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1.
酸性α-淀粉酶的分离纯化与酶学性质研究   总被引:1,自引:0,他引:1  
纯化了枯草芽胞杆菌xm-1菌株酸性α-淀粉酶,并对其酶学性质进行了研究。通过硫酸铵沉淀和Sephadex G-75凝胶层析将酸性α-淀粉酶粗酶液纯化了32.5倍,活力回收率为10.0%。酶性质测定结果表明,该酸性α-淀粉酶分子量约为60kD,最适反应温度为45℃、最适作用pH5.0,该酶在pH3.4-6.0下稳定,高温耐受性差。Cu2+、Zn2+、EDTA对酶有不同程度的抑制作用,Ca2+和Mn2+对酶具有较强的激活作用。  相似文献   

2.
从一株低度嗜盐、兼性嗜碱芽孢杆菌Bacillus sp.F26中纯化得到一种碱性过氧化氢酶,并对该酶进行了性质研究。纯化过程经硫酸铵沉淀、阴离子交换层析、凝胶过滤层析及疏水层析四步最终获得电泳纯的目标酶(纯化58.5倍)。该过氧化氢酶的分子量为140kD,由两个大小相同的亚基组成。天然酶分子在408nm处显示特征吸收峰(Soret band)。吡啶血色素光谱显示了酶分子以原卟啉Ⅸ(protoheme Ⅸ)作为辅基。计算获得酶的表观米氏常数为32.5mmol/L。该过氧化氢酶不受连二亚硫酸钠的还原作用影响,但被氰化物、叠氮化物和3.氨基.1,2,4-三唑(单功能过氧化氢酶的专一抑制剂)强烈抑制。以邻联茴香胺、邻苯二胺和二氨基联苯胺作为电子供体测定酶活时,该酶不显示过氧化物酶活性。同时,酶的N-端序列比对结果说明,该过氧化氢酶与单功能过氧化氢酶亚群有一定的相似性,而与双功能过氧化氢酶亚群及猛过氧化氢酶亚群均没有同源性。因此,本文将纯化的碱性过氧化氢酶定性为单功能过氧化氢酶。此外,该酶具有热敏感的特点,且酶活在pH5~9的范围内不受pH影响,此后,活性随着pH的升高而升高,并在pH 11处有明显的酶活高峰。20℃、pH 11条件下的酶活半衰期达49h。在pH 11的高碱条件下表现出最高活力和一定的稳定性,这在已报道的过氧化氢酶中还未见描述。同时,该酶也显示了良好的盐碱稳定性,0.5mol/L NaCl、pH 10.5条件下的酶活半衰期达90h。另一方面,本文所研究的过氧化氢酶是第一个来源于嗜碱微生物的同源二聚体单功能过氧化氢酶,也是第一个来源于天然碱湖的单功能过氧化氢酶,它能部分地反映出细胞抗氧化体系对相应环境的适应情况。  相似文献   

3.
分离得到1株产生淀粉酶的菌株,通过扩增和测定16S rDNA序列并进行比对,发现是Paenibacillus属的细菌。液体摇瓶发酵结束后,其产生的生淀粉酶比酶活达108.5U/mL。通过饱和(NH4)2SO4沉淀、Sephacryl S-300层析的方法对其所产的生淀粉酶进行分离纯化,得到纯化的酶蛋白比酶活为5112.04U/mg,纯化倍数为14.1,相对分子质量约为1.0×105。该酶以木薯生淀粉为底物时,最适pH5.6,最适温度50℃。金属离子Ca2+、Mg2+对该酶具有激活作用,Zn2+、Cu2+、Fe2+、Ni2+、Mn2+、Co2+和EDTA2-对该酶均具有抑制作用。  相似文献   

4.
5.
地衣芽孢杆菌高温α-淀粉酶的组成及光谱学性质   总被引:2,自引:0,他引:2  
a-Ⅲ是地衣芽孢杆菌变异株A.4041高温a-淀粉酶中的主要组分,每分子含10个钙原子,氨基酸分析表明:a-Ⅲ富含丝氨酸(17.9%),天门冬氨酸和谷氨酸(包括酰胺)占20.7%,碱性氨基酸占7.7%。紫外光谱的最大和最小吸收分别在278nm和249nm,荧光光谱的最大激发波长和发射波长分别为282nm和340nm。远紫外CD谱显示222nm和219nm的双负峰及208nm和216nm处鼓起的两个负肩,溶液中a-螺旋构象占388%。  相似文献   

6.
芽孢杆菌WS-3L产生的α-淀粉酶AmyL经过多步纯化,酶的回收率为15.5%,比活提高了345倍.该淀粉酶能够有效水解淀粉生成麦芽寡糖.酶的最适反应温度为45℃,最适反应pH为6.5,在pH 7.0~8.0,40℃以下酶活较稳定;离子Cu2 、NH4 、Ag 、Hg 和EDTA、SDS对酶活力有显著抑制作用,而其他一些常见金属离子如Na 、K 则对酶活影响不大.AmyL对可溶性淀粉、直链淀粉、支链淀粉的Km值和Vmax分别为2.81 mg/mL、8.37 mg/mL、1.80 mg/mL和11.67 μmol/(min·mL)、10.00μmol/(min·mL)、13.33 μmol/(min·mL),表明支链淀粉是该酶的理想水解底物.玉米淀粉对AmyL有很高的吸附率,预示这可以作为酶快速固定的一个简易方法应用到实际生产中.  相似文献   

7.
a-Ⅲ是地衣芽孢杆菌变异株A.4041高温a-淀粉酶中的主要组分,每分子含10个钙原子,氨基酸分析表明:a-Ⅲ富含丝氨酸(17.9%),天门冬氨酸和谷氨酸(包括酰胺)占20.7%,碱性氨基酸占7.7%。紫外光谱的最大和最小吸收分别在278nm和249nm,荧光光谱的最大激发波长和发射波长分别为282nm和340nm。远紫外CD谱显示222nm和219nm的双负峰及208nm和216nm处鼓起的两个负肩,溶液中a-螺旋构象占388%。  相似文献   

8.
嗜碱芽孢杆菌Bacillus sp. N16-5表达载体的构建   总被引:1,自引:0,他引:1  
【目的】构建可以在嗜碱芽孢杆菌Bacillus sp.N16-5中表达外源基因的表达载体。【方法】以枯草芽孢杆菌表达质粒pHCMC04为基本骨架,删除木糖诱导的启动子和木糖阻遏蛋白基因,分别插入枯草芽孢杆菌组成型强启动子P43和嗜碱芽孢杆菌N16-5的组成型启动子P EF,构建表达载体pABN165P43和pABN165P EF;将绿色荧光蛋白基因gfp作为报告基因连接至表达载体得到pABN165P43-gfp和pABN165P EF-gfp,利用原生质体转化法将其转化至Bacillus sp.N16-5,通过荧光显微镜和多功能荧光读板仪检测报告基因的表达情况。【结果】所构建的表达载体pABN165P43-gfp和pABN165P EF-gfp可以在Bacillus sp.N16-5中表达报告基因gfp,荧光定量数据显示,在7.5 h左右开始检测到绿色荧光蛋白的表达,从7.5 h到12 h荧光强度随时间增长迅速并在12 h左右达到最大,最大荧光值在7000左右。【结论】成功构建了2个嗜碱芽孢杆菌Bacillus sp.N16-5表达载体,实现了外源基因在嗜碱芽孢杆菌中的表达。  相似文献   

9.
将已克隆的碱性α-淀粉酶基因信号肽编码序列去除,用PCR的方法加入酶切位点,然后与表达载体pHIS1525连接转化大肠杆菌DH5α,筛选出阳性转化子DH5α-pHIS1525-JH,并提取质粒进一步转化巨大芽孢杆菌YYBm1原生质体,获得基因工程菌YYBm1 -pHIS1525-JH.SDS-PAGE分析表明该基因在巨大芽孢杆菌中得到了有效表达.酶学性质研究表明,该酶的最适温度与pH值分别为60℃与pH8.5,在pH7.0 - 10.5之间具有较好的稳定性,Km值为1.94 mg/mL,酶活力可达2516.5 U.  相似文献   

10.
短小芽孢杆菌碱性蛋白酶BP的纯化和性质   总被引:17,自引:0,他引:17  
短小芽孢杆菌产生的碱性蛋白酶BP经CM—Sephadex-C-50和Sephadex-G75两个柱层析,得到了聚丙烯酰胺凝胶电泳纯的酶组分,比活力从1307μ/mg提高到5538μ/mg.活力回收为21%,酶水解酪蛋白的最适反应温度为50℃,最适pH为9.5,Mn^2+、Ca^2+对酶有激活作用,Hg2+、Ag^+对酶有抑制作用.酶的热稳定性不高,但在Ca^2+保护下,热稳定性明显提高.酶的最适作用底物为酪蛋白,对血红蛋白、蛇毒蛋白、牛血清蛋白、卵蛋白、核糖核酸酶也有水解作用.对酪蛋白的Km为0.62%,V_max为50μg/min.DFP可完全抑制酶活性,PMSF和NBS也严重抑制酶活力,PCMB、_o-PTH和EDTA几乎不抑制酶活力.纯酶的分子量为25000Dal.该酶蛋白含有17种氨基酸,其中甘氨酸(Gly)和丙氨酸(Ala)为主要氨基酸.  相似文献   

11.
Two xylanases, designated XylA and XylB, were purified from the culture supernatant of the alkaliphilic Bacillus sp. strain AR-009. The molecular masses of the two enzymes were estimated to be 23 kDa (XylA) and 48 kDa (XylB) by sodium dodecyl sulfate-polyacrylamide gel electrophoresis. The optimum pHs for activity were 9 for XylA and 9 to 10 for XylB. The temperature optima for the activity of XylA were 60°C at pH 9 and 70°C at pH 8. XylB was optimally active at 75°C at pH 9 and 70°C at pH 8. Both enzymes were stable in a broad pH range and showed good stability when incubated at 60 and 65°C in pH 8 and 9 buffers.  相似文献   

12.
An alkaliphilic, thermophilic Bacillus sp. (NCIM 59) produced extracellular xylose isomerase at pH 10 and 50°C by using xylose or wheat bran as the carbon source. The distribution of xylose isomerase as a function of growth in comparison with distributions of extra- and intracellular marker enzymes such as xylanase and β-galactosidase revealed that xylose isomerase was truly secreted as an extracellular enzyme and was not released because of sporulation or lysis. The enzyme was purified to homogeneity by ammonium sulfate precipitation followed by gel filtration, preparative polyacrylamide gel electrophoresis, and ion-exchange chromatography. The molecular weight of xylose isomerase was estimated to be 160,000 by gel filtration and 50,000 by sodium dodecyl sulfate-polyacrylamide gel electrophoresis, indicating the presence of three subunits. The enzyme is most active at pH 8.0 and with incubation at 85°C for 20 min. Divalent metal ions Mg2+, Co2+, and Mn2+ were required for maximum activity of the enzyme. The Km values for D-xylose and D-glucose at 80°C and pH 7.5 were 6.66 and 142 mM, respectively, while Kcat values were 2.3 × 102 s-1 and 0.5 × 102 s-1, respectively.  相似文献   

13.
An alkaliphilic, thermophilic Bacillus sp. (NCIM 59) produced extracellular xylose isomerase at pH 10 and 50 degrees C by using xylose or wheat bran as the carbon source. The distribution of xylose isomerase as a function of growth in comparison with distributions of extra- and intracellular marker enzymes such as xylanase and beta-galactosidase revealed that xylose isomerase was truly secreted as an extracellular enzyme and was not released because of sporulation or lysis. The enzyme was purified to homogeneity by ammonium sulfate precipitation followed by gel filtration, preparative polyacrylamide gel electrophoresis, and ion-exchange chromatography. The molecular weight of xylose isomerase was estimated to be 160,000 by gel filtration and 50,000 by sodium dodecyl sulfate-polyacrylamide gel electrophoresis, indicating the presence of three subunits. The enzyme is most active at pH 8.0 and with incubation at 85 degrees C for 20 min. Divalent metal ions Mg, Co, and Mn were required for maximum activity of the enzyme. The K(m) values for D-xylose and D-glucose at 80 degrees C and pH 7.5 were 6.66 and 142 mM, respectively, while K(cat) values were 2.3 x 10 s and 0.5 x 10 s, respectively.  相似文献   

14.
An alkaliphilic bacterium, Bacillus sp. strain K-1, produces extracellular xylanolytic enzymes such as xylanases, β-xylosidase, arabinofuranosidase, and acetyl esterase when grown in xylan medium. One of the extracellular xylanases that is stable in an alkaline state was purified to homogeneity by affinity adsorption-desorption on insoluble xylan. The enzyme bound to insoluble xylan but not to crystalline cellulose. The molecular mass of the purified xylan-binding xylanase was estimated to be approximately 23 kDa. The enzyme was stable at alkaline pHs up to 12. The optimum temperature and optimum pH of the enzyme activity were 60°C and 5.5, respectively. Metal ions such as Fe2+, Ca2+, and Mg2+ greatly increased the xylanase activity, whereas Mn2+ strongly inhibited it. We also demonstrated that the enzyme could hydrolyze the raw lignocellulosic substances effectively. The enzymatic products of xylan hydrolysis were a series of short-chain xylooligosaccharides, indicating that the enzyme was an endoxylanase.  相似文献   

15.
An NADP-specific glutamate dehydrogenase [L-glutamate: NADP+ oxidoreductase (deaminating), EC 1.4.1.4] from alkaliphilic Bacillus sp. KSM-635 was purified 5840-fold to homogeneity by a several-step procedure involving Red-Toyopearl affinity chromatography. The native protein, with an isoelectric point of pH 4.87, had a molecular mass of approximately 315 kDa consisting of six identical summits each with a molecular mass of 52 kDa. The pH optima for the aminating and deaminating reactions were 7.5 and 8.5, respectively. The optimum temperature was around 60°C for both. The purified enzyme had a specific activity of 416units/mg protein for the aminating reaction, being over 20-fold greater than that for deaminating reaction, at the respective pH optima and at 30°C. The enzyme was specific for NADPH (Km 44 μM), 2-oxoglutarate (Km 3.13 mM), NADP+ (Km 29 μM), and L-glutamate (Km 6.06 mM). The Km for NH4Cl was 5.96 mM. The enzyme could be stored without appreciable loss of enzyme activity at 5°C for half a year in phosphate buffer (pH 7.0) containing 2 mM 2-mercaptoethanol, although the enzyme activity was abolished within 20 h by freezing at ?20°C.  相似文献   

16.
Lin LL  Hsu WH  Hsu WY  Kan SC  Hu HY 《Antonie van Leeuwenhoek》2005,88(3-4):189-197
Two degenerate primers established from the alignment of highly conserved amino acid sequences of bacterial dihydropyrimidinases (DHPs) were used to amplify a 330-bp gene fragment from the genomic DNA of Bacillus sp. TS-23 and the amplified DNA was successfully used as a probe to clone a dhp gene from the strain. The open reading frame of the gene consisted of 1422 bp and was deduced to contain 472 amino acids with a molecular mass of 52 kDa. The deduced amino acid sequence exhibited greater than 45% identity with that of prokaryotic d-hydantoinases and eukaryotic DHPs. Phylogenetic analysis showed that Bacillus sp. TS-23 DHP is grouped together with Bacillus stearothermophilus d-hydantoinase and related to dihydroorotases and allantoinases from various organisms. His6-tagged DHP was over-expressed in Escherichia coli and purified by immobilized metal affinity chromatography to a specific activity of 3.46 U mg−1 protein. The optimal pH and temperature for the purified enzyme were 8.0 and 60 °C, respectively. The half-life of His6-tagged DHP was 25 days at 50 °C. The enzyme activity was stimulated by Co2+ and Mn2+ ions. His6-tagged DHP was most active toward dihydrouracil followed by hydantoin derivatives. The catalytic efficiencies (kcat/Km) of the enzyme for dihydrouracil and hydantoin were 2.58 and 0.61 s−1 mM−1, respectively.  相似文献   

17.
An alkaliphilic Bacillus sp. strain, 41M-1, isolated from soil produced multiple xylanases extracellularly. One of these xylanases was purified to homogeneity by ammonium sulfate fractionation and anion-exchange chromatography. The moleculr mass of this enzyme (xylanase J) was 36 kDa, and the isoelectric point was pH 5.3. Xylanase J was most active at pH 9.0. The optimum temperature for the activity at pH 9.0 was around 50 degrees C. The enzyme was stable up to 55 degrees C at pH 9.0 for 30 min. Xylanase J was completely inhibited by the Hg2+ion and N-bromosuccinimide. The predominant products of xylan hydrolysate were xylobiose, xylotriose, and higher oligosaccharides, indicating that the enzyme was an endoxylanase. The apparent Km and Vmax values on xylan were 3.3 mg/ml and 1,100 micromol-1 mg-1, respectively. Xylanase J showed high sequence homology with the xylanases from Bacillus pumilus and Clostridium acetobutylicum in the N-terminal region. Xylanase J acted on neither crystalline cellulose nor carboxymethyl cellulose, indicating a possible application of the enzyme in biobleaching processes.  相似文献   

18.
A Blanco  T Vidal  J F Colom    F I Pastor 《Applied microbiology》1995,61(12):4468-4470
Xylanase A from the recently isolated Bacillus sp. strain BP-23 was purified to homogeneity. The enzyme shows a molecular mass of 32 kDa and an isoelectric point of 9.3. Optimum temperature and pH for xylanase activity were 50 degrees C and 5.5 respectively. Xylanase A was completely inhibited by N-bromosuccinimide. The main products of birchwood xylan hydrolysis were xylotetraose and xylobiose. The enzyme was shown to facilitate chemical bleaching of pulp, generating savings of 38% in terms of chlorine dioxide consumption. The amino-terminal sequence of xylanase A has a conserved sequence of five amino acids found in xylanases from family F.  相似文献   

19.
Maleate hydratase, which hydrates maleate to form D-malate, was purified from a crude extract of Arthrobacter sp. strain MCI2612 by DEAE-Toyopearl, Octyl-Sepharose CL-4B, and Ether-5PW column chromatographies. The enzyme was activated by sulfhydryl compounds and ferrous ion. The overall purification was 44.3-fold with a yield of 3.4%. The molecular weight of the enzyme was 90,000 by TSK G3000 SW column chromatography. The maleate hydratase appeared as two bands corresponding to molecular weights of about 58,000 and 28,000 on SDS-polyacrylamide gel electrophoresis. The enzyme had maximum activity at pH 8.5 and 45°C, and was inactivated by chemical agents such as hydroxylamine, p-chloromercuribenzoate, o-phenanthroline, and 2,2′-dipyridyl. The Km for maleate was 3.85 mM.  相似文献   

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