首页 | 本学科首页   官方微博 | 高级检索  
相似文献
 共查询到20条相似文献,搜索用时 281 毫秒
1.
假单胞菌WBC-3甲基对硫磷水解酶性质的初步研究   总被引:1,自引:0,他引:1  
从最近分离到的有机磷农药降解菌Pseudomonassp. WBC3中获得了甲基对硫磷水解酶(Methyl parathion hydrolase, MPH,EC 3183)。该酶在48h的培养物中分布比例分别为:上清液2.1%, 胞内862%和胞间质11.7%,说明MPH为胞内酶。经过Cmsepharose Fast Flow阳离子交换层析,获得电泳纯的酶。SDSPAGE和凝胶过滤层析表明,该酶为单体蛋白,分子量约为34kD。动力学分析显示该酶为非特异性有机磷降解酶,但最适底物为甲基对硫磷。在pH9~12范围,酶表现较高活力水平,最高活力的反应温度为40℃。根据各类金属离子和鳌合剂对酶活的影响,推测MPH为金属酶。  相似文献   

2.
海洋微生物有机磷降解酶的纯化与性质研究   总被引:4,自引:0,他引:4  
从长期受有机磷农药污染的海水中分离得到1株能高效降解农药的芽胞杆菌M-1,通过离子交换层析、凝胶过滤层析等方法从发酵液中分离纯化了有机磷农药降解酶,SDS-PAGE测得该酶的分子质量约为45 kD。酶反应最适pH为7.5,最适反应温度为30℃,30℃下保温30 min,酶活力基本不变,高于30℃酶活力则迅速下降;K 、Na 、Ca2 、Mn2 对酶活性有促进作用,Hg2 、Zn2 和Cu2 等对酶有抑制作用。  相似文献   

3.
从一株有机磷农药降解菌施氏假单胞菌Pseudomonas stutzeri YC-YH1中克隆到两个有机磷水解酶基因mpd和ophc2。将两个基因分别连接到表达载体p ET-32a并克隆到大肠杆菌BL21(DE3)中进行表达;利用Ni亲和层析柱纯化甲基对硫磷水解酶(MPH)和有机磷水解酶(OPHC2),并进行了酶学性质分析。MPH最高活力的反应温度为40℃,在p H8-12范围内,酶表现出较高的活力。OPHC2酶的最适反应温度为30℃,在p H 8-12的范围内酶活力较高。两种酶按1?1比例混合组成的混合酶在30-40℃范围内酶活力很高,达95%以上,混合酶在p H范围为8-12内仍具有较高的活力。多种金属离子会对酶的活性产生一定影响,酶对SDS和EDTA都有很高的敏感度,混合酶能够降低对金属离子的敏感性。  相似文献   

4.
PCR扩增假单胞菌WBC-3的甲基对硫磷水解酶基因,插入表面展示质粒pYD1的多克隆位点,构建pYD1-MPH重组质粒。重组质粒转化酿酒酵母EBY100,2%半乳糖诱导甲基对硫磷水解酶表达,并利用免疫荧光检测甲基对硫磷水解酶在酿酒酵母细胞表面的表达展示。研究了表面展示甲基对硫磷水解酶的酶学性质和酵母工程菌对水体中甲基对硫磷的降解效果。结果表明成功构建具有全细胞甲基对硫磷水解酶催化活性的酵母工程菌,经2%半乳糖诱导48 h,表面展示甲基对硫磷水解酶比酶活力为18.2 U/mg细胞干重。表面展示甲基对硫磷水解酶的最适作用pH为9.5,最适作用温度为30℃,在p H4.0-10.5之间和45℃以下稳定性较好,Mn2+、Co2+、Zn2+、Ca2+、Hg2+、K+、Ni2+对表面展示甲基对硫磷水解酶活性有激活作用,Na+、Fe3+、Ag+对展示酶活力有抑制作用。工程菌在1 h内对淡水中20 mg/L的甲基对硫磷的降解率在80%以上。  相似文献   

5.
甲基对硫磷降解菌假单胞菌WBC-3的筛选及其降解性能的研究   总被引:45,自引:0,他引:45  
从农药污染土样中分离出的一株细菌具有彻底降解甲基对硫磷的能力。该菌经生理生化特性分析和16S rDNA序列同源性分析,鉴定为假单胞菌属,命名为Pseudomonas sp.WBC\|3。该菌在pH7~8、温度23℃~30℃范围内均生长良好,对甲基对硫磷的耐受浓度在单纯无机盐培养基中可达到800mg/L,在含有01%葡萄糖的培养基中可达到2000mg/L。该菌能够以甲基对硫磷作为唯一碳源、氮源,将其彻底降解作为生长基质,对于300mg/L甲基对硫磷的降解速度达15mg/L\5h,于22h后达到其稳定生长期。该菌对于多种有机磷农药及部分芳烃类化合物具有生化代谢能力。从该菌的细胞周质组分中纯化出的有机磷水解酶在SDSPAGE胶上显示为分子量约为33.5×103的条带。  相似文献   

6.
从污泥中筛选出1株对聚乳酸(poly—L—lacticacid,PLA)具有降解活力的细菌DSL09,该菌株对PLA的乳化液、粉末及薄膜都具有降解作用。通过形态学、16SrDNA比对及生理生化特性的分析,鉴定该菌株属于芽胞杆菌属(Bacillus sp.)。为提高该菌株对PLA的降解活力,对其进行了紫外诱变,获得了稳定遗传的突变株DSL09-60b,该突变株的PLA降解活性提高至原始菌株的1.5倍。对该突变株产PLA降解酶的发酵条件进行了优化,经测定DSL09-60b在初始培养基pH为8.0、0.5%酪蛋白为诱导物、接种量6%(体积比)的条件下37℃培养54h时发酵液酶活性最高。  相似文献   

7.
【背景】有机磷化合物作为一类广谱杀虫剂,因其用量大、毒性强且不易降解,在自然界中的残留已对环境造成了严重污染。【目的】有机磷降解酶(organophosphohydrolase,OpdA)可降解多种有机磷化合物,探究其被固定到NiCo_2O_4载体上后用于有机磷化合物的降解效果。【方法】构建含组氨酸标签(histidine tag,His-tag)的OpdA,以pET-28a(+)为载体,Escherichia coli Rosetta(DE3)为宿主细胞,在终浓度为1.0 mmol/L的IPTG诱导下表达His-tagged OpdA。采用一步纯化固定化方法,实现固定化酶(OpdA@NiCo_2O_4)的制备。【结果】采用水热处理和煅烧制备了含过渡金属离子的NiCo_2O_4,利用过渡金属离子对酶分子表面组氨酸咪唑基的配位作用,实现了发酵粗酶液中His-taggedOpdA的一步纯化固定化,在优化条件下获得了高稳定性的OpdA@NiCo_2O_4;然后将其用于有机磷化合物的降解,在NaBH_4存在条件下,通过级联反应和降解条件优化,实现了有机磷化合物的高效降解。【结论】该研究不但实现了重组酶的一步分离纯化和固定化,也为有机磷化合物的降解提供了一条安全、高效、环保的新途径。  相似文献   

8.
甲基对硫磷水解酶参与催化相关结构的研究   总被引:1,自引:0,他引:1  
甲基对硫磷水解酶(MPH)是一种新的有机磷水解酶。将完整的甲基对硫磷水解酶基因(mpd)构建入pUC19载体,使得mpd基因以自身的启动子在Escherichia coli DH5α中表达并得到了纯化。金属螯合实验发现MPH的活性不受金属螯合剂1, 10菲NFDA1啉的影响;但用电感耦合等离子发射光谱测定其金属含量显示MPH是金属酶,1mol酶中结合了2mol的Zn2+。为确定参与MPH催化活性的必需氨基酸,用化学修饰剂碳化二亚胺、二乙基焦磷酸酯、磷酸吡哆醛和丁二酮处理MPH,然后检测其残余酶活力,结果表明天冬氨酸、谷氨酸、赖氨酸和精氨酸残基与酶的催化活性无关;而二乙基焦磷酸酯对组氨酸侧链的化学修饰引起酶活性的大幅度的下降,其对酶活性的抑制率达到9.6h-1,说明组氨酸是酶活力所必需的基团。这些结果为进一步研究酶的结构及对酶进行分子改造提供了必要的基础数据。  相似文献   

9.
有机磷降解菌的筛选及其促生特性   总被引:2,自引:0,他引:2  
【目的】从环境中筛选高效有机磷降解菌及研究其促生机制。【方法】利用蒙金娜有机磷培养基筛选有机磷降解菌,用生化实验对其促生特性进行研究,且通过盆栽实验筛选对黄瓜苗有促生作用的高效有机磷降解菌。【结果】从草坪根周筛选到35株有机磷降解菌,选择5株代表性菌进行黄瓜盆栽实验。结果表明G3-6有机磷降解能力最强,溶磷圈直径(HD)与菌落直径(CD)比值为3.28,且对黄瓜苗的促生效果优于其他菌株。与CK相比,G3-6可提高黄瓜苗鲜重71.53%、干重69.78%和株高33.55%;与阳性对照枯草芽孢杆菌F-H-1相比,G3-6可提高黄瓜苗鲜重2.52%、干重21.14%和株高8.27%。相关分析结果表明降解有机磷能力在促进植物生长过程中可能发挥着比其他功能更重要的作用。16S r RNA序列分析初步鉴定G3-6为假单胞菌属。【结论】假单胞菌G3-6除具有较强的有机磷降解、分泌IAA和铁载体能力,对黄瓜苗也有较好的促生作用,是1株潜在的具有广阔市场应用价值的高效促生菌。  相似文献   

10.
目的分离及筛选降解海水养殖区甲胺磷的降解菌,并确定最适的降解条件。方法从被有机磷污染的海水样中分离,以有机磷为唯一碳源反复驯化,分离筛选出1株高效降解甲胺磷的菌株M-1,并对其降解能力和所需条件进行测试。通过离子交换层析、凝胶过滤层析等方法从发酵液中分离纯化了有机磷农药降解酶。结果初步鉴定菌株M-1属于腊样芽胞杆菌。菌株M-1最适生长温度和pH分别为25℃和8.0。Zn^2+(200mg/L)、Cd^2+(50mg/L)与Pb^2+(200mg/L)不影响菌株M-1对甲胺磷的降解作用,但Cu^2+(50mg/L)、Cr^2+(50mg/L)对菌株M-1有毒性作用。SDS-PAGE测得降解菌的有机磷农药降解酶的分子质量约为45kD。结论海洋微生物在甲胺磷污染的海水养殖区自净中起着重要作用。  相似文献   

11.
The mpd gene coding for a novel methyl parathion hydrolase (MPH) was previously reported and its putative open reading frame was also identified. To further confirm its coding region, the intact region encoding MPH was obtained by PCR and expressed in Escherichia coli as a hexa-His C-terminal fusion protein. The fusion protein was purified to homogeneity by metal-affinity chromatography. The enzyme activity and zymogram assay showed that the fusion protein was functional in degrading methyl parathion. The amino terminal sequencing of the purified recombinant MPH indicated that a signal peptide of the first 35 amino acids was cleaved from its precursor to form active MPH. A rat polyclonal antiserum was raised against the purified mature fusion protein. The results of Western blot and zymogram demonstrated that mature MPH in native Plesiomonas sp. strain M6 was also processed from its precursor by cleavage of a putative signal peptide at the amino terminus. The production of active MPH in E. coli was greatly improved after the coding region for the signal peptide was deleted. HPLC gel filtration of the purified mature recombinant MPH revealed that the MPH was a monomer.  相似文献   

12.
米曲霉LY-128的培养物经硫酸铵分级沉淀,Sephadex G-100 凝胶过滤, DEAE-Sephrose CL-6B 和Sephadex G-100层析手段,获得了电泳纯的广谱有机磷农药水解酶。通过SDS-PAGE 和IEF电泳测得其分子量为62 kDa, 等电点为pH 5.2。该酶的最适反应温度为45℃,最适 pH 6.8, 在50℃以下及pH6.0~9.5 范围内活性稳定。Hg2+、Fe3+、对氯高汞苯甲酸、碘乙酸和N-乙基马来酰亚胺对该酶有强烈的抑制作用,而Cu2+、 巯基乙醇、二硫苏糖醇、二硫赤藓糖醇、谷光甘肽和去污剂对酶有不同程度的激活作用。底物的专一性实验表明,该酶不仅可以作用于含P-O键的有机磷农药;而且也能水解含P-S键的有机磷农药。以甲基对硫磷和内吸磷为底物的Km值分别为52祄ol、236 祄ol; Vmax分别为317祄ol min-1 mg-1、179 祄ol min-1 mg-1;Kcat分别为1152 s-1、650 s-1。  相似文献   

13.
Methyl parathion hydrolase (MPH) from a methyl parathion-degrading Burkholderia cepacia indigenous to Thailand was purified to apparent homogeneity by three steps of column chromatography using Resource S, Sephadex G100, and Octyl Sepharose 4FF columns. Its molecular mass was determined to be 35 kDa, and the pI to be 8.5. The recombinant plasmid pGT1, containing the MPH-encoding gene, mpdB, cloned into pGEX-4T-2 was over-expressed in Escherichia coli as GST-MPH fusion protein. The recombinant MPH was purified to homogeneity by a single step, using GSTPrep FF affinity column, with the molecular mass identical to that of the native enzyme. The purified enzyme had the specific activity of about 1,600 unit mg−1 protein and the yield of about 75%, a 39-fold increase in recovery compared to that of the native enzyme. The optimal temperature and pH were 25°C and 9.0, respectively. The MPH was stable, with its activity unchanged for 48 h at 4°C, and reduced to 50% after 5 h and to 45% after 48 h at 25°C. The enzyme activity remained 80–90% after 8–15 h at pH 6–7. Cd2+, Co2+, and Zn2+ ions at the concentration of 1 mM enhanced the activity; while sodium dodecyl sulfate (SDS), dithiothreitol (DTT) and ethylenediaminetetraacetate (EDTA) reduced it. The enzyme also showed cross reactivity with other insecticides within the organophosphate group, and the kinetic parameters for individual substrates were investigated. Since MPH from B. cepacia has wide potential applications in detoxification and detection of organophosphate compounds, this study provides important basis for its future use.  相似文献   

14.
Crystal structure of methyl parathion hydrolase from Pseudomonas sp. WBC-3   总被引:1,自引:0,他引:1  
Methyl parathion hydrolase (MPH, E.C.3.1.8.1), isolated from the soil-dwelling bacterium Pseudomonas sp. WBC-3, is a Zn(II)-containing enzyme that catalyzes the degradation of the organophosphate pesticide methyl parathion. We have determined the structure of MPH from Pseudomonas sp. WBC-3 to 2.4 angstroms resolution. The enzyme is dimeric and each subunit contains a mixed hybrid binuclear zinc center, in which one of the zinc ions is replaced by cadmium. In both subunits, the more solvent-exposed beta-metal ion is substituted for Cd2+ due to high cadmium concentration in the crystallization condition. Both ions are surrounded by ligands in an octahedral arrangement. The ions are separated by 3.5 angstroms and are coordinated by the amino acid residues His147, His149, Asp151, His152, His234 and His302 and a water molecule. Asp255 and a water molecule serve to bridge the zinc ions together. MPH is homologous with other metallo-beta-lactamases but does not show any similarity to phosphotriesterase that can also catalyze the degradation of methyl parathion with lower rate, despite the lack of sequence homology. Trp179, Phe196 and Phe119 form an aromatic cluster at the entrance of the catalytic center. Replacement of these three amino acids by alanine resulted in a significant increase of K(m) and loss of catalytic activity, indicating that the aromatic cluster has an important role to facilitate affinity of enzyme to the methyl parathion substrates.  相似文献   

15.
Wang XX  Chi Z  Ru SG  Chi ZM 《Biodegradation》2012,23(5):763-774
In this study, the mph gene encoding methyl parathion hydrolase from Pseudomonas sp. WBC-3 was expressed in Yarrowia lipolytica and the expressed methyl parathion hydrolase was displayed on cell surface of Y. lipolytica. The activity of methyl parathion hydrolase displayed on the yeast cells of the transformant Z51 was 59.5 U mg?1 of cell dry cells (450.6 U per mL of the culture) in the presence of 5.0 mM of Co2?. The displayed methyl parathion hydrolase had the optimal pH of 9.5 and the optimal temperature of 40 °C, respectively and was stable in the pH range of 4.5-11 and up to 40 °C. The displayed methyl parathion hydrolase was also stimulated by Co2?, Cu2?, Ni2? and Mn2?, and was not affected by Fe2?, Fe3?, Na?, K?, Ca2? and Zn2?, but was inhibited by other cations tested. Under the optimal conditions (OD(600 nm) = 2.6, the substrate concentration = 100 mg L?1 and 40 °C), 90.8 % of methyl parathion was hydrolyzed within 30 min. Under the similar conditions, 98.7, 97.0, 96.5 and 94.4 % of methyl parathion in tap water (pH 9.5), tap water (pH 6.8), seawater (pH 9.5) and natural seawater (pH 8.2) were hydrolyzed, respectively, suggesting that the methyl parathion hydrolase displayed on the yeast cells can effectively remove methyl parathion in water.  相似文献   

16.
对里氏木霉所产β-葡聚糖酶粗酶液通过饱和硫酸铵沉淀、Sephadex G-100 柱层析和DEAE-Sephadex A-50 柱层析进行纯化,比活提高14.60倍,活力回收6.62%。酶特性研究表明,最适温度和pH分别为60℃和5.0,在pH低于5.0时酶较稳定,酶的热稳定性在60℃以下。 Cu~2+、 Mn~2+ 、Mg~2+ 、Fe~3+ 和K+对酶有抑制作用, Zn~2+、Ca~2+、 Co2+和 Fe~2+ 有激活作用。  相似文献   

17.
【目的】从红纹黄单胞菌中分离纯化了胞内α-氨基酸酯水解酶(AEH),并进行了酶学性质研究。【方法】采用乙酸丁酯破碎细胞,并相继用磷酸钙凝胶沉淀、硫酸铵分级沉淀、DEAE Sephadex A-50阴离子交换处理、CM Cellulose 52离子交换层析和Sephadex G-200凝胶过滤层析纯化得到了电泳纯α-氨基酸酯水解酶,并研究了此酶的酶学性质。【结果】SDS-PAGE显示α-氨基酸酯水解酶的亚基分子量为70 kDa。酶促合成头孢克洛的最适pH为6.8,最适温度为42℃,在pH5.0-8.0和35℃以下,酶保持了良好的稳定性。Mn2+和Ca2+对酶活有一定的促进作用,Cu2+、Fe2+及高浓度的丙酮对酶活有强的抑制作用。AEH催化D-苯甘氨酸甲酯、D-对羟基苯甘氨酸甲酯和头孢克洛水解反应的kcat/Km分别为123.7±3.7 mmol-1.s-1.L、2.9±0.6 mmol-1.s-1.L和101.3±2.1 mmol-1.s-1.L,AEH对D-苯甘氨酸甲酯的催化效率最高。AEH催化双底物反应的机制为乒乓机制,催化合成头孢克洛的kcat为547.3±38.2 s-1。【结论】有关红纹黄单胞菌α-氨基酸酯水解酶的酶学性质研究相对较少,本文的研究将为该酶催化合成β-内酰胺类抗生素的工业化应用提供重要参数。  相似文献   

18.
里氏木霉GXC木聚糖酶的研究   总被引:2,自引:0,他引:2  
研究了里氏木霉GXC产木聚糖酶的条件和酶学性质。结果表明,适宜产酶碳源为乳糖、甘露糖、棉子糖、木聚糖和麸皮,氮源为牛肉膏和酵母膏;产酶的最适初始pH为4.0,30℃培养60h。对以麸皮为碳源的培养液进行纯化的酶特性研究表明,木聚糖酶的最适反应温度为50℃,pH为5.5,该酶在pH5.0(7.0和40℃以下相对稳定。Fe3+和Mn2+对木聚糖酶有较大的促进作用,Cu~2+、Fe~2+和Ca~2+ 具有抑制作用。  相似文献   

19.
对里氏木霉所产β-葡聚糖酶粗酶液通过饱和硫酸铵沉淀、Sephadex G-100 柱层析和DEAE-Sephadex A-50 柱层析进行纯化,比活提高14.60倍,活力回收6.62%。酶特性研究表明,最适温度和pH分别为60℃和5.0,在pH低于5.0时酶较稳定,酶的热稳定性在60℃以下。 Cu~2+、 Mn~2+ 、Mg~2+ 、Fe~3+ 和K+对酶有抑制作用, Zn~2+、Ca~2+、 Co2+和 Fe~2+ 有激活作用。  相似文献   

20.
研究了里氏木霉GXC产木聚糖酶的条件和酶学性质。结果表明,适宜产酶碳源为乳糖、甘露糖、棉子糖、木聚糖和麸皮,氮源为牛肉膏和酵母膏;产酶的最适初始pH为4.0,30℃培养60h。对以麸皮为碳源的培养液进行纯化的酶特性研究表明,木聚糖酶的最适反应温度为50℃,pH为5.5,该酶在pH5.0(7.0和40℃以下相对稳定。Fe3+和Mn2+对木聚糖酶有较大的促进作用,Cu~2+、Fe~2+和Ca~2+ 具有抑制作用。  相似文献   

设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号