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1.
组织细胞可经过多种途径产生氧自由基(ROS),而肿瘤组织由于多种应激因素会产生大量ROS,其中最重要的是过氧化氢(H2O2).H2O2对细胞发挥着致损伤及亚毒性信使的双重作用,作为信使其不仅参与调节正常细胞信号通路,重要的是促进肿瘤的发生及进展. ROS作为一种应激刺激信号激活细胞内的AP-1(activator protein 1)、Nrf-2(NF-E2-related factor 2)等核转录因子,活化后的AP-1、Nrf-2会结合到硫氧还蛋白(sulfiredoxin, SRX)基因启动子上游的调控序列,促进SRX基因的表达.SRX的表达上调则影响其下游的抗氧化蛋白,即特定亚型的过氧化物氧还蛋白(peroxiredoxin, PRX)的活性状态,最终使细胞内H2O2浓度受到调节. 由SRX-PRX轴与H2O2形成1个环路,通过调节H2O2含量来参与细胞众多信号通路.本文对H2O2、SRX及PRX各自的功能进行综述,还进一步探讨三者构成的信号环路对肿瘤的调控机制,从而了解该环路在肿瘤发生发展中所发挥的作用.  相似文献   

2.
《生命科学研究》2014,(5):465-470
过氧化物酶体是一种广泛存在于真核细胞内的异质性细胞器,具有多种酶活性,主要功能是参与脂肪酸氧化、磷脂合成和氧化应激平衡的调节等过程。研究发现,过氧化物酶体功能异常引起的脑组织中极长链脂肪酸聚集、植烷酸贮积、二十二碳六烯酸(docosahexaenoic acid,DHA)和缩醛磷脂减少等与阿尔茨海默病(Alzheimer’s disease,AD)的发生发展密切相关。尽管具体的机制尚不清楚,但目前认为,过氧化物酶体功能异常很可能是AD发生发展的始动因素之一。因此,就过氧化物酶体功能异常与AD之间关系的研究进展进行综述,有助于为AD的发病机制研究提供线索和依据。  相似文献   

3.
植物病原真菌过氧化物酶体的发生机制及功能   总被引:2,自引:0,他引:2  
过氧化物酶体(peroxisome,P)是真核细胞中普遍存在的细胞器,参与多种重要的代谢过程。P的产生、增殖及降解是细胞器发生机理研究的重要部分。到目前已知的P发生相关基因有30多个,但其机制仍不完全清楚。作为一种多细胞真核生物,丝状真菌在P发生机制的研究中有重要价值。近年来,随着基因组序列的应用和真菌生物技术的进展,丝状真菌中P功能及发生机制的研究取得了较大进展。同时,作为丝状真菌真菌中的重要类群,植物病原真菌P在致病过程中的作用也引起关注。本文对P发生机制、在丝状真菌中的研究概况,以及与植物病原真菌致病性的关系进行了 综述。  相似文献   

4.
经1.0mg·L^-1GA3和0.1mg·L^-1BR分别处理后的离体苎麻叶圆片中,过氧化物酶和过氧化氢酶活性都有明显增加。过氧化物酶的最大增加值出现在12h;过氧化氢酶与超氧物歧化酶同步,最大增加值出现时间都在处理后36h。0.2mmol·L^-1H2O2处理的过氧化氢酶和超氧物歧化酶活性都增加;3.0mg·L^-1NaN3处理的超氧物歧化酶活性明显增加;19.5mg·L^-1KCN处理的过氧化  相似文献   

5.
将小鼠随机分为饮用磁处理水的实验组及饮用自来水的对照组,每组雌、雄鼠各半,饲养一个月,取血测定其过氧化氢酶(CAT)和谷胱甘肽过氧化物酶(GSH-PX)活力。结果雌、雄实验组CAT活性均显著高于对照组;雄鼠实验组GSH-PX活力明显高于对照组,雌鼠实验组GSH-PX活力与对照组无显著差异。显示饮用一定时间磁处理水的小鼠机体外理自由基能力有所提高。  相似文献   

6.
过氧化物酶是一类广泛存在于生物体内的抗氧化剂,清除有氧代谢过程中产生的活性氧,对于保护机体内的生物大分子有重要的生物学功能。福氏志贺菌硫氧还过氧化物酶(SF2523)作为过氧化物酶家族的一员,通过清除福氏志贺菌体内的活性氧,在维持其活性和致病性上起重要作用。目前,SF2523的三维结构还没有得到解析,其具体的功能机制也尚不清楚。为了得到SF2523蛋白的三维结构,进而了解具体的功能机制,实验获得均一稳定的可溶蛋白,验证具有体外活性,培养出可用于X射线衍射的蛋白质晶体。在中国科学院高能物理研究所同步辐射收到晶体的衍射数据供结构解析使用。SF2523晶体的属于空间群P212121,晶胞参数为a = 35.80 ?, b = 50.63 ?, c = 88.52 ?, α = β = γ = 90.00°,每个晶体学不对称单位含有1个蛋白质分子,马修斯系数为2.03 ?3 /u,溶剂含量为39.56%。  相似文献   

7.
过氧化物酶体是细胞中一种参与脂肪酸代谢、缩醛磷脂合成和氧化应激等功能的细胞器,其数量会根据细胞和细胞所处微环境的不同而发生变化,这种变化又与过氧化物酶体本身的降解密切相关.虽然一直以来,过氧化物酶体都被线粒体的光芒所掩盖,但是近年来,随着过氧化物酶体研究的逐渐增多,人们对于过氧化物酶体的降解也有了更全面的了解.本文主要...  相似文献   

8.
马尾松毛虫过氧化氢酶及过氧化物酶与耐药性的关系   总被引:19,自引:2,他引:17  
陈尚文 《昆虫学报》2001,44(1):9-14
马尾松毛虫Dendrolimus punctatus幼虫体内存在着过氧化氢酶(CAT)和过氧化物酶(POD)。4龄幼虫的CAT和POD活力较大,其次是6龄幼虫,5龄幼虫的CAT和POD活力较4龄和6龄幼虫低。醚菊酯(etofenprox)处理后,在兴奋期(30 min),CAT和POD活力水平上升。4龄和6龄幼虫在抑制期(50 min以后),CAT和POD活力呈波动式上升,接近死亡时下降。5龄幼虫的CAT和POD活力呈波动式上升,接近死亡时下降。5龄幼虫的CAT在抑制期保持比正常虫体高的活力。结果表明,马尾松毛虫4龄、5龄和6龄幼虫与耐药性存在一定的相关性,研制酶的抑制剂具有实用意义。根据毒力测定结果,马尾松毛虫幼虫对醚菊酯的耐药力,5龄是4龄的1.43倍,6龄是4龄的1.72倍。因此,药物防治的合理时期应掌握在4龄以前较适宜。  相似文献   

9.
将小鼠随机分为饮用磁处理水的实验组及饮用自来水的对照组,每组雌、雄鼠各半,饲养一个月,取血测定其过氧化氢酶(CAT)和谷胱甘肽过氧化物酶(GSH-PX)活力。结果雌、雄实验组CAT活性均显著高于对照组;雄鼠实验组GSH-PX活力明显高于对照组,雌鼠实验组GSH-PX活力与对照组无显著差异。显示饮用一定时间磁处理水的小鼠机体外理自由基能力有所提高。  相似文献   

10.
秦童  黄震 《植物学报》2019,54(1):119-132
硫氧还蛋白(Trx)属于巯基-二硫键氧化还原酶家族, 通过作用于底物蛋白侧链2个半胱氨酸残基之间的二硫键(还原、异构和转移)来调控胞内蛋白的结构和功能。叶绿体Trx系统包括Trx及Trx类似蛋白、铁氧还蛋白(Fd)依赖的硫氧还蛋白还原酶(FTR)和还原型烟酰腺嘌呤二核苷磷酸(NADPH)依赖的硫氧还蛋白还原酶C (NTRC)。除了基质蛋白酶类活性变化及叶绿体蛋白的转运受Trx系统调控之外, 在叶绿体中还存在1条跨类囊体膜的还原势传递途径, 把基质Trx的还原势经跨膜转运蛋白介导, 最终传递给类囊体腔蛋白。FTR和NTRC共同作用维持叶绿体的氧化还原平衡。该文对叶绿体硫氧还蛋白系统的调节机制进行了综述, 同时讨论了叶绿体硫氧还蛋白系统对维持植物光合效率的重要意义。  相似文献   

11.
Anti‐oxidative enzymes protect living bodies from various oxidative stresses. In the systemic autoimmune diseases, autoantibodies to oxidized molecules and to anti‐oxidative enzymes have been reported. To promote understanding of the relationships between autoimmunity and oxidative stress, we here investigate whether autoimmunity to the anti‐oxidative peroxiredoxin (Prxs) enzymes exists in patients with systemic autoimmune diseases. Specifically, we detected autoantibodies to recombinant Prx I and Prx IV respectively by ELISA and western blotting. Next, clinical parameters were compared between the anti‐Prx I or IV‐positive and ‐negative patients. We found that 33% of the 92 patients with autoimmune diseases tested possessed autoantibodies to Prx I (57% in systemic lupus erythematosus (SLE), 19% in rheumatoid arthritis (RA), 5% in Behçet disease, and 46% in primary vasculitis syndrome). In contrast, autoantibodies to Prx IV were detected in only 17% of the same patients. No significant correlation was found between occurrence of the two autoantibodies. Clinically, possession of anti‐Prx I autoantibodies correlated with lower serum levels of CH50, C3, and C4. Taken together, our data demonstrate the existence of autoantibodies to Prxs for the first time. The autoantibodies to Prx I may be involved in the pathophysiology of systemic autoimmune diseases such as SLE and vasculitis.  相似文献   

12.
Oxidative stress activates macroautophagy/autophagy and contributes to atherogenesis via lipophagic flux, a form of lipid removal by autophagy. However, it is not known exactly how endogenous antioxidant enzymes are involved in lipophagic flux. Here, we demonstrate that the antioxidant PRDX1 (peroxiredoxin 1) has a crucial role in the maintenance of lipophagic flux in macrophages. PRDX1 is more highly expressed than other antioxidant enzymes in monocytes and macrophages. We determined that Prdx1 deficiency induced excessive oxidative stress and impaired maintenance of autophagic flux in macrophages. Prdx1-deficient macrophages had higher intracellular cholesterol mass and lower cholesterol efflux compared with wild type. This perturbation in cholesterol homeostasis was due to impaired lipophagic cholesterol hydrolysis caused by excessive oxidative stress, resulting in the inhibition of free cholesterol formation and the reduction of NR1H3 (nuclear receptor subfamily 1, group H, member 3) activity. Notably, impairment of both lipophagic flux and cholesterol efflux was restored by the 2-Cys PRDX-mimics ebselen and gliotoxin. Consistent with this observation, apoe ?/? mice transplanted with bone marrow from prdx1?/?apoe?/? mice had increased plaque formation compared with apoe?/? BM-transplanted recipients. This study reveals that PRDX1 is crucial to regulating lipophagic flux and maintaining macrophage cholesterol homeostasis against oxidative stress. We suggest that PRDX1-dependent control of oxidative stress may provide a strategy for treating atherosclerosis and autophagy-related human diseases.  相似文献   

13.
NO可能作为H2O2的下游信号介导ABA诱导的蚕豆气孔关闭   总被引:23,自引:1,他引:23  
ABA、H2O2和硝普钠(SNP)均能诱导蚕豆气孔关闭.NO的清除剂c-PTIO可以减轻由ABA或H2O2所诱导的蚕豆气孔关闭的程度,而过氧化氢酶(CAT)则不能减轻NO诱导的气孔关闭程度.激光共聚焦显微检测结果显示,10μmo1/L的ABA处理后,胞内H2O2的产生速率明显高于NO的产生速率;CAT几乎可完全抑制ABA所诱导的DAF的荧光增加;外源H2O2能显著诱导胞内DAF的荧光增加;c-PTIO对ABA诱导的DCF荧光略有促进作用,但外源SNP不能诱导胞内DCF荧光增加.这些结果表明,在ABA诱导气孔关闭过程中,H2O2可能在NO的上游起作用并受NO的负反馈调节.  相似文献   

14.
促分裂原活化蛋白激酶(MPK)级联途径是真核细胞中普遍存在且保守的信号传导通路,广泛参与植物生长发育和植物抵抗生物和非生物胁迫的防御反应。过氧化氢(H2O2)和一氧化氮(NO)作为重要的信使分子也广泛参与植物生长发育和防御反应的信号传导。近年来,研究也表明MPK信号通路与信号分子H2O2和NO之间存在着多种复杂的关系。一方面,在一些刺激的信号传递过程中,MPK信号通路参与了信号分子H2O2和NO的产生、清除或其信号的向下传递等过程;另一方面,在有些刺激的信号传递过程中,它们位于不同的信号传递途经中,行使不同的功能。本文就目前植物MPK信号通路与H2O2和NO之间相互关系的研究现状进行了综述和分析,并指出了该研究领域存在的问题。  相似文献   

15.
The importance of nitric oxide (NO) as a signaling molecule to various plant physiological and pathophysiological processes is becoming increasingly evident. However, little is known about how plants protect themselves from nitrosative and oxidative damage mediated by NO and NO-derived reactive nitrogen species (RNS). Peroxynitrite, the product of the reaction between NO and superoxide anion, is considered to play a central role in RNS-induced cytotoxicity, as a result of its potent ability to oxidize diverse biomolecules. Employing heterologous expression in bacteria and yeast, we investigated peroxynitrite-scavenging activity in plants of 2-Cys peroxiredoxin (2CPRX), originally identified as a hydroperoxide-reducing peroxidase that is ubiquitously distributed among organisms. The putative mature form of a chloroplast-localized 2CPRX from Arabidopsis thaliana was overproduced in Escherichia coli as an amino-terminally hexahistidine-tagged fusion protein. The purified recombinant 2CPRX, which was catalytically active as peroxidase, efficiently prevented the peroxynitrite-induced oxidation of a sensitive compound. We also examined in vivo the ability of the Arabidopsis 2CPRX to complement the 2CPRX deficiency of a Saccharomyces cerevisiae mutant. Functional expression in the mutant strain of the Arabidopsis 2CPRX not only increased cellular tolerance to hydrogen peroxide, but also complemented the hypersensitive growth defect induced by nitrite-mediated cytotoxicity. The complemented cells significantly enhanced the capacity to reduce RNS-mediated oxidative damages. The results presented here demonstrate a new role of plant 2CPRX as a critical determinant of the resistance to RNS, and support the existence of a plant enzymatic basis for RNS metabolism.  相似文献   

16.
17.
Chen L  Na R  Gu M  Salmon AB  Liu Y  Liang H  Qi W  Van Remmen H  Richardson A  Ran Q 《Aging cell》2008,7(6):866-878
H(2)O(2) is a major reactive oxygen species produced by mitochondria that is implicated to be important in aging and pathogenesis of diseases such as diabetes; however, the cellular and physiological roles of mitochondrial H(2)O(2) remain poorly understood. Peroxiredoxin 3 (Prdx3/Prx3) is a thioredoxin peroxidase localized in mitochondria. To understand the cellular and physiological roles of mitochondrial H(2)O(2) in aging and pathogenesis of age-associated diseases, we generated transgenic mice overexpressing Prdx3 (Tg(PRDX3) mice). Tg(PRDX3) mice overexpress Prdx3 in a broad range of tissues, and the Prdx3 overexpression occurs exclusively in the mitochondria. As a result of increased Prdx3 expression, mitochondria from Tg(PRDX3) mice produce significantly reduced amount of H(2)O(2), and cells from Tg(PRDX3) mice have increased resistance to stress-induced cell death and apoptosis. Interestingly, Tg(PRDX3) mice show improved glucose homeostasis, as evidenced by their reduced levels of blood glucose and increased glucose clearance. Tg(PRDX3) mice are also protected against hyperglycemia and glucose intolerance induced by high-fat diet feeding. Our results further show that the inhibition of GSK3 may play a role in mediating the improved glucose tolerance phenotype in Tg(PRDX3) mice. Thus, our results indicate that reduction of mitochondrial H(2)O(2) by overexpressing Prdx3 improves glucose tolerance.  相似文献   

18.
19.
A family of antioxidant proteins, the peroxiredoxins, serve two purposes, detoxification of reactive oxygen species and cellular signaling. Among the three peroxiredoxins of Caenorhabditis elegans (CePrx1-3), CePrx2 was found to have a very unusual expression pattern, restricted to only two types of pharyngeal neurons; namely, the single pharyngeal interneuron I4 and the sensory interneuron I2. CePrx1 and CePrx3-depleted worms showed no obvious phenotypic alterations, whereas worms devoid of CePrx2 were retarded developmentally and had a significantly reduced brood size. Other features, such as lifespan, pharyngeal activity or defecation rates were indistinguishable from those of wild-type worms. Recombinant CePrx2 revealed antioxidant activity, as it was able to detoxify hydrogen peroxide and butylhydroperoxide (t-BOOH), and to protect glutamine synthetase from inactivation by thiol-dependent metal-catalyzed oxidation. In addition, the molecule was able to act as a terminal peroxidase in the thioredoxin system. Expression of ceprx2 in C.elegans was induced after short-term exposure of worms to t-BOOH but survival of ceprx2 knockout mutants in the presence of reactive oxygen or nitrogen species was not impaired. Thus, CePrx2 may protect specifically the two types of neurons from oxidative damage or, more likely, plays a critical role in peroxide signaling in this nematode.  相似文献   

20.
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