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首页> 外文期刊>Cell death & disease. >B-Myb switches from Cyclin/Cdk-dependent to Jnk- and p38 kinase-dependent phosphorylation and associates with SC35 bodies after UV stress
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B-Myb switches from Cyclin/Cdk-dependent to Jnk- and p38 kinase-dependent phosphorylation and associates with SC35 bodies after UV stress

机译:B-Myb从Cyclin / Cdk依赖性转变为Jnk和p38激酶依赖性磷酸化,并在紫外线胁迫下与SC35体结合

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摘要

B-Myb is a highly conserved member of the Myb transcription factor family that has essential roles in cell-cycle progression. Recent work has suggested that B-Myb is also involved in the cellular DNA-damage response. Here, we have investigated the fate of B-Myb in UV-irradiated cells. UV stress leads to the appearance of phosphorylated B-Myb in nuclear SC35 speckles during transcriptional shutdown. Furthermore, we show that UV irradiation leads to a change of the phosphorylation pattern of B-Myb, which is caused by a switch from Cyclin/Cdk-dependent to Jnk and p38 kinase-dependent phosphorylation. Taken together, we have identified Jnk and p38 kinase as novel regulators of B-Myb and established the localization of phosphorylated B-Myb in SC35 speckles as a potential novel regulatory mechanism for B-Myb in UV irradiated cells.
机译:B-Myb是Myb转录因子家族的高度保守成员,在细胞周期进程中具有重要作用。最近的工作表明B-Myb也参与细胞DNA损伤反应。在这里,我们研究了B-Myb在紫外线照射的细胞中的命运。紫外线胁迫导致转录关闭过程中核SC35斑点中出现磷酸化的B-Myb。此外,我们表明紫外线辐射导致B-Myb磷酸化模式的变化,这是由从Cyclin / Cdk依赖型转变为Jnk和p38激酶依赖型磷酸化引起的。两者合计,我们已经确定Jnk和p38激酶是B-Myb的新型调节剂,并确定了磷酸化B-Myb在SC35斑点中的定位是B-Myb在紫外线照射的细胞中潜在的新型调节机制。

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