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1.
Peng Y  Tu B  Zhu WG 《生理科学进展》2011,42(1):59-62
Tip60(Tat-interactive protein)是进化上极为保守的乙酰转移酶,它在细胞周期阻滞、凋亡、DNA损伤修复等众多生理学过程中都发挥着重要的作用.作为许多转录因子的共调节因子,Tip60既可以激活也可以抑制特定基因的转录.当发生DNA损伤时,它被招募到损伤位点,参与DNA损伤应答的感受、信号转导和修复过程中.除此之外,Tip60还与许多病理过程有关,尤其是在肿瘤发生中起着关键作用.  相似文献   

2.
c-Myc是由原癌基因c-myc编码的、具有bHLH/LZ结构域的转录调节因子,它不仅可以直接或通过其他蛋白质间接调控转录激活,而且能够抑制某些基因的表达。近年来的研究表明,c-Myc通过泛素–蛋白酶体通路维持其在体内的相对稳定,参与调控了细胞增殖、凋亡、细胞周期和细胞代谢等多种生物学功能,其功能异常与多种疾病的发生、发展密切相关。该文综述了泛素–蛋白酶体通路介导细胞内c-Myc蛋白质调控的最新研究进展。  相似文献   

3.
田春艳  张令强  贺福初 《遗传》2006,28(11):1451-1456
KRAB型锌指蛋白是哺乳动物中最大的转录调控因子家族, 它的多数成员在基因组上成簇分布。其结构特征是N端含有KRAB结构域, C端含有多个C2H2型锌指结构。KRAB结构域为一蛋白质-蛋白质相互作用区, 可以与多种协同转录抑制因子和转录因子结合, 使KRAB型锌指蛋白作为转录因子和/或转录调控因子发挥依赖于DNA结合的转录抑制功能, 在胚胎发育、细胞分化、细胞转化及细胞周期的调控中发挥重要功能。  相似文献   

4.
吴新刚  彭姝彬  黄谦 《遗传》2012,34(12):1529-1536
乳腺癌耐药蛋白(Breast cancer resistance protein, BCRP), 又名ABCG2, 是ATP结合盒(ATP-binding cas-sette, ABC)转运蛋白超家族成员之一, 在肿瘤多药耐药中具有十分重要的作用。BCRP基因启动子区无TATA盒, 含CAAT盒、AP1位点、AP2位点以及CpG岛下游的多个Sp-1位点。近年来的研究发现, 转录因子孕激素受体(PR)、雌激素受体(ER)、核因子-κB (NF-κB)、缺氧诱导因子(HIF)、Nrf2、芳香烃受体(AhR)、过氧化物酶体增殖活化受体(PPAR)和KLF5等可与BCRP启动子或增强子区的特定反应元件结合进而激活BCRP的转录。促炎细胞因子、生长因子、同源盒基因MSX2、Sonic hedgehog信号通路、Notch信号通路和RAR/RXR信号通路等均参与了BCRP的转录调控。此外, 启动子甲基化和组蛋白乙酰化在BCRP转录调控尤其是药物诱导BCRP表达中发挥重要作用。文章综述了这一研究领域的进展, 着重讨论了转录因子及表观遗传学在BCRP转录调控中的作用。  相似文献   

5.
辅调节因子在核受体基因表达调控中的作用   总被引:1,自引:0,他引:1  
核受体 ( nuclear receptor)在增强或抑制基因转录时 ,需借助于诸多辅调节因子的协同作用 ,使调节更为精细、有效及特异 .辅调节因子 ( coregulator)可区分为辅激活因子 ( coactivator)和辅抑制因子 ( corepressor)两大类 ,均具有多种功能各异的蛋白质因子 ,分别汇聚于核受体上构成不同复合体 .它们的主要作用机理是 :( 1 )促使核小体中的组蛋白乙酰基化 ,导致与 DNA的结合松散 ;或脱乙酰基 ,而使组蛋白与 DNA的结合回复紧密状态 ,从而创造一个有利于转录或封闭转录的局部环境 ;( 2 )作用于通用转录因子及 RNA聚合酶 ,以激活转录或抑制转录 .  相似文献   

6.
核受体超家族介导基因调控的分子机制   总被引:2,自引:0,他引:2  
Wang BH 《生理科学进展》2003,34(4):369-372
核受体超家族由甾体激素、甲状腺激素、维甲酸、维生素D等化学信号的受体及配体未明的多种孤儿受体组成,该家族成员的主要功能是作为配体激活的转录因子,调控代谢、发育、生殖相关基因的表达。核受体与启动子和增强子上的激素应答元件及其它DNA序列特异性激活因子结合,而激活或阻遏靶基因的转录。核受体调控基因转录需要募集称为辅调控因子的蛋白分子,这些蛋白分子与核受体一起装配成多组分的复合物,它们可提供相关的酶促活性和脚手架功能。通过与基础转录机器的相互作用和对染色质结构的可逆性共价修饰等作用,辅调控因子调控核受体对靶基因转录的激活或阻遏。许多辅调控因子本身受到多条细胞内信号转导途径的调控。  相似文献   

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甾体激素受体超家族的基因调控机制   总被引:4,自引:0,他引:4  
甾体激素受体超家族是一类基因反式作用因子,对RNA聚合酶Ⅱ转录的某些蛋白质基因和RNA聚合酶Ⅰ转录的核糖体RNA基因均有正或负的转录调节作用.超家族对RNA polⅡ转录的基因调控的机理包括受体激活,相关蛋白解离,磷酸化,同源/异源二聚化,核转位,与正/负激素应答元件及相应转录蛋白作用,最终激活或抑制特异靶基因的转录.甾体激素对RNA polⅠ转录的基因的调节作用以及超家族中的经典受体和孤儿受体非配合的激活机制是目前研究的热点.  相似文献   

9.
过氧化物酶体增殖物激活受体-γ(PPARγ)是由配体激活的一类核转录因子,属于II型核受体超家族成员之一。经研究发现,PPARγ在多种肿瘤组织中均有所表达,而且它在调控细胞分化、诱导细胞凋亡和抑制细胞增殖中发挥重要的转录调节作用。激活后的PPARγ可以调控多种核内靶基因的表达,抑制肿瘤细胞的形成、生长与增殖等,与消化道肿瘤的发生、发展及预后有着密切的关系。  相似文献   

10.
JunD是一种属于多功能激活剂蛋白-1(activating protein-1,AP-1) 家族的转录因子,可以激活或抑制多种靶基因的表达.在生长发育过程中,在各种细胞类型中都呈现出组成性表达.近20年的临床数据及分子生物学研究表明,JunD蛋白的功能受多个复杂过程调控,包括转录控制、转录后调节、蛋白质翻译后修饰及蛋白-蛋白相互作用等.JunD基因表达的精细调控及JunD蛋白与其它蛋白之间的相互作用可调节细胞增殖、分化和凋亡等过程.JunD蛋白活性异常会导致肿瘤、代谢及病毒类疾病的发生.JunD蛋白的转录激活及抑制受1个复杂调控网络调控,在这个网络调节下,JunD蛋白在细胞的生长调控过程中发挥重要作用.本文就JunD基因表达的调控机制及其与肿瘤之间关系的最新研究进展做一综述.  相似文献   

11.
12.
Tip60 is a cell-type-specific transcriptional regulator   总被引:1,自引:0,他引:1  
  相似文献   

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14.
Ran Q  Pereira-Smith OM 《Gene》2000,258(1-2):141-146
Tip60 was originally isolated as a Tat interactive protein. It was subsequently shown that Tip60 had histone acetyltransferase (HAT) activity. In studies to understand gene-expression regulation that might involve HAT activity, we PCR-amplified Tip60 from a human heart marathon-ready cDNA library. As a result, we identified an alternatively spliced form of Tip60, Tip60beta (we refer to the previously cloned Tip60 as Tip60alpha). Tip60beta cDNA is slightly smaller than Tip60alpha, and sequencing indicates that there is a deletion of 156 bp in the coding region of the gene. The predicted Tip60beta protein therefore lacks 52 amino acids when compared with Tip60alpha. The Tip60alpha gene is encoded by 14 exons, and Tip60beta is an alternatively spliced form resulting from the exclusion of exon 5 during the splicing process. Exon 5 encodes a proline-rich region that is known to be important for protein-protein interaction. Tip60beta is expressed in a variety of human tissues and cell lines, and the protein is present in both the nucleus and cytoplasm in contrast to Tip60alpha, which is entirely nuclear. The results suggest that Tip60beta may have functions additional to those of Tip60alpha in cells and tissues.  相似文献   

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16.
Members of the phosphatidylinositol 3-kinase-related kinase (PIKK) family, including the ATM, DNA-PKcs, Atr, and Trrap proteins, function in signal transduction pathways that activate the DNA damage response. PIKK proteins contain a conserved C-terminal FAT/kinase domain/FATC domain structure. The FATC domain of ATM mediates the interaction between ATM and Tip60, a histone acetyltransferase that regulates activation of ATM. Here, we examined whether the FATC domains of DNA-PKcs, Atr, and Trrap were also able to interact with Tip60. Deletion of the FATC domain of ATM blocked the interaction between ATM and Tip60 and suppressed the activation of ATM kinase activity by DNA damage. Replacement of the FATC domain of ATM with the FATC domains of DNA-PKcs, Atr, or Trrap restored the activation of ATM and its association with Tip60. These results indicate that the FATC domains of DNA-PKcs, Atr, Trrap, and ATM are functionally equivalent. Immunoprecipitation experiments demonstrated that Tip60 is constitutively associated with DNA-PKcs and that the histone acetyltransferase activity associated with DNA-PKcs is up-regulated by DNA damage. When Tip60 expression was suppressed by small interfering RNA, the activation of DNA-PKcs (measured by autophosphorylation of DNA-PKcs at serine 2056 and threonine 2609) was inhibited, demonstrating a key role for Tip60 in the activation of DNA-PKcs by DNA damage. The conserved FATC domain of PIKK proteins may therefore function as a binding domain for the Tip60 histone acetyltransferase. Further, the ability of Tip60 to regulate the activation of both ATM and DNA-PKcs in response to DNA damage demonstrates that Tip60 is a key component of the DNA damage-signaling network.  相似文献   

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Cells are constantly exposed to genotoxic events that can damage DNA. To counter this, cells have evolved a series of highly conserved DNA repair pathways to maintain genomic integrity. The ATM protein kinase is a master regulator of the DNA double-strand break (DSB) repair pathway. DSBs activate ATM’s kinase activity, promoting the phosphorylation of proteins involved in both checkpoint activation and DNA repair. Recent work has revealed that two DNA damage response proteins, the Tip60 acetyltransferase and the mre11-rad50-nbs1 (MRN) complex, co-operate in the activation of ATM in response to DSBs. MRN functions to target ATM and the Tip60 acetyltransferase to DSBs. Tip60’s chromodomain then interacts with histone H3 trimethylated on lysine 9, activating Tip60’s acetyltransferase activity and stimulating the subsequent acetylation and activation of ATM’s kinase activity. These results underscore the importance of chromatin structure in regulating DNA damage signaling and emphasize how histone modifications co-ordinate DNA repair. In addition, human tumors frequently exhibit altered patterns of histone methylation. This rewriting of the histone methylation code in tumor cells may impact the efficiency of DSB repair, increasing genomic instability and contributing to the initiation and progression of cancer.  相似文献   

20.
Ataxia-telangiectasia (AT) is an autosomal recessive genetic disease characterized by immunological deficiencies, neurological degeneration, developmental abnormalities and an increased risk of cancer. Ataxia-telangiectasia group D (ATDC) was initially described as a gene related to AT. Ataxia-telangiectasia group D, also known as TRIM29, is structurally a member of the tripartite motif (TRIM) family of proteins, some of which have been reported to be highly expressed in some human carcinomas, but the involvement of TRIM29 in carcinogenesis has not been fully elucidated. In this study, we found by using yeast two-hybrid screening that TRIM29 binds to Tip60, which has been reported as a cellular acetyltransferase protein. Overexpression of TRIM29 promoted degradation and changed localization of Tip60 and reduced acetylation of p53 at lysine 120 by Tip60, resulting in enhancement of cell growth and transforming activity. In addition, we found that TRIM29 suppresses apoptosis induced by UV irradiation in HCT116 cell lines. These findings suggest that TRIM29 functions as an oncogene that promotes tumor growth.  相似文献   

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