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p53 家族成员同工型 DeltaNp63alpha 的调节,由核因子-κB 靶向激酶 IκB 激酶β。

Regulation of p53 family member isoform DeltaNp63alpha by the nuclear factor-kappaB targeting kinase IkappaB kinase beta.

机构信息

Division of Head and Neck Cancer Research, Department of Otolaryngology-Head and Neck Surgery, Johns Hopkins University School of Medicine, Baltimore, Maryland 21231, USA.

出版信息

Cancer Res. 2010 Feb 15;70(4):1419-29. doi: 10.1158/0008-5472.CAN-09-2613. Epub 2010 Feb 9.

Abstract

The p53 family gene p63 plays an instrumental role in cellular stress responses including responses to DNA damage. In addition to encoding a full-length transcriptional activator, p63 also encodes several dominant inhibitory isoforms including the isoform DeltaNp63alpha, the function of which is not fully understood. DeltaNp63alpha is degraded in response to DNA damage, thereby enabling an effective cellular response to genotoxic agents. Here, we identify a key molecular mechanism underlying regulation of DeltaNp63alpha expression in response to chemotherapeutic agents or tumor necrosis factor-alpha. We found that DeltaNp63alpha interacts with IkappaB kinase (IKK), a multisubunit protein kinase that consists of two catalytic subunits, IKKalpha and IKKbeta, and a regulatory subunit, IKKgamma. The IKKbeta kinase promotes ubiquitin-mediated proteasomal degradation of DeltaNp63alpha, whereas a kinase-deficient mutant IKKbeta-K44A fails to do so. Cytokine- or chemotherapy-induced stimulation of IKKbeta caused degradation of DeltaNp63alpha and augmented transactivation of p53 family-induced genes involved in the cellular response to DNA damage. Conversely, IKKbeta inhibition attenuated cytokine- or chemotherapy-induced degradation of DeltaNp63alpha. Our findings show that IKKbeta plays an essential role in regulating DeltaNp63alpha in response to extrinsic stimuli. IKK activation represents one mechanism by which levels of DeltaNp63alpha can be reduced, thereby rendering cells susceptible to cell death in the face of cellular stress or DNA damage.

摘要

p53 家族基因 p63 在细胞应激反应中发挥重要作用,包括对 DNA 损伤的反应。除了编码全长转录激活剂外,p63 还编码几种显性抑制性异构体,包括 DeltaNp63alpha 异构体,其功能尚未完全了解。DeltaNp63alpha 在 DNA 损伤时被降解,从而使细胞能够对遗传毒性物质做出有效反应。在这里,我们确定了一个关键的分子机制,该机制调节了 DeltaNp63alpha 在化疗药物或肿瘤坏死因子-α(TNF-α)作用下的表达。我们发现 DeltaNp63alpha 与 IkappaB 激酶(IKK)相互作用,IKK 是一种由两个催化亚基(IKKalpha 和 IKKbeta)和一个调节亚基(IKKgamma)组成的多亚基蛋白激酶。IKKbeta 激酶促进 DeltaNp63alpha 的泛素介导的蛋白酶体降解,而激酶缺陷突变体 IKKbeta-K44A 则不能。细胞因子或化疗药物诱导的 IKKbeta 刺激导致 DeltaNp63alpha 的降解,并增强了与细胞对 DNA 损伤反应相关的 p53 家族诱导基因的转录激活。相反,IKKbeta 抑制减弱了细胞因子或化疗药物诱导的 DeltaNp63alpha 的降解。我们的研究结果表明,IKKbeta 在调节 DeltaNp63alpha 对外部刺激的反应中发挥着重要作用。IKK 激活代表了一种降低 DeltaNp63alpha 水平的机制,从而使细胞在面临细胞应激或 DNA 损伤时容易发生细胞死亡。

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