Gupta Saurabh K, Guo Xin, Durkin Sarah S, Fryrear Kimberly F, Ward Michael D, Semmes O John
Department of Microbiology and Molecular Cell Biology, Eastern Virginia Medical School, Norfolk, Virginia 23507, USA.
J Biol Chem. 2007 Oct 5;282(40):29431-40. doi: 10.1074/jbc.M704110200. Epub 2007 Aug 13.
De novo expression of human T-cell leukemia virus type 1 Tax results in cellular genomic instability. We demonstrated previously that Tax associates with the cell cycle check point regulator Chk2 and proposed that the inappropriate activation of Chk2 provides a model for Tax-induced loss of genetic integrity (Haoudi, A., Daniels, R. C., Wong, E., Kupfer, G., and Semmes, O. J. (2003) J. Biol. Chem. 278, 37736-37744). Here we provide an explanation for how Tax induces some Chk2 activities but represses others. We show that Tax interaction with Chk2 generates two activation signals in Chk2, oligomerization and autophosphorylation. However, egress of Chk2 from chromatin, normally observed in response to ionizing radiation, was repressed in Tax-expressing cells. Analysis of chromatin-bound Chk2 from Tax-expressing cells revealed phosphorylation at Thr(378), Ser(379), Thr(383), Thr(387), and Thr(389). In contrast, chromatin-bound Chk2 in the absence of Tax was phosphorylated at Thr(383) and Thr(387) in response to ionizing radiation. We further establish that Tax binds to the kinase domain of Chk2. Confocal microscopy revealed a redistribution of Chk2 to colocalize with Tax in Tax speckled structures, which we have shown previously to coincide with interchromatin granules. We propose that Tax binding via the Chk2 kinase domain sequesters phosphorylated Chk2 within chromatin, thus hindering chromatin egress and appropriate response to DNA damage.
人T细胞白血病病毒1型(HTLV-1)Tax蛋白的从头表达会导致细胞基因组不稳定。我们之前证明Tax与细胞周期检查点调节因子Chk2相关联,并提出Chk2的不适当激活为Tax诱导的遗传完整性丧失提供了一个模型(Haoudi, A., Daniels, R. C., Wong, E., Kupfer, G., and Semmes, O. J. (2003) J. Biol. Chem. 278, 37736 - 37744)。在此,我们解释了Tax如何诱导Chk2的某些活性但又抑制其他活性。我们表明Tax与Chk2的相互作用在Chk2中产生了两个激活信号,即寡聚化和自磷酸化。然而,通常在电离辐射响应中观察到的Chk2从染色质上的释放,在表达Tax的细胞中受到抑制。对表达Tax的细胞中与染色质结合的Chk2的分析显示,在苏氨酸(Thr)378、丝氨酸(Ser)379、苏氨酸383、苏氨酸387和苏氨酸389处发生了磷酸化。相比之下,在没有Tax的情况下,与染色质结合的Chk2在电离辐射响应中在苏氨酸383和苏氨酸387处发生磷酸化。我们进一步证实Tax与Chk2的激酶结构域结合。共聚焦显微镜显示Chk2重新分布,与Tax在Tax斑点结构中共定位,我们之前已表明这些结构与染色质间颗粒一致。我们提出,Tax通过Chk2激酶结构域的结合将磷酸化的Chk2隔离在染色质内,从而阻碍染色质释放以及对DNA损伤的适当反应。