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1.
陈牧  黄雷 《生命科学》2012,(7):666-673
Necroptosis是一种可调控的细胞程序性坏死途径,它具有与不可调控性细胞坏死相同的形态学特征。Necroptosis是caspase非依赖的。当细胞凋亡被阻断时,necroptosis信号通路由死亡结构域激活启动,其中RIP1的活化是necroptosis的关键步骤,该步骤可被necrostatin-1特异性抑制。近期研究表明,necroptosis在缺血性损伤、神经退行性疾病、恶性肿瘤、病毒感染和免疫性疾病等多种疾病的病理生理过程中起重要作用,有望作为药物开发的新靶点。对necroptosis的发现历程、信号通路及其在疾病病理生理机制中的作用和靶向necroptosis的治疗等四个方面进行综述。  相似文献   

2.
程序性细胞死亡的基因调控   总被引:3,自引:0,他引:3  
宝福凯 《生命科学》1995,7(5):15-17
程序性细胞死亡的基因调控宝福凯(昆明医学院免疫学教研室昆明650031)细胞死亡是细胞生命现象不可逆的终止,按其特点可分为两类:程序性细胞死亡(PCD)和细胞的病理性死亡──坏死。PCD是多细胞生物的一种生理性细胞死亡,是广泛存在的一种由细胞特定基因...  相似文献   

3.
植物在生长发育和抵抗逆境时都会发生细胞程序性死亡,植物受体激酶在细胞死亡调控中发挥着十分重要的作用。植物细胞可以通过质膜表面的受体激酶感受细胞间及环境信号,并将信号传递到下游,诱导一系列级联反应,导致细胞程序性死亡。植物受体激酶BAK1在植物程序性死亡中发挥着关键的作用, BAK1与BRI1、FLS2、BIR1、EFR、BIK1等受体激酶互作,识别和转导胞外信号,共同调控细胞死亡。该文以BAK1为中心,综述了近年发现的参与植物细胞死亡调控的BAK1受体激酶复合物介导的信号转导机制,并提出需要深入研究的科学问题。  相似文献   

4.
巴微  逄越  李庆伟 《遗传》2014,36(6):519-524
程序性坏死(Necroptosis)是一种不同于凋亡及传统坏死的细胞程序性死亡方式, 可由肿瘤坏死因子受体(Tumor necrosis factor receptor, TNFR)或模式识别受体(Pattern recognition receptor, PRR)调控启动。受体相互作用蛋白(Receptor-interacting protein, RIP)1和3是启动necroptosis的两个关键蛋白, necroptosis启动后需要一系列分子传递和执行死亡信号, 如多核苷酸二磷酸-核糖聚合酶-1(Poly(ADP-ribose) polymerase, PARP-1)、活性氧簇(Reactive oxygen species, ROS)、Ca2+等, 这些分子破坏线粒体及其他细胞器, 最终使细胞在缺乏天冬氨酸半胱氨酸蛋白酶(Caspase)的情况下死亡。Necroptosis细胞可将损伤相关模式分子(Damage-associated molecular patterns, DAMPs)暴露到细胞外, 被吞噬细胞识别并清除。文章对启动necroptosis的受体分子、传递执行细胞坏死的重要分子和坏死细胞的清除过程进行了概述。  相似文献   

5.
《生命世界》2009,(7):7-7
肿瘤坏死因子TNF-α是一个多效性细胞因子,参与调节炎症反应、细胞凋亡和坏死等,一项新研究显示蛋白激酶RIP3是决定TNF-α诱导的细胞坏死的关键蛋白。在受到坏死信号刺激时,一个包含有RIP3和激酶RIPK1的蛋白复合体会被诱导形成。过量表达的RIP3激酶死亡突变体与内源性RIPK1相结合,从而抑制细胞坏死途径。RIP3只在一些细胞中选择性表达,  相似文献   

6.
肿瘤坏死因子α(tumor necrosis factor alpha,TNFα)诱导的L929细胞死亡是研究细胞程序性坏死的重要模型,但也有报道称,TNFα处理后的L929细胞发生了凋亡。该研究以所在实验室保存的L929细胞(L929-A)和从商业化细胞库购买的L929细胞(L929-N)为模型,进一步鉴定了TNFα诱导的L929细胞死亡类型与调控机制。结果发现,TNFα处理后的L929-A细胞中出现了凋亡特征,且阻断胱冬肽酶(caspase)信号通路可显著抑制TNFα诱导的L929-A细胞死亡,但却促进TNFα诱导的L929-N细胞死亡。此外,受体相互作用蛋白1(receptor-interacting protein 1,RIP1)在TNFα诱导的两种L929细胞死亡过程中都具有关键性的调控作用,表明TNFα处理后的L929-A细胞发生了RIP1依赖的细胞凋亡,而L929-N细胞发生了程序性坏死(necroptosis)。同时,启动细胞程序性坏死的关键蛋白RIP3(receptor-interacting protein 3)在L929-N细胞中表达水平显著高于L929-A细胞,因此,RIP3的这种差异表达可能是决定两种L929细胞在TNFα处理后发生不同类型细胞程序性死亡的重要原因。  相似文献   

7.
程序性细胞死亡是由基因调控的贯穿于真核细胞生理和发育过程的细胞自杀行为。动物细胞的程序性死亡分成3类凋亡、自噬和坏死;线粒体和溶酶体分别在前两个过程中起关键作用。关于植物细胞程序性死亡的分类还存在很多争议,焦点是植物是否有细胞凋亡这种形式,核心问题是植物细胞的线粒体外膜上没有Bcl-2家族的膜通透性调控蛋白。近年,程序性细胞死亡也在细菌中发现,LrgAB家族的膜通透性调控蛋白起着重要作用。最近的研究表明,植物叶绿体外被膜上也有LrgAB家族的同源蛋白,它们在控制叶绿体发育和程序性细胞死亡方面起重要作用。因此,叶绿体在植物细胞死亡调控中的作用应该更加受到关注。  相似文献   

8.
综述了受体相互作用蛋白(RIPs)蛋白结构和RIP3调控细胞凋亡与坏死机制的研究进展.受体相互作用蛋白3(receptor-interacting protein 3, RIP3)是丝/苏氨酸蛋白激酶家族成员之一,该蛋白质家族包含一类高度保守的丝/苏氨酸激酶结构域.RIP家族激酶作为细胞应激传感分子,在调控细胞凋亡、细胞坏死和存活通路中发挥重要作用.近年发现,RIP3参与肿瘤坏死因子TNFα诱导的细胞程序化坏死的生物学过程.认识RIP3调控TNFα诱导的细胞凋亡与坏死不同死亡途径转换的分子机制,有助于发现肿瘤治疗的新策略.  相似文献   

9.
程序性坏死是近年来发现的一种由死亡受体介导的caspases非依赖性细胞死亡模式,通常在凋亡被抑制的情况下发生,具有坏死细胞的形态学特征。受体相互作用蛋白(receptor interacting protein,RIP)1和3是程序性坏死信号通路中极为重要的调节蛋白。MLKL作为RIP1/RIP3的下游调控物质,已被证明在TNF诱导的程序性坏死下游通路中起着重要作用。本文就MLKL的发现、生理功能及其分子机制进行综述。  相似文献   

10.
程序性坏死(necroptosis)是一种新型的细胞程序性死亡类型,受细胞内信号因子的调控,但同细胞凋亡有着显著区别。程序性坏死的发生需要一系列分子传递和执行死亡信号,受体相互作用蛋白激酶RIP1和RIP3是关键的调控因子。这种细胞死亡模式在心脑血管疾病的病理过程中起着非常重要的作用。  相似文献   

11.
Necroptosis is an alternate programmed cell death pathway that is unleashed by caspase-8 compromise and mediated by receptor-interacting protein kinase 3 (RIP3). Murine cytomegalovirus (CMV) and herpes simplex virus (HSV) encode caspase-8 inhibitors that prevent apoptosis together with competitors of RIP homotypic interaction motif (RHIM)-dependent signal transduction to interrupt the necroptosis. Here, we show that pro-necrotic murine CMV M45 mutant virus drives virus-induced necroptosis during nonproductive infection of RIP3-expressing human fibroblasts, whereas WT virus does not. Thus, M45-encoded RHIM competitor, viral inhibitor of RIP activation, sustains viability of human cells like it is known to function in infected mouse cells. Importantly, human CMV is shown to block necroptosis induced by either TNF or M45 mutant murine CMV in RIP3-expressing human cells. Human CMV blocks TNF-induced necroptosis after RIP3 activation and phosphorylation of the mixed lineage kinase domain-like (MLKL) pseudokinase. An early, IE1-regulated viral gene product acts on a necroptosis step that follows MLKL phosphorylation prior to membrane leakage. This suppression strategy is distinct from RHIM signaling competition by murine CMV or HSV and interrupts an execution process that has not yet been fully elaborated.  相似文献   

12.
Necroptosis is a regulated form of necrotic cell death that has been implicated in the pathogenesis of various diseases including intestinal inflammation and systemic inflammatory response syndrome (SIRS). In this work, we investigated the signaling mechanisms controlled by the necroptosis mediator receptor interacting protein-1 (RIP1) kinase. We show that Akt kinase activity is critical for necroptosis in L929 cells and plays a key role in TNFα production. During necroptosis, Akt is activated in a RIP1 dependent fashion through its phosphorylation on Thr308. In L929 cells, this activation requires independent signaling inputs from both growth factors and RIP1. Akt controls necroptosis through downstream targeting of mammalian Target of Rapamycin complex 1 (mTORC1). Akt activity, mediated in part through mTORC1, links RIP1 to JNK activation and autocrine production of TNFα. In other cell types, such as mouse lung fibroblasts and macrophages, Akt exhibited control over necroptosis-associated TNFα production without contributing to cell death. Overall, our results provide new insights into the mechanism of necroptosis and the role of Akt kinase in both cell death and inflammatory regulation.  相似文献   

13.
14.
Necroptosis represents a form of alternative programmed cell death that is dependent on the kinase RIP1. RIP1-dependent necroptotic death manifests as increased reactive oxygen species (ROS) production in mitochondria and is accompanied by loss of ATP biogenesis and eventual dissipation of mitochondrial membrane potential. Here, we show that tumor necrosis factor alpha (TNF-α)-induced necroptosis requires the adaptor proteins FADD and NEMO. FADD was found to mediate formation of the TNF-α-induced pronecrotic RIP1-RIP3 kinase complex, whereas the IκB Kinase (IKK) subunit NEMO appears to function downstream of RIP1-RIP3. Interestingly, loss of RelA potentiated TNF-α-dependent necroptosis, indicating that NEMO regulates necroptosis independently of NF-κB. Using both pharmacologic and genetic approaches, we demonstrate that the overexpression of antioxidants alleviates ROS elevation and necroptosis. Finally, elimination of BAX and BAK or overexpression of Bcl-x(L) protects cells from necroptosis at a later step. These findings provide evidence that mitochondria play an amplifying role in inflammation-induced necroptosis.  相似文献   

15.
X Liu  F Shi  Y Li  X Yu  S Peng  W Li  X Luo  Y Cao 《Cell death & disease》2016,7(7):e2293
Necroptosis is a novel form of programmed cell death that is independent of caspase activity. Different stimuli can trigger necroptosis. At present, the most informative studies about necroptosis derive from the tumor necrosis factor (TNF)-triggered system. The initiation of TNF-induced necroptosis requires the kinase activity of receptor-interacting protein 1 and 3 (RIP1 and RIP3). Evidence now reveals that the ability of RIP1 and RIP3 to modulate this key cellular event is tightly controlled by post-translational modifications, including ubiquitination, phosphorylation, caspase 8-mediated cleavage and GlcNAcylation. These regulatory events coordinately determine whether a cell will survive or die by apoptosis or necroptosis. In this review, we highlight recent advances in the study of post-translational modifications during TNF-induced necroptosis and discuss how these modifications regulate the complex and delicate control of programmed necrosis.  相似文献   

16.
Necroptosis represents a form of programmed cell death that can be engaged by various upstream signals, for example by ligation of death receptors, by viral sensors or by pattern recognition receptors. It depends on several key signaling proteins, including the kinases Receptor-Interacting Protein (RIP)1 and RIP3 and the pseudokinase mixed-lineage kinase domain-like protein (MLKL). Necroptosis has been implicated in a number of physiological and pathophysiological conditions and is disturbed in many human diseases. Thus, targeted interference with necroptosis signaling may offer new opportunities for the treatment of human diseases. Besides structure-based drug design, in recent years drug repositioning has emerged as a promising alternative to develop drug-like compounds. There is accumulating evidence showing that multi-targeting kinase inhibitors, for example Dabrafenib, Vemurafenib, Sorafenib, Pazopanib and Ponatinib, used for the treatment of cancer also display anti-necroptotic activity. This review summarizes recent evidence indicating that some anticancer kinase inhibitors also negatively affect necroptosis signaling. This implies that some cancer therapeutics may be repurposed for other pathologies, e.g. ischemic or inflammatory diseases.  相似文献   

17.
Necroptosis has been recognized in heart failure (HF). In this study, we investigated detailed necroptotic signalling in infarcted and non‐infarcted areas separately and its mechanistic link with main features of HF. Post‐infarction HF in rats was induced by left coronary occlusion (60 minutes) followed by 42‐day reperfusion. Heart function was assessed echocardiographically. Molecular signalling and proposed mechanisms (oxidative stress, collagen deposition and inflammation) were investigated in whole hearts and in subcellular fractions when appropriate. In post‐infarction failing hearts, TNF and pSer229‐RIP3 levels were comparably increased in both infarcted and non‐infarcted areas. Its cytotoxic downstream molecule p‐MLKL, indicating necroptosis execution, was detected in infarcted area. In non‐infarcted area, despite increased pSer229‐RIP3, p‐MLKL was present in neither whole cells nor the cell membrane known to be associated with necroptosis execution. Likewise, increased membrane lipoperoxidation and NOX2 levels unlikely promoted pro‐necroptotic environment in non‐infarcted area. Collagen deposition and the inflammatory csp‐1‐IL‐1β axis were active in both areas of failing hearts, while being more pronounced in infarcted tissue. Although apoptotic proteins were differently expressed in infarcted and non‐infarcted tissue, apoptosis was found to play an insignificant role. p‐MLKL‐driven necroptosis and inflammation while inflammation only (without necroptotic cell death) seem to underlie fibrotic healing and progressive injury in infarcted and non‐infarcted areas of failing hearts, respectively. Upregulation of pSer229‐RIP3 in both HF areas suggests that this kinase, associated with both necroptosis and inflammation, is likely to play a dual role in HF progression.  相似文献   

18.
Necroptosis is mediated by signaling complexes called necrosomes, which contain receptor-interacting protein 3 (RIP3) and upstream effectors, such as RIP1. In necrosomes, the RIP homotypic interaction motif (RHIM) of RIP3 and RIP1 forms amyloidal complex. But how the amyloidal necrosomes control RIP3 activation and cell necroptosis has not been determined. Here, we showed that RIP3 amyloid fibrils could further assemble into large fibrillar networks which presents as cellular puncta during necroptosis. A viral RHIM-containing necroptosis inhibitor M45 could form heteroamyloid with RIP3 in cells and prevent RIP3 puncta formation and cell necroptosis. We characterized mutual antagonism between RIP3–RHIM and M45–RHIM in necroptosis regulation, which was caused by distinct inter-filament interactions in RIP3, M45 amyloids revealed with atomic force microscopy. Moreover, double mutations Asn464 and Met468 in RIP3–RHIM to Asp disrupted RIP3 kinase-dependent necroptosis. While the mutant RIP3(N464D/M468D) could form amyloid as wild type upon necroptosis induction. Based on these results, we propose that RIP3 amyloid formation is required but not sufficient in necroptosis signaling, the ordered inter-filament assembly of RIP3 is critical in RIP3 amyloid mediated kinase activation and cell necroptosis.Subject terms: Kinases, Cell biology, Protein aggregation  相似文献   

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