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1.
牛小脑肌醇磷脂激酶PI(4)K高产率纯化与特征   总被引:1,自引:0,他引:1  
对牛小脑膜区肌醇磷脂激酶进行了11 500倍纯化,过程包括:TritonX-100抽提,硫酸铵沉淀,阳离子交换层析(phosphocellulose),亲和层析(Heparin Sepharose CL-6B)和阴离子交换层析(DEAE10,FPLC)等.纯化程度可达95%以上,对SDS-PAGE电泳结果进行扫描分析测其分子质量为56 ku.纯化的肌醇磷脂激酶的特异活性为450 nmol/mg·min, 动力学性质表现为ATP的表观Km值为7.9×10-7 mol/L,PI的表观Km值为6.6×10-7 mol/L. 腺嘌呤核苷是该酶的有效抑制剂,3.5×10-7 mol/L腺嘌呤核苷可使该酶活力降低约50%,而TritonX-100对该酶活力具有刺激作用,0.5% TritonX-100可使该酶表现为最高活力.  相似文献   

2.
芽孢杆菌O74碱性纤维素酶的纯化和性质研究   总被引:5,自引:0,他引:5  
对芽孢杆菌(Bacillus)O74菌株产生的纤维素酶经过Sephadex G-100,DEAE-Sephadex A-25和疏水相互作用Agarose 4B三种层析方法,分离纯化到一个仅具有内切β-葡聚糖酶(CMC酶)活性的纯组分.提纯后酶的比活力提高了27.9倍,总回收率为40%.分子量和等电位点分别为52 500和4.1.酶在pH4-12范围内均具有较高活性.其最适反应温度为50℃,最适反应pH为7.0,属于反应pH范围较广泛的耐碱性纤维素酶.除Hg+,Ag+,Zn2+和Cu2+等少数离子及少数表面活性剂、助剂对酶活性有一定影响外,酶活性相当稳定,符合洗涤剂用酶的条件.  相似文献   

3.
人脑神经元特异性烯醇化酶的纯化方法   总被引:1,自引:0,他引:1  
采用改良的Grace层析方法,经一次DEAE-Sephadex A50柱层析即从人脑中纯化了神经元特异性烯醇化酶,比活力为92.1U/mg,纯化倍数为59.4.该酶纯化后,经SDS-聚丙烯酰胺凝胶电泳鉴定为单一蛋白质谱带.此外,还测定了其部分理化性质,其亚单位分子量为45000,等电点pI为4.7,氨基酸组成分析表明其为一种酸性蛋白质;对2-磷酸甘油酸的Km值为5.6×10-4mol/L.  相似文献   

4.
粗毛栓菌Trametes gallica诱变菌株SAH-12是通过紫外诱变选育所得的漆酶高产菌株,Active-PAGE分析表明SAH-12在高氮低碳无机盐培养液(LM3)中至少分泌3种漆酶同工酶(Lac1、Lac2、Lac3)。采用硫酸铵盐析、透析和Sephadex-G75分子筛层析从其培养液中分离纯化得到电泳纯的Lac1,纯化倍数6.54,酶活性回收59.7%。Lac1经SDS-PAGE验证为一条带,其表观分子量为61.5kDa。Lac1为一种糖蛋白,含糖量11.6%,等电点pI 4.40,催化氧化底物ABTS的最适反应温度为60℃,最适pH为2.6,Km值为25μmol/L。Lac1在40℃(pH4.0)以下和pH1.5~5.0(28℃)范围内稳定。金属离子Fe2+、Ag+、Hg2+和Cr3+与抑制剂DTT、SDS、EDTA和DMSO对Lac1有抑制作用,其中Fe2+和DTT完全抑制酶活,而Cu2+对酶有明显激活作用,Mn2+、Zn2+对酶活影响不大。Lac1不仅可使一些合成染料明显脱色,而且对苹果汁多酚祛除也有较好效果。40℃用该酶(1U/mL)处理苹果汁5h,其多酚含量可降低40%。  相似文献   

5.
用基因芯片检测DPYD等位基因在受试人群中的发生频率   总被引:1,自引:0,他引:1  
二氢嘧啶脱氢酶基因(DPYD基因)所编码的二氢嘧啶脱氢酶(DPD酶)是氟化嘧啶类抗肿瘤药物代谢的主要限速酶,其活性存在显著的个体差异,并因此影响药物的疗效和毒副作用.大部分编码低/无活性酶的突变型等位基因是由于基因中的单核苷酸多态性(single nucleotide polymorphism,SNP)造成的,检测这些SNPs是预测患者对药物的反应和实现个体化给药方案的基础.制备并优化了用于检测DPYD基因中6个已知SNPs所编码的等位基因(DPYD*2,*3,*4,*5,*9,*12)的基因芯片,建立了该芯片的基因分型标准.并利用该芯片检测了肿瘤患者(112例)、肾病患者(83例)和健康者(45例)中DPYD突变型等位基因的发生频率.在受试人群中,突变型等位基因DPYD*5和DPYD*9平均发生率分别为32.08%和11.25%,未发现DPYD*2,*3,*4,*12突变型等位基因.而且以上单碱基突变的发生率在肿瘤患者、肾病患者和健康者间以及男性、女性肿瘤患者间无显著性差异,表明其与疾病的发生或性别无显著性关联.对20例标本的基因分型结果采用直接测序法进行验证,19例基因芯片分型结果与直接测序法结果相一致.DPYD*5、DPYD*9突变型等位基因在受试人群中具有较高的发生率.利用基因芯片能够对其实现快速准确的检测.  相似文献   

6.
粗毛栓菌Trametes gallica诱变菌株SAH-12是通过紫外诱变选育所得的漆酶高产菌株,Active-PAGE分析表明SAH-12在高氮低碳无机盐培养液(LM3)中至少分泌3种漆酶同工酶(Lac1、Lac2、Lac3)。采用硫酸铵盐析、透析和Sephadex-G75分子筛层析从其培养液中分离纯化得到电泳纯的Lac1,纯化倍数6.54,酶活性回收59.7%。Lac1经SDS-PAGE验证为一条带,其表观分子量为61.5kDa。Lac1为一种糖蛋白,含糖量11.6%,等电点pI 4.40,催化氧化底物ABTS的最适反应温度为60℃,最适pH为2.6,Km值为25μmol/L。Lac1在40℃(pH4.0)以下和pH1.5~5.0(28℃)范围内稳定。金属离子Fe2+、Ag+、Hg2+和Cr3+与抑制剂DTT、SDS、EDTA和DMSO对Lac1有抑制作用,其中Fe2+和DTT完全抑制酶活,而Cu2+对酶有明显激活作用,Mn2+、Zn2+对酶活影响不大。Lac1不仅可使一些合成染料明显脱色,而且对苹果汁多酚祛除也有较好效果。40℃用该酶(1U/mL)处理苹果汁5h,其多酚含量可降低40%。  相似文献   

7.
恶臭假单胞菌ND6菌株的萘降解质粒pND6-1中编码儿茶酚1,2-双加氧酶的catA基因在大肠杆菌中进行了克隆和表达,并研究表达产物的酶学性质。结果表明:酶的Km为0.019μmol/L,Vmax为1.434μmol/(min.mg);具有很好的耐热性,在50℃保温45min后仍能够保留酶活力的93.7%;Fe2+对酶活性有显著的促进作用,其比活力是对照反应的292%;酶对4-氯儿茶酚的催化活性非常低,属于Ⅰ型儿茶酚1,2-双加氧酶。以萘为底物生长时,ND6菌株的细胞提取液中既存在催化邻位裂解途径的儿茶酚1,2-双加氧酶活性,也存在催化间位裂解途径的儿茶酚2,3-双加氧酶活性。以苯甲酸、对羟基苯甲酸和苯乙酸为唯一碳源生长时,ND6菌株细胞提取液的儿茶酚1,2-双加氧酶活性远远大于儿茶酚2,3-双加氧酶活性。表明ND6菌株既能通过儿茶酚间位裂解途径降解萘,也能通过儿茶酚邻位裂解途径降解萘,而以苯甲酸、对羟基苯甲酸和苯乙酸为诱导物时只利用儿茶酚邻位裂解途径。  相似文献   

8.
为赋予单链尿激酶型纤溶酶原激活剂(single chain urokinase-type plasminogen activator, scu-PA, 尿激酶原)以抗血小板聚集的功能,在scu-PA的kringle区118位Gly与119位Leu之间插入PRGDWR序列(insert mutant B,InB).利用甲醇酵母(Pichia pastoris)进行分泌表达,经金属离子螯合亲和层析与S强阳离子交换层析,得到纯蛋白.实验测定InB对人工合成底物S-2444的酰胺解活性为5 900 IU/mg,动力学常数为:Km,S-2444InB=56.8 μmol·L-1,kcat,S-2444InB=0.33 s-1;水解天然底物plasminogen的动力学常数为:Km,plgInB=0.397 μmol·L-1,kcat,plgInB=0.0164 s-1.InB激活plasminogen的反应在有fibrin存在条件下InB的活性为无fibrin条件下的46.3%.该突变体在体外激活plasminogen的活性与同一系统表达的野生型scu-PA基本相同.该突变体表现出较强的抗血小板聚集活性,IC50=12.7 μmol·L-1,而野生型scu-PA无此功能.实验表明scu-PA的K区插入突变体InB是一种极具潜力的双功能溶栓分子.  相似文献   

9.
大鼠脑组织中一氧化氮合酶测定   总被引:14,自引:0,他引:14  
在含有一氧化氮合酶(NOS)底物左族精氨酸(L-Arg), 辅助因子还原性辅酶Ⅱ(NADPH)、四氢生物蝶呤(BH4)、黄素单核苷酸(FMN), 黄素腺嘌呤二核苷酸(FAD)以及Ca2+、钙调蛋白等溶液中加入大鼠脑组织匀浆离心上清液, 组成酶反应体系. 37℃温育80min, 应用N-(1-萘基)-乙二胺、对氨基苯磺酸的重氮、偶氮反应测定酶反应体系中一定时间内NO代谢产物NO-2浓度变化, 建立一种简便的NOS活性测定方法. 反应体系最佳pH为7.4, Km=0.1mmol/L, 体系内NO-2生成量与加入样品量之间有良好线性关系(r=0.998). 此方法简单、方便、重复性好, 批内CV为3.69%, 批间CV为5.16%. 10只健康大鼠脑组织中NOS活性为(39.61±7.64)nmol/(min·g).  相似文献   

10.
腺病毒载体介导PDX-1在骨髓间充质干细胞中的表达   总被引:1,自引:0,他引:1  
为研究PDX-1基因在骨髓间充质干细胞中的表达情况及生物学功能的发挥,构建了含PDX-1基因的重组腺病毒载体. 酶切PDX-1基因并连入穿梭质粒pAdTrack-CMV.用电穿孔法使穿梭质粒pAdTrack-CMV-PDX-1与病毒骨架质粒pAdEasy-1在大肠杆菌BJ5183中同源重组.利用脂质体介导重组腺病毒载体转染293细胞,包装出完整的腺病毒.分离、培养、扩增骨髓间充质干细胞.用重组腺病毒感染间充质干细胞.用荧光显微镜、RT-PCR、免疫荧光染色等方法检测PDX-1、胰岛素基因及蛋白质的表达,用放射免疫分析法检测转基因细胞分泌胰岛素情况.结果表明:通过测序、PCR、酶切等鉴定PDX-1基因已正确插入穿梭质粒中,并与病毒骨架质粒重组.重组腺病毒滴度为6.3×107 PFU/ml.通过荧光显微镜观察证实重组腺病毒可高效感染骨髓间充质干细胞,经RT-PCR、免疫荧光染色证实转染pAd-PDX-1后培养7天的细胞中有PDX-1及胰岛素基因的表达.这些转基因的细胞向胞外分泌的胰岛素量为(15.21±3.50) mIU/L.  相似文献   

11.
Phthalate is degraded through 4,5-dihydroxyphthalate and protocatechuate in Pseudomonas testosteroni NH1000. The ezyme 4,5-dihydroxyphthalate decarboxylase, catalyzing the conversion of 4,5-dihydroxyphthalate to protocatechuate and carbon dioxide, was purified approximately 130-fold from phthalate-induced cells of a protocatechuate 4,5-dioxygenase-deficient mutant of P. testosteroni. The most purified preparation showed a single protein band on sodium dodecyl sulfate-acrylamide disc gel electrophoresis with a molecular weight of 38,000. The apparent molecular weight of the native enzyme determined by Sephadex G-200 column chromatography was 150,000. Among the substrate analogs tested, only 4-hydroxyphthalate served as a substrate, which was decarboxylated to form m-hydroxybenzoate. The apparent Km values for 4,5-dihydroxyphthalate and 4-hydroxyphthalate were estimated to be 10.5 micrometer and 1.25 mM, respectively, and the Vmax for the former was 10 times larger than that for the latter. Whereas the wild-type strain could utilize 4-hydroxyphthalate as a sole source of carbon, none of the following could grow with the compound: 4,5-dihydroxyphthalate decarboxylase-deficient, m-hydroxybenzoate-nondegradable, and protocatechuate 4,5-dioxygenase-deficient mutants. Since one-step revertants of these mutants could utilize 4-hydroxyphthalate, the compound appears to be metabolized through m-hydroxybenzoate and protocatechuate in P. testosteroni NH1000.  相似文献   

12.
Phthalate is degraded through 4,5-dihydroxyphthalate and protocatechuate in Pseudomonas testosteroni NH1000. The ezyme 4,5-dihydroxyphthalate decarboxylase, catalyzing the conversion of 4,5-dihydroxyphthalate to protocatechuate and carbon dioxide, was purified approximately 130-fold from phthalate-induced cells of a protocatechuate 4,5-dioxygenase-deficient mutant of P. testosteroni. The most purified preparation showed a single protein band on sodium dodecyl sulfate-acrylamide disc gel electrophoresis with a molecular weight of 38,000. The apparent molecular weight of the native enzyme determined by Sephadex G-200 column chromatography was 150,000. Among the substrate analogs tested, only 4-hydroxyphthalate served as a substrate, which was decarboxylated to form m-hydroxybenzoate. The apparent Km values for 4,5-dihydroxyphthalate and 4-hydroxyphthalate were estimated to be 10.5 micrometer and 1.25 mM, respectively, and the Vmax for the former was 10 times larger than that for the latter. Whereas the wild-type strain could utilize 4-hydroxyphthalate as a sole source of carbon, none of the following could grow with the compound: 4,5-dihydroxyphthalate decarboxylase-deficient, m-hydroxybenzoate-nondegradable, and protocatechuate 4,5-dioxygenase-deficient mutants. Since one-step revertants of these mutants could utilize 4-hydroxyphthalate, the compound appears to be metabolized through m-hydroxybenzoate and protocatechuate in P. testosteroni NH1000.  相似文献   

13.
Gentisate 1,2-dioxygenase, which participates in salicylate and m-hydroxybenzoate metabolism, was purified from cell-free extracts of Rhodococcus erythropolis S-1, a Gram-positive bacterium. The purified enzyme gave a single band on native PAGE and SDS–PAGE. The molecular mass of the enzyme was estimated to be 328 kDa. The structure of the enzyme appears to be an octamer of identical subunits. The enzyme from this bacterium was similar in general enzymatic properties to a gentisate 1,2-dioxygenase from a Gram-negative bacterium except for molecular mass and structure.  相似文献   

14.
经Sepharose Q Fast Flow阴离子交换层析和Superdex 30凝胶过滤层析,从大肠杆菌(Escherichia coli)细胞内分离纯化了一种小分子蛋白质,SDS-聚丙烯酰胺凝胶电泳(SDS-PAGE)纯度鉴定为单一条带,经质谱分析、N端测序、同源序列比较,确定该蛋白质为大肠杆菌冷休克蛋白CspC.在此基础上,用圆二色光谱测定了其二级结构含量,初步探索了其热稳定性及与单链DNA结合后的构象变化.  相似文献   

15.
以1株分离于北大仓白酒大曲的产纤维素酶真菌M1为材料,对其进行了形态及分子生物学鉴定;纯化并研究了其纤维素酶的酶学性质。以真菌ITS1/ITS4通用引物,扩增真菌M1的rDNA ITS序列,再与GenBank中其他菌株rDNA ITS序列进行比对,使用Mega5.0软件,采用最大似然法进行聚类分析。结果显示,该真菌同已经报道的Fusarium oxysporim strain Bt3聚为一类,一致率达99%,与形态学方法鉴定一致,命名为Fusarium oxysporum M1。该菌具有很高纤维素酶活力,FPA和CMCA分别高达16.84 IU/mL和35.31 IU/mL。经过发酵条件优化酶活性进一步提高。经硫酸铵分级分离、疏水和离子交换层析,纯化了该菌纤维素酶,纯化倍数高达17.97倍,得率为3.676%,SDS-PAGE分析表明,该纤维素酶分子量达60 k Da。本研究为进一步研究该酶高效催化机理及实际应用提供参考。  相似文献   

16.
Trigonelline (TRG), which act as a cell cycle regulator and a compatible solute in response to salinity and water-stress, is the N-methyl conjugate of nicotinic acid the formation of which is catalyzed by S-adenosyl-L-methionine nicotinic acid-N-methyltransferase. The enzyme was purified 2650-fold from soybean (Glycine max L.) leaves with a recovery of 4 %. The purification procedure included ammonium sulfate (45 – 60 %) precipitation, linear gradient DEAE-Sepharose chromatography, adenosine-agarose affinity chromatography, hydroxyapatite chromatography and gel filtration (Sephacryl-S-200). The purified enzyme preparation showed a major band with a molecular mass of 41.5 kDa in sodium dodecyl sulfate-polyacrylamide gel electrophoresis that is related to the enzyme activity. The native enzyme had a molecular mass of about 85 kDa as estimated by gel filtration. The Km values for S-adenosyl-L-methionine and nicotinic acid were 31 and 12.5 M, respectively. The purified enzyme showed optimum activity at pH 6.5 and temperature of 40 – 45 °C. High concentration of dithiothreitol (10 mM) and glycerol (20 %) stabilize the enzyme during purification and storage. Hg2+ strongly inhibits enzyme activity.  相似文献   

17.
The new bacteriocin, termed enterocin M, produced by Enterococcus faecium AL 41 showed a wide spectrum of inhibitory activity against the indicator organisms from different sources. It was purified by (NH4)2SO4 precipitation, cation-exchange chromatography and reverse phase chromatography (FPLC). The purified peptide was sequenced by N-terminal amino acid Edman degradation and a mass spectrometry analysis was performed. By combining the data obtained from amino acid sequence (39 N-terminal amino acid residues was determined) and the molecular weight (determined to be 4 628 Da) it was concluded that the purified enterocin M is a new bacteriocin, which is very similar to enterocin P. However, its molecular weight is different from enterocin P (4 701.25). Of the first 39 N-terminal residues of enterocin M, valine was found in position 20 and a lysine in position 35, while enterocin P has tryptophane residues in these positions.  相似文献   

18.
为获得具有生物学活性的hFKBP52,来筛选新型的促神经再生药物.采用半巢式、桥联PCR及亲和层析方法,从人胎脑cDNA文库中成功扩增出hFKBP52基因,在pET28a(+)中实现了高效、可溶性的融合表达,表达量约30%.重组的蛋白质经亲和纯化至电泳纯,纯化后的hFKBP52显示出肽基脯氨基顺反异构酶活性.表明原核表达的hFKBP52具有类似于其天然蛋白质的生物学活性.  相似文献   

19.
人尿激肽原酶的纯化与鉴定   总被引:2,自引:0,他引:2  
采用两性离子胶体沉淀和乙醇沉淀相结合的粗提方法,经离子交换、疏水层析、亲和层析及凝胶过滤4个步骤有效地将人尿激肽原酶(hk-1)粗提物纯化,比活提高了1 755倍,总得率为70%.用以慈菇蛋白酶抑制剂为配体的亲和层析纯化hk-1,效果理想,整个工艺路线适合产业化生产.纯化产物在SDS-聚丙烯酰胺凝胶电泳上为单带,高压液相色谱(HPLC)上为单峰,基质辅助激光解析电离飞行时间质谱测得分子质量为33 450 u,等电聚焦测得pI在4.3附近,为含糖蛋白.同时测定了该酶的热稳定性和pH稳定性.纯化过程中同时分离得到另一种药用蛋白——人尿胰蛋白酶抑制剂(HUTI).  相似文献   

20.
Urease (EC 3.5.1.5) catalyses the hydrolysis of urea to ammonia and carbon dioxide. The enzyme fromSporobolomyces roseus was enriched 780-fold and purified to apparent homogeneity using heat treatment, ion exchange chromatography on Q-Sepharose fast flow, hydrophobic interaction chromatography on Phenyl-Sepharose, size exclusion chromatography on Sephacryl S 300 HR, and ion exchange chromatography on MonoQ. Analysis of the purified enzyme by SDS-PAGE demonstrated the presence of subunits with a molecular weight of 90 (± 4) kDa. The M r of the native enzyme was estimated by size exclusion chromatography to be 340 (± 30) kDa, suggesting a tetrameric structure different from other ureases isolated so far from both prokaryotes and eukaryotes. The enzyme was heat-stable, showing no loss of activity after incubation at 70 °C for 15 min. The highest urease activities were observed after growth on media containing urea as the sole source of nitrogen.  相似文献   

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