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1.
p53蛋白是人体内十分重要的肿瘤抑制因子,通过调节细胞周期阻滞、诱导细胞凋亡等作用发挥肿瘤抑制功能。突变后的p53蛋白不仅具有显性负性效应(dominant negative effect,DN)抑制野生型p53蛋白功能,而且还通过功能获得性效应(gain of function,GOF)调节细胞代谢、侵袭、迁移等方式促进肿瘤的发生。p53蛋白在超过50%的肿瘤组织中发生突变,是肿瘤细胞区别于正常细胞的一个特异性药物靶点。因此,针对突变p53蛋白开发新型抗癌药物一直是研究的热点。长期以来,由于突变p53蛋白表面较为光滑,缺乏药物结合口袋,使其被认为是一个不可成药的靶点。随着高通量筛选技术的发展以及对突变p53蛋白结构的深入了解,许多靶向突变p53蛋白的小分子化合物被报道并在体外展现出较好的抗肿瘤活性,多款基于突变p53蛋白研发的化合物已经进入临床试验阶段。本文就靶向p53蛋白治疗肿瘤的直接和间接策略进行综述,重点针对突变p53蛋白重激活剂与降解突变p53蛋白的小分子化合物作用机制进行梳理,以期为后续开发靶向突变p53蛋白药物的创新提供帮助。  相似文献   

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Comment on: Khoronenkova SV, et al. Mol Cell 2012; 45:801-13.  相似文献   

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Chfr, a mitotic stress checkpoint, plays an important role in cell cycle progression, tumor suppression and the processes that require the E3 ubiquitin ligase activity mediated by the RING finger domain. Chfr stimulates the formation of polyubiquitin chains by ub-conjugating enzymes, and induces the proteasome-dependent degradation of a number of cellular proteins including Plk1 and Aurora A. In this study, we identified USP7 (also known as HAUSP), which is a member of a family of proteins that cleave polyubiquitin chains and/or ubiquitin precursors, as an interacting protein with Chfr by immunoaffinity purification and mass spectrometry, and their interaction greatly increases the stability of Chfr. In fact, USP7 can remove ubiquitin moiety from the autoubiquitinated Chfr both in vivo and in vitro, which results in the accumulation of Chfr in the cell. Thus, our finding suggests that USP7-mediated deubiquitination of Chfr leads to its accumulation, which might be a key regulatory step for Chfr activation and that USP7 may play an important role in the regulation of Chfr-mediated cellular processes including cell cycle progression and tumor suppression.  相似文献   

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The accumulation of senescent cells (SnCs) is a causal factor of various age‐related diseases as well as some of the side effects of chemotherapy. Pharmacological elimination of SnCs (senolysis) has the potential to be developed into novel therapeutic strategies to treat these diseases and pathological conditions. Here we show that ubiquitin‐specific peptidase 7 (USP7) is a novel target for senolysis because inhibition of USP7 with an inhibitor or genetic depletion of USP7 by RNA interference induces apoptosis selectively in SnCs. The senolytic activity of USP7 inhibitors is likely attributable in part to the promotion of the human homolog of mouse double minute 2 (MDM2) ubiquitination and degradation by the ubiquitin–proteasome system. This degradation increases the levels of p53, which in turn induces the pro‐apoptotic proteins PUMA, NOXA, and FAS and inhibits the interaction of BCL‐XL and BAK to selectively induce apoptosis in SnCs. Further, we show that treatment with a USP7 inhibitor can effectively eliminate SnCs and suppress the senescence‐associated secretory phenotype (SASP) induced by doxorubicin in mice. These findings suggest that small molecule USP7 inhibitors are novel senolytics that can be exploited to reduce chemotherapy‐induced toxicities and treat age‐related diseases.  相似文献   

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采用生物信息学方法分析野生型p53乳腺癌MCF7细胞的Ch IP-seq(染色质免疫共沉淀-测序)数据,以揭示p53的抑癌分子机制。从NCBI下载的编号为GSE47041的Ch IP-seq数据来源于三组试验,分别为:未经处理的乳腺癌MCF7细胞对照(NS_input),Nutlin-3a(一种MDM2拮抗剂)处理的MCF7细胞对照(S_input)和Nutlin-3a刺激MCF7细胞后加入p53抗体的实验组(S_p53)。Ch IP获得的DNA数据的测序平台为Illumina Hi Seq 2000。利用Bowtie参照人基因组hg19进行序列比对;利用MACS进行峰信号检测,并利用自定义软件筛选p53可能的靶基因;利用DAVID在线工具对靶基因进行通路富集分析;最后利用STRING构建蛋白互作网络。研究共得到50个p53的靶基因,其中8个靶基因(CDKN1A、BBC3、BAX、DDB2、MDM2、CCNG1、XPC和PCNA)分别富集到p53信号转导通路和核苷酸切除修复通路两个通路上。在得到的由19个靶基因构成的蛋白质相互作用网络中,连通度最高的前5个基因分别是PCNA、MDM2、REV3L、CDKN1A和BAX。研究中采用的分析Ch IP-seq数据的方法能有效揭示野生型p53乳腺癌MCF7细胞中Nutlin-3a激活的p53的抑癌分子机制。  相似文献   

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Inactivation of Myc-induced p53-dependent apoptosis in human tumors   总被引:2,自引:0,他引:2  
The Myc family of oncoproteins promote cell growth and are frequently overexpressed in human tumors. However, Myc can also trigger cell death by apoptosis. This is at least in part mediated via the ARF-p53 pathway. Myc activation leads to a selection for inactivation of ARF or p53, allowing cell survival and tumor progression. Restoration of p53-dependent apoptosis by various means is an attractive approach for new cancer therapy.  相似文献   

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Targeting p53 for enhanced radio- and chemo-sensitivity   总被引:2,自引:0,他引:2  
p53 acts as a central mediator of the cellular response to stressful stimuli. The growth-suppressive function of p53 is lost with mutation and this occurs commonly in human cancer. In addition to suppressing cancer development and progression, wild-type p53 further confers chemo-sensitivity and radio-sensitivity upon tumor cells. Accumulated evidence over the last two decades that wild-type p53 activity is required for the efficacy of radiation and chemotherapy has led to considerable interest in development of strategies to restore normal p53 function in tumors with defective p53-dependent signaling. A number of promising discoveries, based on the knowledge of structural and functional basis of p53 mutation, p53 degradation by MDM2 and p53 family proteins, provide a foundation for future drug design. Here we review the role of p53 in enhancing the sensitivity from radiation and chemotherapy and discuss current progress on therapies targeting p53.  相似文献   

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突变p53 (mutant p53, Mut-53)聚集体的形成是p53突变后使原本包裹在其疏水核心内部的黏附序列暴露,黏附序列迅速成核组装,形成无定形的原纤维. Mut-p53聚集体不仅可以以显性负效应(dominant-negative effect,DN)的方式使野生型p53 (wild type p53,Wt-p53)失活,还表现出功能获得(gain-of-function,GOF)特性,促进肿瘤的发生和发展.在卵巢癌、结肠癌、前列腺癌等多种肿瘤细胞中均发现了Mut-p53的异常聚集,其与肿瘤的转移、耐药和预后不良具有显著的相关性.因此,p53聚集是逆转化疗耐药及肿瘤治疗的潜在靶点.设计和发现靶向Mut-p53聚集体的小分子化合物,抑制p53疏水核心内部黏附序列的暴露,恢复p53的功能从而发挥抗肿瘤作用成为了当今研究热点.本文就p53聚集体对肿瘤发生发展的影响及目前靶向Mut-p53聚集体的研究策略进行了综述.  相似文献   

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Zhang X  Berger FG  Yang J  Lu X 《The EMBO journal》2011,30(11):2177-2189
Tumour suppressor p53 levels in the cell are tightly regulated by controlled degradation through ubiquitin ligases including Mdm2, COP1, Pirh2, and ARF-BP1. The ubiquitination process is reversible via deubiquitinating enzymes, such as ubiquitin-specific peptidases (USPs). In this study, we identified ubiquitin-specific peptidase 4 (USP4) as an important regulator of p53. USP4 interacts directly with and deubiquitinates ARF-BP1, leading to the stabilization of ARF-BP1 and subsequent reduction of p53 levels. Usp4 knockout mice are viable and developmentally normal, but showed enhanced apoptosis in thymus and spleen in response to ionizing radiation. Compared with wild-type mouse embryonic fibroblasts (MEFs), Usp4-/- MEFs exhibited retarded growth, premature cellular senescence, resistance to oncogenic transformation, and hyperactive DNA damage checkpoints, consistent with upregulated levels and activity of p53 in the absence of USP4. Finally, we showed that USP4 is overexpressed in several types of human cancer, suggesting that USP4 is a potential oncogene.  相似文献   

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Integrin-based adhesions promote cell survival as well as cell motility and invasion. We show here that the adhesion regulatory protein supervillin increases cell survival by decreasing levels of the tumor suppressor protein p53 and downstream target genes. RNAi-mediated knockdown of a new splice form of supervillin (isoform 4) or both isoforms 1 and 4 increases the amount of p53 and cell death, whereas p53 levels decrease after overexpression of either supervillin isoform. Cellular responses to DNA damage induced by etoposide or doxorubicin include down-regulation of endogenous supervillin coincident with increases in p53. In DNA-damaged supervillin knockdown cells, p53 knockdown or inhibition partially rescues the loss of cell metabolic activity, a measure of cell proliferation. Knockdown of the p53 deubiquitinating enzyme USP7/HAUSP also reverses the supervillin phenotype, blocking the increase in p53 levels seen after supervillin knockdown and accentuating the decrease in p53 levels triggered by supervillin overexpression. Conversely, supervillin overexpression decreases the association of USP7 and p53 and attenuates USP7-mediated p53 deubiquitination. USP7 binds directly to the supervillin N terminus and can deubiquitinate and stabilize supervillin. Supervillin also is stabilized by derivatization with the ubiquitin-like protein SUMO1. These results show that supervillin regulates cell survival through control of p53 levels and suggest that supervillin and its interaction partners at sites of cell-substrate adhesion constitute a locus for cross-talk between survival signaling and cell motility pathways.  相似文献   

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Stability of the 'guardian of the genome' tumor suppressor protein p53 is regulated predominantly through its ubiquitination. The ubiquitin-specific protease HAUSP plays an important role in this process. Recent experiments showed that p53 demonstrates a differential response to changes in HAUSP which nature and significance are not understood yet. Here a data-driven mathematical model of the Mdm2-mediated p53 ubiquitination network is presented which offers an explanation for the cause of such a response. The model predicts existence of the HAUSP-regulated switch from auto- to p53 ubiquitination by Mdm2. This switch suggests a potential role of HAUSP as a downstream target of stress signals in cells. The model accounts for a significant amount of experimental data, makes predictions for some rate constants, and can serve as a building block for the larger model describing a complex dynamic response of p53 to cellular stresses.  相似文献   

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p53基因是一种肿瘤抑制基因,野生型p53对细胞周期和细胞凋亡起重要作用。其编码的蛋白P53相对分子质量为53×103,可刺激Cipt基因产生相对分子质量为21×103的蛋白,该蛋白可以抑制促使细胞通过细胞周期进入有丝分裂的酶的活性,进而抑制细胞生长表达而调控细胞生长,对于预防和治疗胆管癌、肝癌、胃癌等疾病有重要作用。我们在此简要阐述国内外对p53基因及其编码产物的结构、作用机制、检测、功能等方面的研究进展。  相似文献   

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Inactivation of p53 is present in almost every tumor, and hence, p53-reactivation strategies are an important aspect of cancer therapy. Common mechanisms for p53 loss in cancer include expression of p53-negative regulators such as MDM2, which mediate the degradation of wildtype p53 (p53α), and inactivating mutations in the TP53 gene. Currently, approaches to overcome p53 deficiency in these cancers are limited. Here, using non–small cell lung cancer and glioblastoma multiforme cell line models, we show that two alternatively spliced, functional truncated isoforms of p53 (p53β and p53γ, comprising exons 1 to 9β or 9γ, respectively) and that lack the C-terminal MDM2-binding domain have markedly reduced susceptibility to MDM2-mediated degradation but are highly susceptible to nonsense-mediated decay (NMD), a regulator of aberrant mRNA stability. In cancer cells harboring MDM2 overexpression or TP53 mutations downstream of exon 9, NMD inhibition markedly upregulates p53β and p53γ and restores activation of the p53 pathway. Consistent with p53 pathway activation, NMD inhibition induces tumor suppressive activities such as apoptosis, reduced cell viability, and enhanced tumor radiosensitivity, in a relatively p53-dependent manner. In addition, NMD inhibition also inhibits tumor growth in a MDM2-overexpressing xenograft tumor model. These results identify NMD inhibition as a novel therapeutic strategy for restoration of p53 function in p53-deficient tumors bearing MDM2 overexpression or p53 mutations downstream of exon 9, subgroups that comprise approximately 6% of all cancers.  相似文献   

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《Cell reports》2023,42(4):112288
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