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1.
采用RT-PCR技术从人肝总RNA中分离扩增了0.45kb的人铜锌超氧化物歧化酶(Cu/Zn SOD)基因的cDNA序列,首先克隆至大肠杆菌表达质粒pET23b,进行了序列测定和超高表达。将Cu/Zn SOD cDNA亚克隆至乳酸乳球菌表达载体pMG36e,用电穿孔法将重组质粒pMG36esod转化到乳酸乳球菌中,获得Cu/Zn SOD的组成型表达,其表达量约占乳酸乳球菌可溶性蛋白的5%以上,活性染色表明该工程菌表达的Cu/Zn SOD具有较好的酶活性。  相似文献   

2.
人铜锌超氧化物歧化酶基因的克隆和乳酸乳球菌中的表达   总被引:5,自引:0,他引:5  
采用RT-PCR技术从人肝总RNA中分离扩增了0.45kb的人铜锌超氧化物歧化酶(Cu/ZnSOD)基因的cDNA序列,首先克隆至大肠杆菌表达质粒pET23b,进行了序列测定和超高表达,将Cu/Zn,SODcDNA亚克隆至乳酸乳球菌表达载体pMG36e,用电穿孔法将重组质粒pMG36esod转化到乳酸乳球菌,获得Cu/Zn SOD的组成型表达,其表达量约占乳酸乳球菌可溶性蛋白的5%以上,活性染色表  相似文献   

3.
《Free radical research》2013,47(1):363-370
The rate of amino acid replacement in Cu, Zn SOD greatly departs from the expectations of the molecular clock. We examine 27 Cu, Zn SOD sequences available and conclude that: (I) the SOD enzymes from different mammal families differ from each other by roughly the same number of replacements, which is consistent with a simultaneous mammalian radiation; (2) over the most recent 60 million years (MY) the rate of SOD evolution is fairly high (15aa/100aa/100MYR) and may be considered constant; (3) the rate of accumulation of amino acid replacements since the divergence of fungi. plants and animals to the present is inconstant along different branches of the evolutionary tree; moreover it steadily decreases with time, to the same extent in all lineages; (4) some comparisons exhibit divergences that are in any case greater than expected from a Poisson process on the assumption of a molecular clock; (5) plant chloroplast enzymes display fewer differences from each other than cytoplasmic ones; (6) bacteriocuprein (from Photobacterium leiognathi), fluke and human extracellular SOD are all three extremely remotely related to one another and to the SOD of other eukaryotes.

The process of consistent decline of the rate of evolution of Cu. Zn SOD can be described by a number of mathematical functions. We explore simple models that assume constant rates and might be applicable to other proteins or genes that apparently evolve at disparate rates.  相似文献   

4.
利用RACE和克隆等方法得到了虾夷扇贝铜锌超氧化物歧化酶(Cu/Zn-SOD)基因全长cDNA序列,该序列全长1 064 bp,5′和3′非编码区(UTR)分别为61 bp和541 bp,开放阅读框(ORF)462 bp,编码153个氨基酸和一个终止密码子.分析发现,此氨基酸序列含有形成二硫键的两个半胱氨酸残基以及4个铜结合位点、4个锌结合位点,与已知的Cu/Zn-SOD结构相似,与其它物种同源性较高.进行虾夷扇贝组织分布及发育过程中不同时期的实时荧光定量监测,发现鳃中Cu/Zn-SOD基因mRNA相对表达量最高,肾次之,血淋巴中最低;不同发育阶段Cu/Zn-SOD表达量变化明显,其中受精卵和早期D形幼体两个时期表达量相对较高.  相似文献   

5.
从碱茅根cDNA文库分离得到Put-Cu/Zn-SOD全长cDNA,其序列全长为2 700 bp,该基因的开放读码框为长615 bp,所编码的蛋白由204个氨基酸组成,其预测分子量约为20.6 kD、理论等电点约为5.63.Put-Cu/Zn-SOD氨基酸序列与水稻Cu/Zn-SOD序列有较高的同源性为87%.将Put-Cu/Zn-SOD基因构建到酵母表达载体pYES2,并转化至酵母(INVSc1).对pYES2-Put-Cu/Zn-SOD转化酵母进行盐碱、氧化胁迫实验.结果表明:重组酵母的抗盐碱、氧化能力明显高于对照(pYES2转化酵母),结果显示了碱茅的Cu/Zn-SOD基因在酵母表达中,具有提高酵母抗盐碱和耐氧化能力.  相似文献   

6.
When replete with zinc and copper, amyotrophic lateral sclerosis (ALS)-associated mutant SOD proteins can protect motor neurons in culture from trophic factor deprivation as efficiently as wild-type SOD. However, the removal of zinc from either mutant or wild-type SOD results in apoptosis of motor neurons through a copper- and peroxynitrite-dependent mechanism. It has also been shown that motor neurons isolated from transgenic mice expressing mutant SODs survive well in culture but undergo apoptosis when exposed to nitric oxide via a Fas-dependent mechanism. We combined these two parallel approaches for understanding SOD toxicity in ALS and found that zinc-deficient SOD-induced motor neuron death required Fas activation, whereas the nitric oxide-dependent death of G93A SOD-expressing motor neurons required copper and involved peroxynitrite formation. Surprisingly, motor neuron death doubled when Cu,Zn-SOD protein was either delivered intracellularly to G93A SOD-expressing motor neurons or co-delivered with zinc-deficient SOD to nontransgenic motor neurons. These results could be rationalized by biophysical data showing that heterodimer formation of Cu,Zn-SOD with zinc-deficient SOD prevented the monomerization and subsequent aggregation of zinc-deficient SOD under thiol-reducing conditions. ALS mutant SOD was also stabilized by mutating cysteine 111 to serine, which greatly increased the toxicity of zinc-deficient SOD. Thus, stabilization of ALS mutant SOD by two different approaches augmented its toxicity to motor neurons. Taken together, these results are consistent with copper-containing zinc-deficient SOD being the elusive “partially unfolded intermediate” responsible for the toxic gain of function conferred by ALS mutant SOD.  相似文献   

7.
《Free radical research》2013,47(1):239-251
The structure-function relationship in Cu,Zn superoxide dismutase has been partially elucidated by the combined use of many spectroscopic techniques (electronic spectroscopy, circular dichroism. EPR and NMR) and site-directed mutagenesis techniques. The comparison of the spectroscopic and catalytic properties of various mutants, in which some active site residues have been substituted through site-directed mutagenesis, allowed us to establish that the activity is in general more sensitive to electrostatic effects rather than to steric effects or changes in the copper hydration or coordination geometry.  相似文献   

8.
A superoxide dismutase has been purified to apparent homogeneity from the muscular tissue of the ark shell, Scapharca broughtonii, by ammonium sulfate fractionation, and consecutive column chromatographies using DEAE-Sephadex and Sephadex G-100. This enzyme has a molecular weight of 71,700 and is composed of two identical subunits of M r 35,800, which are joined by noncovalent interactions. The purified enzyme was stable over the range of pH 5.0-10.0 at 4°C for 24 h and at temperatures below 45°C. Cyanide at 0.1 and 1 mM inhibited the activity of the superoxide dismutase 56 and 100%, but 5 mM azide caused 8% inhibition. The optical spectrum of this enzyme had a maximum at 265 nm, and the amino acid composition of the enzyme was similar to that of the other Cu, Zn superoxide dismutases except for the contents of threonine, serine, proline, and leucine. Atomic absorption spectroscopy showed that this enzyme has approximately 2 atoms of Cu2+ and Zn2+ per mole of enzyme. These results indicate that the purified enzyme from ark shell, Scapharca broughtonii, is a Cu, Zn superoxide dismutase.  相似文献   

9.
Cu,Zn superoxide dismutase (SOD1) is a dimeric metal-binding enzyme responsible for the dismutation of toxic superoxide to hydrogen peroxide and oxygen in cells. Mutations at dozens of sites in SOD1 induce amyotrophic lateral sclerosis (ALS), a fatal gain-of-function neurodegenerative disease whose molecular basis is unknown. To obtain insights into effects of the mutations on the folded and unfolded populations of immature monomeric forms whose aggregation or self-association may be responsible for ALS, the thermodynamic and kinetic folding properties of a set of disulfide-reduced and disulfide-oxidized Zn-free and Zn-bound stable monomeric SOD1 variants were compared to properties of the wild-type (WT) protein. The most striking effect of the mutations on the monomer stability was observed for the disulfide-reduced metal-free variants. Whereas the WT and S134N monomers are > 95% folded at neutral pH and 37 °C, A4V, L38V, G93A, and L106V ranged from 50% to ∼ 90% unfolded. The reduction of the disulfide bond was also found to reduce the apparent Zn affinity of the WT monomer by 750-fold, into the nanomolar range, where it may be unable to compete for free Zn in the cell. With the exception of the S134N metal-binding variant, the Zn affinity of disulfide-oxidized SOD1 monomers showed little sensitivity to amino acid replacements. These results suggest a model for SOD1 aggregation where the constant synthesis of ALS variants of SOD1 on ribosomes provides a pool of species in which the increased population of the unfolded state may favor aggregation over productive folding to the native dimeric state.  相似文献   

10.
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   

11.
12.
Heterologous expression systems can be utilized to great advantage in the study of cytochrome P450 enzymes. P450 3A4 is one of the major forms of cytochrome P450 found in liver. It is also involved in the metabolism of numerous widely used drugs and xenobiotics. In the present study human liver cytochrome P450 3A4 gene was transferred into the fission yeast Schizosaccharomyces pombe via two different S. pombe expression vectors carrying thiamine repressible promoter — nmt1 (pREP42) and constitutive promoter — adh1 (pART1). Heterologously expressed cytochrome P450 3A4 was detected in the cells grown in minimal (EMM) or rich medium (YEL) containing 0.5% (w/v) glucose. A typical cytochrome P450 peak for 3A4 was observed at 448 nm in microsomal fraction. The presence of heterologous expression of 3A4 form was also determined by SDS-PAGE and it molecular mass was identified as 52 kDa. The enzyme activity was confirmed by HPLC analysis, using testosterone as substrate.  相似文献   

13.
《Free radical research》2013,47(1):305-312
The alkaline spectroscopic transition of the copper at the active site of Cu, Zn superoxide dismutase has been reexamined by room temperature EPR. in order to correlate it with the inhibition of the enzyme activity at high pH. The EPR transition is governed by a single prototropic equilibrium, with pK values of 11.3 and 11.1 for ox and shark superoxide dismutase. respectively. This result suggests possible contributions of changes of the copper environment to the higher pK of the activity/pH curve.

When Arg141 was cheniically modified by phenylglyoxal treatment of the ox protein. a lower pK value (10.8) was obtained, indicating that Arg141 is involved in the observed modifications of the EPR spectra.  相似文献   

14.
Abstract: Amyotrophic lateral sclerosis (ALS) is a degenerative motor neuron disease that is inherited as an autosomal dominant trait in ~ 10% of cases. Recently we and others identified several single-base mutations in the Cu/Zn superoxide dismutase (SOD1) gene in patients with familial ALS (FALS). Using single-strand conformational polymorphism, we studied the C to G mutation in exon 2 of the SOD1 gene (resulting in a leucine to valine substitution in position 38) in affected and unaffected members of a large Belgian family with FALS. We measured the SOD1 activity in red blood cell lysates in 14 members of this family, including the only surviving clinically affected patient. SOD1 activity of the family members carrying the mutation was less than half that of members without the mutation. In addition, in 11 patients with sporadic ALS and 11 age- and sex-matched controls, red blood cell SOD1 activity was normal. These studies indicate that SOD1 activity is reduced in these FALS patients but not in sporadic ALS patients. Moreover, this SOD1 enzyme abnormality is detectable years before onset of clinical ALS in carriers of this FALS mutation.  相似文献   

15.
The Cu,Zn superoxide dismutase from Haemophilus ducreyi is characterized by the unique ability to bind heme at its dimer interface. Here we report the high-resolution crystal structures of this protein in the heme-loaded (holo) and heme-free (apo) forms. Heme is asymmetrically bound between the two enzyme subunits, where heme iron is coordinated by two histidine residues, His64 and His 124, provided by the two subunits. Moreover, the binding of heme to the protein is ensured by stabilizing contacts between the prosthetic group and a limited number of other residues, most of which are not present in other bacterial enzyme variants. We show that the introduction of only three mutations at the dimer interface of the enzyme from Haemophilus parainfluenzae, a closely related bacterial species, is sufficient to induce heme-binding ability by this enzyme variant. Heme binding does not alter protein activity. Moreover, the binding of the prosthetic group does not induce any significant structural perturbation at the subunit level and requires only limited local structural rearrangements that widen the cleft at the dimer interface and cause a limited shift in the relative orientation between the subunits. The presence of a preformed heme-binding pocket and the significant solvent exposure of the cofactor to the solvent are compatible with the suggested protective role of the enzyme against heme toxicity or with its involvement in heme trafficking in the periplasmic space.  相似文献   

16.
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   

17.
18.
19.
重组人超氧化物歧化酶的基因克隆、表达及产物纯化研究   总被引:13,自引:2,他引:13  
为了克隆人SOD-cDNA,构建表达载体,实现其在大肠杆菌中的高效稳定表达,通过抽提人肝组织总RNA,RT-PCR扩增人SOD cDNA,构建含rhSOD cDNA的表达质粒pLY-4/rhSOD,转化大肠杆菌JF1125进行表达研究。结果克隆到的rhSOD cDNA序列与文献报道一致,在宿主菌中获得高效表达,表达水平达68%以上;蛋白复性纯化工艺高效快速,rhSOD纯品纯度达98%以上,比活性达到2529u/mg;为用基因工程方法生产rhSOD打下基础。  相似文献   

20.
Abstract: Primary dopaminergic neuronal cultures with increased superoxide dismutase (SOD) activity were established for studying the role of superoxide anion (O2?) in 1-methyl-4-phenylpyridinium (MPP+)-induced degeneration of dopamine (DA) neurons. Mean SOD activity in cultures prepared from transgenic (human) Cu/Zn SOD (hSOD1) mice was 2.46–2.60 times greater than in cultures prepared from nontransgenic control mice. After 1 and 2 weeks in culture, the mean density of DA neurons [number of tyrosine hydroxylase-immunoreactive (TH-ir) cells per visual field] was significantly higher in cultures prepared from transgenic mice compared with those prepared from nontransgenic control mice (4.55–5.63 TH-ir neurons per field in hSOD1 cultures vs. 2.66–2.8 TH-ir neurons per field in control cultures). However, uptake of [3H]DA relative to uptake of [3H]GABA was only slightly greater in hSOD1 cultures than in normal cultures (14.1 nmol of DA/100 nmol of GABA vs. 12.1 nmol of DA/100 nmol of GABA). Resistance to MPP+ toxicity was not significantly different from that in normal cultures when based on density of surviving TH-ir cell bodies (EC50 = 0.54 µM in hSOD1 and EC50 = 0.37 µM in normal cultures). A more sensitive measure of DA neuron integrity and function ([3H]DA uptake) also failed to demonstrate increased resistance of hSOD1 cultures to the toxin (EC50 = 73.7 nM in hSOD1 and EC50 = 86.2 nM in controls). These results do not support the hypothesis that neurotoxicity of the active metabolite of MPTP, MPP+, is mediated by generation of O2? in the cytoplasm. Nevertheless, mesencephalic cultures with increased hSOD1 activity appear to survive better than normal control cultures in the oxidatively stressful environment of cell culture incubators, and such mesencephalic cells may be useful for cell grafting studies in animal models of Parkinson's disease.  相似文献   

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