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1.
Manganese superoxide dismutase (MnSOD) levels have been found to be low in human pancreatic cancer [Pancreas26, (2003), 23] and human pancreatic cancer cell lines [Cancer Res.63, (2003), 1297] when compared to normal human pancreas. We hypothesized that stable overexpression of pancreatic cancer cells with MnSOD cDNA would alter the malignant phenotype. MIA PaCa-2 cells were stably transfected with a pcDNA3 plasmid containing sense human MnSOD cDNA or containing no MnSOD insert by using the lipofectAMINE method. G418-resistant colonies were isolated, grown and maintained. Overexpression of MnSOD was confirmed in two selected clones with a 2-4-fold increase in MnSOD immunoreactive protein. Compared with the parental and neo control cells, the MnSOD-overexpressing clones had decreased growth rates, growth in soft agar and plating efficiency in vitro, while in vivo, the MnSOD-overexpressing clones had slower growth in nude mice. These results suggest that MnSOD may be a tumor suppressor gene in human pancreatic cancer.  相似文献   

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鸡含锰超氧化物歧化酶cDNA克隆及序列分析   总被引:4,自引:0,他引:4  
 为弄清鸡含锰超氧化物歧化酶 (manganese containingsuperoxidedismutase ,MnSOD)的cDNA序列 ,以开展动物锰营养学的深入研究 ,根据已知鸡MnSOD的N端氨基酸序列设计简并引物 ,应用 3′RACE(rapidamplificationofcDNAends)技术 ,扩增克隆了鸡心肌MnSOD 990bp的 3′cDNA片段 .再根据 3′RACE片段测序结果设计引物进行 5′RACE ,结果获取了一个与 3′RACE片段相互重叠的鸡心肌MnSOD 52 1bp的 5′RACE片段 ,并对其进行了克隆测序 .最后根据 3′RACE片段和 5′RACE片段序列信息进行拼接 ,从而获取鸡MnSODcDNA的全序列信息 .研究结果表明 :鸡MnSODcDNA全长为 110 8个核苷酸 ,其中 5′非翻译区 2 5个核苷酸 ,编码区 675个核苷酸 ,3′非翻译区 4 0 8个核苷酸 ,编码一个长 2 2 4个氨基酸残基的蛋白质前体 .其中信号肽长 2 6个氨基酸残基 ,成熟肽长 198个氨基酸残基 ,分子量为 2 2kD .与人、大鼠、线虫、果蝇等真核生物MnSOD氨基酸序列的同源性分别为82 4 %、84 .7%、62 .4 %、59.3% .  相似文献   

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对人锰超氧化物歧化酶(human manganese superoxide dismutase,hMn-SOD)基因剪接异构体进行分析,并检测异构体的表达情况。在GenBank库中检索人锰超氧化物歧化酶基因异构体及编码基因组序列,利用Vector NTI9生物软件进行核酸及蛋白序列比对;利用RT-PCR方法分析锰超氧化物歧化酶基因异构体的表达。结果显示,在GenBank库检索发现有3种人锰超氧化物歧化酶基因异构体,剪接异构的类型为可变的5′剪接位点和外显子盒,各异构体基因内含子均符合"GT-AG"规则。3种基因异构体编码两种异构体蛋白,即222个氨基酸的人锰超氧化物歧化酶蛋白以及中部缺少39个氨基酸的截短型异构蛋白。RT-PCR检测结果表明,剪接异构体hMn-SODb在HEK293T和HSC细胞中的表达比在HepG2细胞中高,未见异构体hMn-SODc的表达。  相似文献   

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人Mn-SOD cDNA的克隆及其在巴斯德毕赤酵母中的表达   总被引:4,自引:0,他引:4  
凌敏  赖祥进  谢科   《生物工程学报》2005,21(3):478-481
以人肝细胞株(L02)总RNA为模板,用RT-PCR扩增出人锰超氧化物歧化酶(hMn-SOD)cDNA,将其插入含有AOX1基因启动子和α分泌信号肽序列的毕赤酵母表达载体pPIC9k,构建重组质粒pPIC9k-MnSOD,转化毕赤酵母GS115,筛选出整合了多拷贝hMn-SOD基因的Mut^ 表型菌株,摇瓶培养,0.5%甲醇诱导表达。SDS-PAGE分析显示,诱导4d的培养上清中hMn-SOD的表达量约为上清总蛋白的32%,酶比活可达247、7u/mg。hMn-SOD在巴斯德毕赤酵母中实现了分泌性表达。  相似文献   

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Rotifers are useful model organisms for aging research, owing to their small body size (0.1–1 mm), short lifespan (6–14 days) and the relative easy in which aging and senescence phenotypes can be measured. Recent studies have shown that antioxidants can extend the lifespan of rotifers. In this paper, we analyzed changes in the mRNA expression level of genes encoding the antioxidants manganese superoxide dismutase (MnSOD), copper and zinc SOD (CuZnSOD) and catalase (CAT) during rotifer aging to clarify the function of these enzymes in this process. We also investigated the effects of common life-prolonging methods [dietary restriction (DR) and resveratrol] on the mRNA expression level of these genes. The results showed that the mRNA expression level of MnSOD decreased with aging, whereas that of CuZnSOD increased. The mRNA expression of CAT did not change significantly. This suggests that the ability to eliminate reactive oxygen species (ROS) in the mitochondria reduces with aging, thus aggravating the damaging effect of ROS on the mitochondria. DR significantly increased the mRNA expression level of MnSOD, CuZnSOD and CAT, which might explain why DR is able to extend rotifer lifespan. Although resveratrol also increased the mRNA expression level of MnSOD, it had significant inhibitory effects on the mRNA expression of CuZnSOD and CAT. In short, mRNA expression levels of CAT, MnSOD and CuZnSOD are likely to reflect the ability of mitochondria to eliminate ROS and delay the aging process.  相似文献   

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刘克丹  石铁军 《生物磁学》2009,(14):2748-2751
锰超氧化物歧化酶(SOD2)是线粒体基质酶,作为细胞内氧自由基的清除剂,SOD2与氧化应激相关的神经系统疾病密切相关。本文从SOD2的一般生物学特性、在神经系统中的作用以及在临床上的应用等方面对其近期的研究成果和未来发展趋势进行了综述。  相似文献   

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人锰超氧化物歧化酶cDNA的克隆、测序及表达   总被引:4,自引:0,他引:4  
用逆转录-聚合酶链反应(RT-PCR)以人肝细胞总RNA为模板, 扩增了人锰超氧化物歧化酶(hMnSOD)的cDNA片段, 将此cDNA克隆到载体pGEM-T中.对重组质粒进行限制酶切分析和序列测定, 确定为含hMnSODcDNA的重组质粒将该hMnSODcDNA重组到表达载体pBV220内, 重组质粒在大肠杆菌DH5-α中表达hMnSOD, 表达产物占菌体总蛋白的14%, 具有持异性SOD酶活性.  相似文献   

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Manganese superoxide dismutase (Mn-SOD) is a naturally-occurring scavenger of superoxide, one of several reactive oxygen intermediates. To determine if Mn-SOD expression is enhanced as a defensive mechanism against oxidative challenges, such as intense light exposure, rats were exposed to cyclic light (80lux) for 2 weeks, intense light (1,800lux) for 24h, and then again to cyclic light. Experimental and control (exposed to cyclic light only) eyes were enucleated 3h, 1, 3, 7, and 14 days after light challenge. Protein expression was examined immunohistochemically using rabbit antisera against rat Mn-SOD. There was no significant difference between the light-exposed and the control groups in the thickness of the outer nuclear layers. Both retinal pigment epithelial cells and photoreceptor inner segments in the normal retina were labeled for Mn-SOD. Mn-SOD labeling was lost 3h and day 1 after light challenge. It was re-expressed in the retinal pigment epithelial cells 3, 7, and 14 days after the light challenge, and in the photoreceptor inner segments after day 14. These results suggest that the retina might have a protective potential against light damage, in which Mn-SOD may play an important role.  相似文献   

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It has been hypothesized that exposure of cells to hyperthermia results in an increased flux of reactive oxygen species (ROS), primarily superoxide anion radicals, and that increasing antioxidant enzyme levels will result in protection of cells from the toxicity of these ROS. In this study, the prostate cancer cell line, PC-3, and its manganese superoxide dismutase (MnSOD)-overexpressing clones were subjected to hyperthermia (43°C, 1?h). Increased expression of MnSOD increased the mitochondrial membrane potential (MMP). Hyperthermic exposure of PC-3 cells resulted in increased ROS production, as determined by aconitase inactivation, lipid peroxidation, and H2O2 formation with a reduction in cell survival. In contrast, PC-3 cells overexpressing MnSOD had less ROS production, less lipid peroxidation, and greater cell survival compared to PC-3 Wt cells. Since MnSOD removes superoxide, these results suggest that superoxide free radical or its reaction products are responsible for part of the cytotoxicity associated with hyperthermia and that MnSOD can reduce cellular injury and thereby enhance heat tolerance.  相似文献   

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Neurochemical Research - We have recently isolated a new isoform of recombinant manganese superoxide dismutase (rMnSOD) which provides a potent antitumor activity and strongly counteracts the...  相似文献   

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小麦Fe超氧歧化酶基因的原核表达分析   总被引:1,自引:0,他引:1  
采用RT-PCR技术分离小麦Fe超氧歧化酶基因(FeSOD)的ORF全长cDNA,然后构建其原核表达载体,并对其表达的诱导时间、IPTG浓度、温度进行优化,以期获得较大量的重组蛋白。结果表明:实验获得了小麦FeSOD基因的ORF全长(600 bp),ORF全长与原核表达载体pET-Dute1相连接构建了原核表达载体pET-FeSOD,将pET-FeSOD导入宿主菌Rosetta(DE3)中,经SDS-PAGE电泳结果显示,可以高效表达融合蛋白且表达的蛋白均主要以包涵体的形式存在;重组质粒表达出25.8 kD的融合蛋白,除去载体pET-Duet1自身表达的3.0 kD蛋白后,与FeSOD编码的约为22.8 kD蛋白的大小一致;对诱导表达条件的优化结果显示,融合蛋白 pET-FeSOD最佳的诱导表达条件为:0.5 mmol/L的IPTG浓度,37 ℃诱导5 h。该研究结果为进一步深入研究该基因的特性与功能奠定了基础。  相似文献   

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为研究过量表达的超氧化物歧化酶基因MnSOD对玉米抗逆性的作用,构建了小麦来源MnSOD基因的单子叶植物高效表达载体,用基因枪法转化优良玉米自交系胚性愈伤组织。经潮霉素梯度浓度培养基筛选,从阳性愈伤组织再生获得9个正常结实的植株。其中5株经PCR和Southern印迹检测表现为阳性,表明外源基因己整合到玉米基因组中。提取SOD酶液,非变性聚肉烯酰胺浓度梯度凝胶电泳分离,用H2O2 5mmol/L抑制FeSOD和CU/ZnSOD活性,氯化硝基四氮唑蓝染色检测MnSOD酶活性。Southern印迹呈阳性的5个植株,MnSOD酶活性均高于未转基因的对照。甲基紫精氧化损伤处理后,用电解质渗漏率法测定阳性株系的叶片渗透液的电导率。结果表明,转基因株系的抗氧化损伤能力显著高于对照。  相似文献   

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Abstract: Bidirectional communication occurs between neuroendocrine and immune systems through the action of various cytokines. Responses to various inflammatory mediators include increases in intracellular reactive oxygen species (ROS), notably, superoxide anion (O2) and nitric oxide (NO). Neurotoxicity mediated by NO may result from the reaction of NO with O2, leading to formation of peroxynitrite (ONOO). ROS are highly toxic, potentially contributing to extensive neuronal damage. We, therefore, evaluated the effects of a variety of inflammatory mediators on the regulation of mRNA levels for manganese superoxide dismutase (MnSOD) and inducible nitric oxide synthase (iNOS) in primary cultures of rat neuronal and glial cells. To determine age-dependent variation of mRNA expression, we used glial cells derived from newborn, 3-, 21-, and 95-day-old rat brains. Interleukin-1β, interferon-γ (IFN-γ), bacterial lipopolysaccharide (LPS), and tumor necrosis factor-α showed significant induction of MnSOD in both glial and neuronal cells. However, only LPS and IFN-γ increased iNOS mRNA. These data demonstrate that these two genes are similarly regulated in two cells of the nervous system, further suggesting that the oxidative state of a cell may dictate a neurotoxic or neuroprotective outcome.  相似文献   

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Extracellular superoxide dismutase (SOD3), which catalyzes the dismutation of superoxide anions to hydrogen peroxide at the cell membranes, regulates the cellular growth in a dose-dependent manner. This enzyme induces primary cell proliferation and immortalization at low expression levels whereas it activates cancer barrier signaling through the p53-p21 pathway at high expression levels, causing growth arrest, senescence, and apoptosis. Because previous reports suggested that the SOD3–induced reduction in the rates of cellular growth and migration also occurred in the absence of functional p53 signaling, in the current study we investigated the SOD3-induced growth-suppressive mechanisms in anaplastic thyroid cancer cells. Based on our data, the robust over-expression of SOD3 increased the level of phosphorylation of the EGFR, ERBB2, RYK, ALK, FLT3, and EPHA10 receptor tyrosine kinases with the consequent downstream activation of the SRC, FYN, YES, HCK, and LYN kinases. However, pull-down experiments focusing on the small GTPase RAS, RAC, CDC42, and RHO revealed a reduced level of growth and migration signal transduction, such as the lack of stimulation of the mitogen pathway, in the SOD3 over-expressing cells, which was confirmed by MEK1/2 and ERK1/2 Western blotting analysis. Interestingly, the mRNA expression analyses indicated that SOD3 regulated the expression of guanine nucleotide-exchange factors (RHO GEF16, RAL GEF RGL1), GTPase-activating proteins (ARFGAP ADAP2, RAS GAP RASAL1, RGS4), and a Rho guanine nucleotide-disassociation inhibitor (RHO GDI 2) in a dose dependent manner, thus controlling signaling through the small G protein GTPases. Therefore, our current data may suggest the occurrence of dose-dependent SOD3–driven control of the GTP loading of small G proteins indicating a novel growth regulatory mechanism of this enzyme.  相似文献   

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In living organisms, exposure to oxygen provokes oxidative stress. A widespread mechanism for protection against oxidative stress is provided by the antioxidant enzymes: superoxide dismutases (SODs) and hydroperoxidases. Generally, these enzymes are not present in Lactobacillus spp. In this study, we examined the potential advantages of providing a heterologous SOD to some of the intestinal lactobacilli. Thus, the gene encoding the manganese-containing SOD (sodA) was cloned from Streptococcus thermophilus AO54 and expressed in four intestinal lactobacilli. A 1.2-kb PCR product containing the sodA gene was cloned into the shuttle vector pTRK563, to yield pSodA, which was functionally expressed and complemented an Escherichia coli strain deficient in Mn and FeSODs. The plasmid, pSodA, was subsequently introduced and expressed in Lactobacillus gasseri NCK334, Lactobacillus johnsonii NCK89, Lactobacillus acidophilus NCK56, and Lactobacillus reuteri NCK932. Molecular and biochemical analyses confirmed the presence of the gene (sodA) and the expression of an active gene product (MnSOD) in these strains of lactobacilli. The specific activities of MnSOD were 6.7, 3.8, 5.8, and 60.7 U/mg of protein for L. gasseri, L. johnsonii, L. acidophilus, and L. reuteri, respectively. The expression of S. thermophilus MnSOD in L. gasseri and L. acidophilus provided protection against hydrogen peroxide stress. The data show that MnSOD protects cells against hydrogen peroxide by removing O2·− and preventing the redox cycling of iron. To our best knowledge, this is the first report of a sodA from S. thermophilus being expressed in other lactic acid bacteria.  相似文献   

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A manganese-containing superoxide dismutase (EC 1.15.1.1) was fully characterized from leaves of the higher plant Pisum sativum L., var. Lincoln. The amino acid composition determined for the enzyme was compared with that of a wide spectrum of superoxide dismutases and found to have a highest degree of homology with the mitochondrial manganese superoxide dismutases from rat liver and yeast. The enzyme showed an apparent pH optimum of 8.6 and at 25°C had a maximum stability at alkaline pH values. By kinetic competition experiments, the rate constant for the disproportionation of superoxide radicals by pea leaf manganese superoxide dismutase was found to be 1.61 × 109 molar−1·second−1 at pH 7.8 and 25°C. The enzyme was not sensitive to NaCN or to H2O2, but was inhibited by N3. The sulfhydryl reagent p-hydroxymercuribenzoate at 1 mm concentration produced a nearly complete inhibition of the manganese superoxide dismutase activity. The metal chelators o-phenanthroline, EDTA, and diethyldithiocarbamate all inhibited activity slightly in decreasing order of intensity. A comparative study between this higher plant manganese superoxide dismutase and other dismutases from different origins is presented.  相似文献   

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