family: conserved features and deduced phylogeny of the catalytic domains Science 241 42-52
  • [9] Maitra Ratan K.(1997)Modulation of E2F Activity Is Linked to Interferon-induced Growth Suppression of Hematopoietic Cells Journal of Biological Chemistry 272 12406-12414
  • [10] Lee Xavier(1991)Partial characterization of a cellular factor that regulates the double-stranded RNA-dependent eIF-2 alpha kinase in 3T3-F442A fibroblasts Molecular and Cellular Biology 11 3259-3267