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1.
Sirtuins蛋白家族是一类高度保守的烟酰胺腺嘌呤二核苷酸(NAD+)依赖的组蛋白去乙酰化酶。哺乳动物中的Sirtuins包括七种亚型:SIRT1-SIRT7,作为Sirtuins蛋白家族成员之一,SIRT7定位于核仁,是一种高度特异性的H3K18Ac(组蛋白H3的乙酰化赖氨酸残基18)去乙酰化酶。SIRT7的作用底物包括组蛋白和非组蛋白,底物的多样性决定着它参与体内多种细胞活动,如:细胞增殖、细胞新陈代谢、DNA损伤和应激反应等,并与肿瘤的发生发展密切相关。SIRT7在乳腺癌、甲状腺癌、卵巢癌、宫颈癌、胃癌、结直肠癌和肝细胞癌等多种肿瘤中高表达;而在头颈部鳞癌和胰腺癌中的低表达又提示其可作为抑癌基因发挥作用。本文旨从SIRT7的基因组组成、作用底物及相关肿瘤作用机制等方面阐述SIRT7的研究进展,而其致癌或抑癌作用有可能使其成为肿瘤治疗的新靶点。  相似文献   

2.
SIRT1的生物学功能及其在胰岛素抵抗中的作用   总被引:2,自引:0,他引:2  
SIRT1是NAD+依赖的组蛋白去乙酰化酶,通过使底物发生去乙酰化作用参与了DNA修复、细胞凋亡/细胞生存、细胞分化、内分泌信号通路和衰老等生命过程的调节.SIRT1在胰岛素敏感的组织器官中,通过调节胰岛素相关蛋白之间的相互作用与胰岛素信号转导途径,改善胰岛素敏感性和胰岛素抵抗,并且SIRT1在线粒体损伤中的作用与胰岛素抵抗发生有着密切的联系.  相似文献   

3.
沉默信息调节因子1(silent information regulator1, SIRT1)是NAD+ 依赖的去乙酰化酶,通过使底物发生去乙酰化而参与细胞众多生理功能的调节,在糖脂代谢、衰老、细胞凋亡、氧化应激等过程中发挥了重要作用。另外,众多研究表明,SIRT1是调控动物卵巢老化、卵泡发育和卵母细胞成熟的重要因子,SIRT1 表达下降或活性改变将导致卵母细胞老化,降低动物的繁殖力。为了充分理解SIRT1功能,并通过调控SIRT1活性而延缓卵巢和卵母细胞老化,从而提高动物繁殖力,简述了SIRT1的激活及其参与细胞内调控的生物过程,并从能量代谢、抗氧化胁迫、染色质重塑的角度讨论了SIRT1的主要功能,重点阐述了SIRT1对动物卵泡发育和卵母细胞成熟的调控作用。  相似文献   

4.
Sirtuins是一类进化上高度保守,NAD^+依赖的去乙酰化酶家族。Sirtuins(SIRT1-SIRT7)可通过不同的机制和作用靶点参与衰老、代谢,应激反应、炎症反应、肿瘤形成等生理或病理生理过程,其中SIRT2主要分布于胞质和细胞核中,可以通过对不同的底物去乙酰化,从而调节底物的活性,参与机体一系列生理病理过程。本篇综述主要讨论了SIRT2的表达调控以及在糖脂代谢过程中的作用。  相似文献   

5.
Tat蛋白在HIV的转录复制中起重要作用.它能反式激活HIV的转录,促进HIV长末端重复序列(HIV LTR)的转录和延长.Tat蛋白是去乙酰化酶SIRT1的一种重要底物.Tat的乙酰化与非乙酰化状态在激活转录过程中受高度精密调控.如果Tat乙酰化状态在转录过程中受到干扰,随后其促使的HIV转录也将受到干扰.近来发现,组蛋白去乙酰化酶SIRT1在Tat蛋白介导的反式激活HIV转录过程中起重要的调控作用.SIRT1能对乙酰化的Tat进行去乙酰化,使其能在促使HIV转录的过程中循环利用.同时Tat与SIRT1的结合也会使核转录因子NF-κB的p65亚基处于超乙酰化状态,致使病毒基因组表达.研究SIRT1与Tat的相互关系为治疗HIV提供了新的方向.  相似文献   

6.
沉默信息调节因子1(silent information regulator 1, SIRT1)是NAD~+依赖的组蛋白去乙酰化酶,可以通过去乙酰化底物调节多种生物学功能。长链非编码RNA(long non-coding RNA, lncRNA)是一类新兴的基因表达调控子,可以影响多种生命进程。尽管如此,SIRT1与lncRNA之间的调控关系以及lncRNA在SIRT1介导的生物学功能中的作用还有待进一步阐明。因此,本研究旨在探讨SIRT1相关lncRNA SGO1-AS1在SIRT1介导的细胞凋亡中的作用及其分子机制。荧光定量PCR检测发现,过表达SIRT1可显著促进lncRNA SGO1-AS1的表达(P0.05),反之沉默SIRT1则抑制SGO1-AS1的表达(P0.001)。进一步利用Western印迹、胱天蛋白酶3/7活性检测和TUNEL实验发现,沉默SGO1-AS1可显著促进细胞凋亡(P0.05),但并不明显影响DNA损伤修复。此外,Western印迹结果显示,SGO1-AS1还可显著促进SIRT1蛋白的去乙酰化酶活性。综上所述,lncRNA SGO1-AS1可以抑制细胞凋亡,且长链非编码RNA SGO1-AS1有可能与SIRT1形成正反馈调节环路,从而调控细胞凋亡。尽管如此,SGO1-AS1调节细胞凋亡分子机制依然有待深入研究。  相似文献   

7.
Sirtuins作为Ⅲ型蛋白质去乙酰化酶调控机体多种生理进程,包括DNA修复、基因组稳定性、能量代谢、衰老以及癌症发生.目前已鉴定出7种人类Sirtuins家族的蛋白(SIRT1–SIRT7),其组织分布、亚细胞定位以及酶作用的底物都不尽相同.本文将着重描述Sirtuins家族的一个成员—SIRT5以及其在调控细胞代谢中的多种酶活性.  相似文献   

8.
<正>美国GenesDevelopment杂志发表了中国科学院生物物理研究所许瑞明研究组题为"Structural basis for allosteric,substrate-dependent stimulation of SIRT1 activity by resveratrol"的最新研究论文,报道了他们关于白藜芦醇促进去乙酰化酶SIRT1酶活性作用机制的最新研究进展。人源SIRT1是Sir2(Silent information regulator 2)超蛋白家族的成员之一,它是NAD+依赖型的去乙酰化酶,能够催化组蛋白底物和非组蛋  相似文献   

9.
去乙酰化酶Sirtuin研究进展   总被引:4,自引:0,他引:4  
蔡群芳  周鹏 《生命科学》2006,18(2):133-137
依赖于NAD 的去乙酰化酶Sirtuin对细胞的存活、衰老、凋亡等生理活动的调节起到十分重要的作用。Sirtuin系统中的ySir2和SIRT1就目前来说是研究得较为透彻的两个成员。ySir2参与了酵母的交配型基因沉默、端粒的沉默、rDNA重复序列的沉默以及细胞寿命等生理功能。人类SIRT1在细胞存活与代谢等过程中也起到调节作用。本文对Sirtuin的结构、作用机制、底物特异性、影响因子及其功能作了综述。  相似文献   

10.
曹丽娟  刘昕訸  查晴  宋倩  杨克  刘艳 《遗传》2015,37(2):111-120
蛋白去乙酰化酶在细胞生理过程中发挥着极为重要的作用。人蛋白去乙酰化酶包括HDACⅠ、HDACⅡ、HDACⅢ和HDACⅣ4个家族。其中第Ⅲ类即Sir2(Silent information regulator 2)家族包括7个成员——SIRT1~ SIRT7,每个成员都具有不同的细胞定位,并且发挥不同的生物学功能。作为主要定位于线粒体的组蛋白去乙酰化酶,SIRT3不仅调节细胞的能量代谢,并在细胞凋亡、肿瘤生长和一些疾病中发挥作用。文章综述了SIRT3在细胞代谢中的生物学功能以及其在心血管疾病中的研究进展。  相似文献   

11.
Yang WJ  Wang DL  Zhu WG 《遗传》2010,32(10):1003-1008
SIRT1是哺乳动物中重要的NAD+依赖性去乙酰化酶,参与许多重要的生理和病理过程,如衰老、细胞死亡和肿瘤发生。如何精确调节SIRT1的表达和活性对SIRT1执行其生物学功能至关重要。文章以基因表达的不同阶段为切入点,对调控SIRT1表达及活性的机制进行了论述。  相似文献   

12.
《FEBS letters》2014,588(9):1523-1528
The modulation of protein deacetylase SIRT1 has a vast therapeutic potential in treatment of several aging-associated diseases. Active regulator of SIRT1 (AROS) is a small endogenous protein which was originally reported to activate SIRT1 through a direct interaction in cancer cells. We show that the interaction between the two proteins is weak and does not alter the activity of SIRT1 in non-cancerous human cells. The results of different in vitro SIRT1 activity assays disclosed AROS as an inhibitor of SIRT1. The functional relationship between AROS and SIRT1 proved to be dependent on the biological context and experimental setting.  相似文献   

13.
Sirtuins are recently redefined as a family of nicotinamide adenine dinucleotide (NAD)-dependent deacylases. Sirtuins in mammals including human have seven members, which are SIRT1-7. Compared to other sirtuin members, not much study is focused on mitochondrial sirtuins (SIRT3-5). In mitochondrial sirtuins, SIRT4 was the last of less well-understood mitochondrial sirtuins especially for its robust enzymatic activity. This makes SIRT4 become the last puzzle of mitochondrial sirtuins, and thus brings some obstacles for studying SIRT4 biological functions or developing SIRT4 modulators. In this review, we will summarize and discuss the current findings for substrates, biological functions and possible enzymatic activities of SIRT4. The purpose of this review is to facilitate in discovering the robust enzymatic activity of SIRT4 and eventually finish this last puzzle of mitochondrial sirtuins.  相似文献   

14.
The NAD+-dependent deacylase family of sirtuin enzymes have been implicated in biological ageing, late-life health and overall lifespan, though of these members, a role for sirtuin-2 (SIRT2) is less clear. Transgenic overexpression of SIRT2 in the BubR1 hypomorph model of progeria can rescue many aspects of health and increase overall lifespan, due to a specific interaction between SIRT2 and BubR1 that improves the stability of this protein. It is less clear whether SIRT2 is relevant to biological ageing outside of a model where BubR1 is under-expressed. Here, we sought to test whether SIRT2 over-expression would impact the overall health and lifespan of mice on a nonprogeroid, wild-type background. While we previously found that SIRT2 transgenic overexpression prolonged female fertility, here, we did not observe any additional impact on health or lifespan, which was measured in both male and female mice on standard chow diets, and in males challenged with a high-fat diet. At the biochemical level, NMR studies revealed an increase in total levels of a number of metabolites in the brain of SIRT2-Tg animals, pointing to a potential impact in cell composition; however, this did not translate into functional differences. Overall, we conclude that strategies to enhance SIRT2 protein levels may not lead to increased longevity.  相似文献   

15.
SIRT1, the mammalian homolog of yeast Sir2, is a founding member of a family of 7 protein and histone deacetylases that are involved in numerous biological functions. Previous studies revealed that SIRT1 deficiency results in genome instability, which eventually leads to cancer formation, yet the underlying mechanism is unclear. To investigate this, we conducted a proteomics study and found that SIRT1 interacted with many proteins involved in replication fork protection and origin firing. We demonstrated that loss of SIRT1 resulted in increased replication origin firing, asymmetric fork progression, defective intra-S-phase checkpoint, and chromosome damage. Mechanistically, SIRT1 deacetylates and affects the activity of TopBP1, which plays an essential role in DNA replication fork protection and replication origin firing. Our study demonstrated that ectopic over-expression of the deacetylated form of TopBP1 in SIRT1 mutant cells repressed replication origin firing, while the acetylated form of TopBP1 lost this function. Thus, SIRT1 acts upstream of TopBP1 and plays an essential role in maintaining genome stability by modulating DNA replication fork initiation and the intra-S-phase cell cycle checkpoint.  相似文献   

16.
SIRT1, a class III histone deacetylase, is considered a key regulator of cell survival and apoptosis through its interaction with nuclear proteins. In this study, we have examined the likelihood and role of the interaction between SIRT1 and Smad7, which mediates transforming growth factor beta (TGFbeta)-induced apoptosis in renal glomerular mesangial cells. Immunoprecipitation analysis revealed that SIRT1 directly interacts with the N terminus of Smad7. Furthermore, SIRT1 reversed acetyl-transferase (p300)-mediated acetylation of two lysine residues (Lys-64 and -70) on Smad7. In mesangial cells, the Smad7 expression level was reduced by SIRT1 overexpression and increased by SIRT1 knockdown. SIRT1-mediated deacetylation of Smad7 enhanced Smad ubiquitination regulatory factor 1 (Smurf1)-mediated ubiquitin proteasome degradation, which contributed to the low expression of Smad7 in SIRT1-overexpressing mesangial cells. Stimulation by TGFbeta or overexpression of Smad7 induced mesangial cell apoptosis, as assessed by morphological apoptotic changes (nuclear condensation) and biological apoptotic markers (cleavages of caspase3 and poly(ADP-ribose) polymerase). However, TGFbeta failed to induce apoptosis in Smad7 knockdown mesangial cells, indicating that Smad7 mainly mediates TGFbeta-induced apoptosis of mesangial cells. Finally, SIRT1 overexpression attenuated both Smad7- and TGFbeta-induced mesangial cell apoptosis, whereas SIRT1 knockdown enhanced this apoptosis. We have concluded that Smad7 is a new target molecule for SIRT1 and SIRT1 attenuates TGFbeta-induced mesangial cell apoptosis through acceleration of Smad7 degradation. Our results suggest that up-regulation of SIRT1 deacetylase activity is a potentially useful therapeutic strategy for prevention of TGFbeta-related kidney disease through its effect on cell survival.  相似文献   

17.
Sirtuin 7 (SIRT7) is an NAD+-dependent lysine deacetylase that regulates diverse biological processes. We recently observed that SIRT7 deficiency suppresses the nuclear accumulation of p65, which is a component of nuclear factor kappa B. However, the underlying molecular mechanism remains elusive. In this study, we demonstrated that SIRT7 interacts with a small GTPase, Ras-related nuclear antigen (Ran), and deacetylates Ran at K37. The nuclear export of p65 was facilitated in SIRT7-deficient fibroblast cells, while the nuclear export was inhibited in SIRT7-deficient cells expressing K37R-Ran (deacetylation-mimicking mutant). Additionally, the nuclear export of p65 in wild-type fibroblast cells was promoted by K37Q-Ran (acetylation-mimicking mutant). K37Q-Ran exhibited an increased ability to bind to chromosome region maintenance 1 (CRM1), which is a major nuclear receptor that mediates the export of cargo proteins, and enhanced the binding between p65 and CRM1. These data suggest that SIRT7 is a lysine deacetylase that targets the K37 residue of Ran to suppress the nuclear export of p65.  相似文献   

18.
SIRT1 is a protein deacetylase that has emerged as a therapeutic target for the development of activators to treat diseases of aging. SIRT1-activating compounds (STACs) have been developed that produce biological effects consistent with direct SIRT1 activation. At the molecular level, the mechanism by which STACs activate SIRT1 remains elusive. In the studies reported herein, the mechanism of SIRT1 activation is examined using representative compounds chosen from a collection of STACs. These studies reveal that activation of SIRT1 by STACs is strongly dependent on structural features of the peptide substrate. Significantly, and in contrast to studies reporting that peptides must bear a fluorophore for their deacetylation to be accelerated, we find that some STACs can accelerate the SIRT1-catalyzed deacetylation of specific unlabeled peptides composed only of natural amino acids. These results, together with others of this study, are at odds with a recent claim that complex formation between STACs and fluorophore-labeled peptides plays a role in the activation of SIRT1 (Pacholec, M., Chrunyk, B., Cunningham, D., Flynn, D., Griffith, D., Griffor, M., Loulakis, P., Pabst, B., Qiu, X., Stockman, B., Thanabal, V., Varghese, A., Ward, J., Withka, J., and Ahn, K. (2010) J. Biol. Chem. 285, 8340–8351). Rather, the data suggest that STACs interact directly with SIRT1 and activate SIRT1-catalyzed deacetylation through an allosteric mechanism.  相似文献   

19.
肝细胞癌(hepatocellular carcinoma, HCC)是世界上最常见的癌症之一.然而,就目前现状而言,HCC的治疗效果还很有限.作为一个依赖于烟酰胺腺嘌呤二核苷酸(NAD+)的去乙酰化酶, SIRT1(silent mating type information regulation 2 homolog 1 )参与了代谢、应激反应、衰老以及肿瘤的演进等许多重要的生物学进程.临床研究显示,SIRT1在HCC患者中异常高表达,并可预测其不良预后;进一步的研究表明,SIRT1在HCC演进中发挥了关键作用,且作用范围广泛,分子机制复杂.这提示,SIRT1有望成为新的HCC治疗靶点和诊断、预后标志物.本文拟对SIRT1在HCC的演进和预后中的具体作用及其潜在分子机制作一总结,并就SIRT1作为肝癌治疗靶点和诊断、预后标志物的可行性做出探讨.  相似文献   

20.
去乙酰化酶SIRT1在许多生物过程中具有重要的作用,包括氧化应激、能量代谢、细胞分化及基因组稳定等。细胞的存活及其寿命和氧化应激的存在密切相关。氧化应激可引起多种病理表现,如内皮损伤、线粒体损伤、炎症、自噬、凋亡甚至坏死等。近来研究发现,SIRT1在多种氧化应激相关疾病中保护细胞存活。SIRT1可以通过调控不同转录因子而发挥抗氧化应激作用,但研究发现,SIRT1也对氧化应激有负性调控作用。本文就SIRT1对氧化应激的调控进行概述。  相似文献   

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