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衔接蛋白KIBRA在癌细胞中DNA损伤反应的磷酸化依赖性调控

Phosphorylation-Dependent Regulation of the DNA Damage Response of Adaptor Protein KIBRA in Cancer Cells.

作者信息

Mavuluri Jayadev, Beesetti Swarnalatha, Surabhi Rohan, Kremerskothen Joachim, Venkatraman Ganesh, Rayala Suresh K

机构信息

Department of Biotechnology, Indian Institute of Technology Madras (IITM), Chennai, India.

Department of Biotechnology, Indian Institute of Technology Madras (IITM), Chennai, India Departments of Human Genetics, Sri Ramachandra University, Porur, Chennai, India.

出版信息

Mol Cell Biol. 2016 Apr 15;36(9):1354-65. doi: 10.1128/MCB.01004-15. Print 2016 May.

Abstract

Multifunctional adaptor proteins encompassing various protein-protein interaction domains play a central role in the DNA damage response pathway. In this report, we show that KIBRA is a physiologically interacting reversible substrate of ataxia telangiectasia mutated (ATM) kinase. We identified the site of phosphorylation in KIBRA as threonine 1006, which is embedded within the serine/threonine (S/T) Q consensus motif, by site-directed mutagenesis, and we further confirmed the same with a phospho-(S/T) Q motif-specific antibody. Results from DNA repair functional assays such as the γ-H2AX assay, pulsed-field gel electrophoresis (PFGE), Comet assay, terminal deoxynucleotidyltransferase-mediated dUTP-biotin nick end labeling (TUNEL) assay, and clonogenic cell survival assay using stable overexpression clones of wild-type (wt.) KIBRA and active (T1006E) and inactive (T1006A) KIBRA phosphorylation mutants showed that T1006 phosphorylation on KIBRA is essential for optimal DNA double-strand break repair in cancer cells. Further, results from stable retroviral short hairpin RNA-mediated knockdown (KD) clones of KIBRA and KIBRA knockout (KO) model cells generated by a clustered regularly interspaced short palindromic repeat (CRISPR)-Cas9 system showed that depleting KIBRA levels compromised the DNA repair functions in cancer cells upon inducing DNA damage. All these phenotypic events were reversed upon reconstitution of KIBRA into cells lacking KIBRA knock-in (KI) model cells. All these results point to the fact that phosphorylated KIBRA might be functioning as a scaffolding protein/adaptor protein facilitating the platform for further recruitment of other DNA damage response factors. In summary, these data demonstrate the imperative functional role of KIBRAper se(KIBRA phosphorylation at T1006 site as a molecular switch that regulates the DNA damage response, possibly via the nonhomologous end joining [NHEJ] pathway), suggesting that KIBRA could be a potential therapeutic target for modulating chemoresistance in cancer cells.

摘要

包含各种蛋白质 - 蛋白质相互作用结构域的多功能衔接蛋白在DNA损伤反应途径中起着核心作用。在本报告中,我们表明KIBRA是共济失调毛细血管扩张症突变(ATM)激酶的生理相互作用的可逆底物。通过定点诱变,我们确定KIBRA中的磷酸化位点为苏氨酸1006,其位于丝氨酸/苏氨酸(S/T)Q共有基序内,并且我们用磷酸化 - (S/T)Q基序特异性抗体进一步证实了这一点。DNA修复功能测定的结果,如γ-H2AX测定、脉冲场凝胶电泳(PFGE)、彗星试验、末端脱氧核苷酸转移酶介导的dUTP - 生物素缺口末端标记(TUNEL)试验,以及使用野生型(wt.)KIBRA和活性(T1006E)及非活性(T1006A)KIBRA磷酸化突变体的稳定过表达克隆进行的克隆形成细胞存活试验表明,KIBRA上的T1006磷酸化对于癌细胞中最佳DNA双链断裂修复至关重要。此外,通过成簇规律间隔短回文重复序列(CRISPR)-Cas9系统产生的KIBRA的稳定逆转录病毒短发夹RNA介导的敲低(KD)克隆和KIBRA敲除(KO)模型细胞的结果表明,在诱导DNA损伤后,降低KIBRA水平会损害癌细胞中的DNA修复功能。在将KIBRA重建到缺乏KIBRA敲入(KI)模型细胞的细胞中后,所有这些表型事件都得到了逆转。所有这些结果都表明,磷酸化的KIBRA可能作为一种支架蛋白/衔接蛋白发挥作用,促进进一步招募其他DNA损伤反应因子的平台。总之,这些数据证明了KIBRA本身的重要功能作用(T1006位点的KIBRA磷酸化作为调节DNA损伤反应的分子开关,可能通过非同源末端连接[NHEJ]途径),表明KIBRA可能是调节癌细胞化疗耐药性的潜在治疗靶点。

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