Tomar Dhanendra, Prajapati Paresh, Lavie Julie, Singh Kritarth, Lakshmi Sripada, Bhatelia Khyati, Roy Milton, Singh Rochika, Bénard Giovanni, Singh Rajesh
Department of Cell Biology, School of Biological Sciences and Biotechnology, Indian Institute of Advanced Research, Gandhinagar, India; Université de Bordeaux, Laboratoire Maladie Rares: Genetique et metabolisme, Hopital Pellegrin, 33076 Bordeaux, France.
Department of Biochemistry, Faculty of Science, The M.S. University of Baroda, Vadodara 390002, Gujarat, India.
Free Radic Biol Med. 2015 Dec;89:1036-48. doi: 10.1016/j.freeradbiomed.2015.10.425. Epub 2015 Oct 31.
The emerging evidences suggest that posttranslational modification of target protein by ubiquitin (Ub) not only regulate its turnover through ubiquitin proteasome system (UPS) but is a critical regulator of various signaling pathways. During ubiquitination, E3 ligase recognizes the target protein and determines the topology of ubiquitin chains. In current study, we studied the role of TRIM4, a member of the TRIM/RBCC protein family of RING E3 ligase, in regulation of hydrogen peroxide (H2O2) induced cell death. TRIM4 is expressed differentially in human tissues and expressed in most of the analyzed human cancer cell lines. The subcellular localization studies showed that TRIM4 forms distinct cytoplasmic speckle like structures which transiently interacts with mitochondria. The expression of TRIM4 induces mitochondrial aggregation and increased level of mitochondrial ROS in the presence of H2O2. It sensitizes the cells to H2O2 induced death whereas knockdown reversed the effect. TRIM4 potentiates the loss of mitochondrial transmembrane potential and cytochrome c release in the presence of H2O2. The analysis of TRIM4 interacting proteins showed its interaction with peroxiredoxin 1 (PRX1), including other proteins involved in regulation of mitochondrial and redox homeostasis. TRIM4 interaction with PRX1 is critical for the regulation of H2O2 induced cell death. Collectively, the evidences in the current study suggest the role of TRIM4 in regulation of oxidative stress induced cell death.
新出现的证据表明,泛素(Ub)对靶蛋白的翻译后修饰不仅通过泛素蛋白酶体系统(UPS)调节其周转,而且是各种信号通路的关键调节因子。在泛素化过程中,E3连接酶识别靶蛋白并决定泛素链的拓扑结构。在本研究中,我们研究了RING E3连接酶的TRIM/RBCC蛋白家族成员TRIM4在调节过氧化氢(H2O2)诱导的细胞死亡中的作用。TRIM4在人体组织中表达存在差异,并且在大多数分析的人类癌细胞系中都有表达。亚细胞定位研究表明,TRIM4形成独特的细胞质斑点样结构,与线粒体短暂相互作用。TRIM4的表达在H2O2存在的情况下诱导线粒体聚集并增加线粒体ROS水平。它使细胞对H2O2诱导的死亡敏感,而敲低则逆转了这种作用。在H2O2存在的情况下,TRIM4增强线粒体跨膜电位的丧失和细胞色素c的释放。对TRIM4相互作用蛋白的分析表明,它与过氧化物酶1(PRX1)相互作用,包括其他参与线粒体和氧化还原稳态调节的蛋白。TRIM4与PRX1的相互作用对于调节H2O2诱导的细胞死亡至关重要。总的来说,本研究中的证据表明TRIM4在调节氧化应激诱导的细胞死亡中发挥作用。