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1.
日本根霉IFO5318胞外β-葡萄糖苷酶的纯化及部分特性   总被引:1,自引:0,他引:1  
采用硫酸铵沉淀及柱层析等步骤纯化了日本根霉IFO5318的β—葡萄糖苷酶,回收率为22%。该酶分子量约为4.0×10~5,由四个相同大小的亚基组成;最适反应温度55℃,最适反应pH5.5;对热较敏感,但能在较大的pH范围内保持稳定。用对硝基苯基—β-D-吡喃葡糖苷为底物,测得的K_m和V_(max)值分别为0.825mg·ml~(-1)和135.4μmol·min~(-1)·mg~(-1)。该酶对纤维二糖的水解能力最强,SDS、Fe3+、Hg2+等对酶活力有抑制作用。  相似文献   

2.
研究了木霉GXC产 β 葡聚糖酶的条件。结果表明 ,最适产酶碳源为麸皮 ,氮源为硫酸铵 ;产酶的最适条件为 :初始pH为 4 0~ 5 0 ,30℃培养 44h。粗酶液经硫酸铵沉淀、SephadexG 2 5、SephadexG 1 0 0和DEAE SephadexA 50柱层析得到纯β 葡聚糖酶 ,SDS PAGE凝胶电泳显示一条带 ,测得分子量为 35kD。该酶最适反应pH5 0 ,最适反应温度为 60℃ ,在 40℃以下、pH4 0~ 5 0酶活力相对稳定。 5 0mmol L以下的Ca2+、Zn2+和Fe2+,以及 1 0 0mmol L以下的Co2+对酶活力有激活作用 ;而Cu2+和Fe3+具有抑制作用。  相似文献   

3.
乳酸克鲁维酵母β-半乳糖苷酶的分离纯化及性质研究   总被引:6,自引:0,他引:6  
乳酸克鲁维酵母(Kluyveromyces lactis)经高压破壁后的粗提液,其β-半乳糖苷酶(E.C.3.2.1.23)比活力为5.56u/mg。经硫酸铵沉淀,丙酮沉淀,PAPMA—Sepharose 4B柱层析后,乳糖酶比活力达370u/mg,纯化了66.2倍,SDS—PAGE鉴定为一条带,分子量85000Da。酶作用的最适pH在6.4—6.8之间,最适温度40℃,50℃保温15min酶活丧失90%。以邻硝基苯一β一半乳糖苷(ONPG)为底物的米氏常数为2.78mmoI/L。酶的正常水解产物半乳糖对酶活力有一定的抑制作用,核糖强烈抑制酶活力,Fe2+、Zn2+、Cu2+、Ag+、PCMB和NBS都能使酶活丧失。Mg2+、Mn2+和还原剂巯基乙醇的存在能提高酶活力。  相似文献   

4.
青霉NXP25纤维素酶的产生及性质   总被引:4,自引:0,他引:4  
青霉(Penicillium sp.)NXP25在5%玉米穗轴粉,3%(麦夫),0.35%氮源10号和0.3%氯化钙组成的液体培养基(起始pH 5.0)中,10%接种量,29℃,280r/min振荡培养72h。在50℃温度下测定,发酵液内切-1,4-β-葡聚糖酶,外切-1,4-β-葡聚糖酶,β-葡糖苷酶和滤纸酶活力分别为841u/mL,13u/mL,24u/mL和46u/mL。各类型酶最适作用条件分别为pH4.8和60℃、pH5.0和50℃、pH4.  相似文献   

5.
利用KTAUPC-900快速蛋白液相色谱系统(FPLC)从绿色木霉MJ1固体发酵产物中分离纯化出内切β-葡聚糖苷酶。分离纯化后酶的比活力提高了28.6倍,回收率为19.7%。SDS-PAGE后经BIO-RAD凝胶成像系统分析该内切酶的分子量为64.7kD。酶学试验研究表明:该酶的最适反应温度53℃,最适pH为4.2,Lineweaver-Burk法求得动力学参数,KmVmax分别为1.230×10-2相似文献   

6.
通过聚乙二醇6000一磷酸钾缓冲液双相分离,Sephadex G—100凝胶过滤、DEAE-Sephadcx A-50及SE-Se phadex C-50离子交换柱层析等提纯步骤,从海枣曲霉(Aspe rgillutphoenlcis)麦麸培养物抽提液中提纯到凝胶电泳均一的β-葡萄糖苷酶。该酶的最适pH5.0,最适温度60℃,在pH 4.0--7.5之间及55℃以下稳定。Ag+及Hg2+对该酶有强烈的抑制作用。用SDS-凝胶电泳法及梯度凝胶电泳法测得该酶均分子量分别为118000及195000薄层凝胶等电聚焦法测得其等电点为pH 3.95。  相似文献   

7.
枯草芽孢杆菌(Bacillus subtilis)BM9602产生的中性内切β甘露聚糖酶(endoβ1,4Dmannan mannanohydrolase,EC,3.2.1.78)经硫酸铵分级沉淀、DEAE纤维素(DE22)离子交换柱层析,得到电泳纯的样品,提纯了455倍,收率为59%。用SDSPAGE测得该酶的分子量为35kD。用PAGEIEF测得其等电点pI为45。酶反应的最适pH为5.8,最适温度为50℃。该酶在pH60~80,50℃以下稳定。金属离子Hg2+和Ag+对酶活性强烈抑制。酶对槐豆胶、羟丙基瓜胶、田菁胶和魔芋粉的Km值分别为38、149、113和24mg/mL,Vmax值分别为245、865、384和198μmol.min-1mg-1。酶水解甘露聚糖为甘露寡糖(不含单糖)。  相似文献   

8.
从多粘芽孢杆菌 (Bacilluspolymyxa 1794 )中克隆得到 β-葡萄糖苷酶基因bglA。将其构建在大肠杆菌 (Es-cherichiacoli)表达载体pET28a(+)上 ,转化E .coliBL21,获得重组工程菌BL1979。重组表达的 β-葡萄糖苷酶的酶活力达到 247IU mL ,经镍柱纯化后的β-葡萄糖苷酶最适温度为 37℃ ,最适pH值为70 ,该酶经纯化后纯度可达92.7%。用非变性梯度聚丙烯凝胶电泳发现该酶具有多种寡聚体形式 ,经荧光底物活性染色表明这些寡聚体均具有β-葡萄糖苷酶活性.  相似文献   

9.
产β1 ,4D甘露聚糖酶的诺卡氏菌形放线菌( Nocardioform actinomycetes) 菌株NA3540 ,发酵培养72h ,发酵液离心去菌体,上清经硫酸铵沉淀,95 % 乙醇沉淀,CMSephadex A50 柱层析、羟基磷灰石柱层析、DEAE纤维素离子交换及Sephadex G100 分子凝胶过滤柱等步骤,β甘露聚糖酶的比活提高了137 倍,获得凝胶电泳均一的蛋白样品。经SDSPAGE 和凝胶过滤法分别测定β甘露聚糖酶分子量为41kD和40kD,证明该酶为单聚体;用等电聚焦电泳测得其等电点为4-8 ;经氨基酸组成分析,发现蛋白中有较高含量的Gly、Asp、Ala 及Glu 残基。该酶的最适反应温度为75 ℃,在不超过60 ℃时酶活较稳定;酶反应的最适pH 为8-0 ,pH 稳定范围为6-5~11-0 。重金属离子Hg2+ 、Cu2+ 、Pb2+ 、Fe3+ 、Co2+ 、Zn2+ 能强烈抑制该酶活性,而Mn2+ 、Fe2+ 、Ag 对该酶有部分的抑制作用,低浓度的Na 、K 、Li 对该酶基本没有影响。  相似文献   

10.
豆乳凝固酶产生菌Bacillussp .UV 1 0的最适产酶条件 :初始pH6 4,温度 2 6℃ ,培养时间 1 9h ,需要较大的通气量。酶的最适作用pH和温度分别为 5 8和 70℃。在最适条件下酶活力可达 1 84u/mL。pH6 0~ 7 0稳定性较好。 6 0℃下 1h残余酶活 6 0 %。Ca2+,Fe2+,Mg2+,Na+对其有较强的激活作用 ,而Zn2+,Al相似文献   

11.
 通过测定海枣曲霉β-半乳糖苷酶的底物特异性,表明该酶水解对-硝基酚基β-半乳糖苷(PNP-β-gal)的活力最高。该酶水解PNP-β-gal,乳糖和对-硝基酚基β-D-岩藻糖苷(PNP-β-fuc)的相对活力为100,63.1,10.3。不同测定方法的结果均表明,这一PNP-β-fuc水解活性来自β-半乳糖苷酶本身。Hg~(2+)、D-半乳糖和D-半乳糖-r-内酯对该酶有强烈的抑制作用,Ag~+和4mol/l脲也有较强的抑制作用。该酶水解PNP-β-gal和乳糖的Km值分别为1.3及36.2mmol/l,Vmax则分别为478和189μmol.min~(-1).mg~(-1)。Lineweaver-Burk作图法及Dixon作图法均表明D-半乳糖和D-半乳糖酸-γ-内酯对该酶显示竞争性抑制作用,其Ki分别为4和0.9mmol/l。  相似文献   

12.
黑曲霉菊糖酶的纯化及性质   总被引:4,自引:0,他引:4       下载免费PDF全文
黑曲霉(Aspergillus niger)319发酵液经硫酸铵分级沉淀、DEAE-纤维素52离子交换层析和Sephadex G-100分子筛层析,得到了电泳纯的菊糖酶组分。提纯倍数为67,收率为25.5%。菊糖酶的最适pH为5.0,最适温度为60℃。此酶为单亚基蛋白,凝胶过滤法测得分子量为28000,含糖13.9%,用等电聚焦法测得等电点为5.4,该酶对温度有较高的稳定性,对pH的稳定范围较窄。Hg2+、Pb2+和Cu2+对该酶有强烈的抑制作用。此酶对菊糖有较强的底物专一性,产物为果糖,但它也可作用于蔗糖,I/S值为0.348。当以菊糖为底物时,K_m为6.25mmol/L,V_m为67.11 μmol·mg~(-1)·min~(-1)。  相似文献   

13.
嗜热栖热菌HB8耐热α—葡萄糖苷酶的提纯和性质   总被引:4,自引:0,他引:4  
  相似文献   

14.
β-半乳糖苷酶 ( EC3.2 .1 .2 )广泛存在于动植物的组织中 ,如在杏仁、桃子、大豆、咖啡豆等植物 ,蜗牛 ,哺乳动物的肠道中都有 β-半乳糖苷酶 .同样 ,微生物也能产生β-半乳糖苷酶 ,俗称乳糖酶 .乳糖操纵子学说的提出就是建立在对微生物β-半乳糖苷酶研究基础之上的 .在过去的研究中 ,关于微生物、动物来源的乳糖酶报道较多[1] ,而对于植物来源的β-半乳糖苷酶研究报道却相对较少[2 ] .它可能降解多糖中 β-构型半乳糖苷键 ,为种子生长发育提供必要的能量来源 .但目前对β-半乳糖苷酶在植物中确切的生理生化功能尚不清楚 .为了进一步阐明…  相似文献   

15.
重组大肠杆菌热稳定性过氧化氢酶的纯化及性质研究   总被引:12,自引:0,他引:12  
将产热稳定性过氧化氢酶的重组大肠杆菌培养后菌体破碎得到的粗酶液经热处理、硫酸铵分级沉淀、DEAE\|Sephadex A\|50离子交换层析、HiPrep16/10 Phenyl疏水作用层析、Superdex200 HR 10/30凝胶层析提纯后得到电泳纯的酶,比酶活达到15629U/mg。此酶的最适温度为70℃,最适pH70,在60℃保温60min酶活力基本不变,在pH3~8的范围内比较稳定。此酶的Km和Vmax分别为775mmol/L和278mmol\5min\+\{-1\}·mg-1。1mmol/L的Zn2+、Ba2+、Mn2+可使该酶完全失活,KCN、NaN\-3、Na\-2S\-2O\-4、巯基乙醇对酶活力有抑制作用,50mmol/L的EDTA不影响酶活性。  相似文献   

16.
豆壳过氧化物酶的分离纯化及其性质研究   总被引:30,自引:2,他引:28  
从豆壳抽提液经硫酸铵分级沉淀,DEAE-SephadexA-50离子交换层析,ConA-Sepharose4B亲合层析和Bio-GelP-60凝胶过滤,纯化了豆壳过氧化物酶(soybeanhulper-oxidase,ShP).纯化酶的比活力为7077U/mg,在SDS-PAGE上显示出一条蛋白质带.ShP分子量为38000,等电点为3.9;ShP为一含血红素的糖蛋白,含糖量为18.7%,光谱学分析揭示,在406nm处有一典型的Soret带,在510nm和640nm处有特征吸收峰.酶反应的最适pH在4.0附近,最适温度为45℃;在pH2.5~12.0之间较稳定,75℃,保温60min,酶活力残余68%,ShP是一种良好的耐酸碱、耐热过氧化物酶.动力学分析求得ShP的表观Km(愈创木酚)为1.62mmol/L,表现Km(H2O2)为0.34mmol/L.在所测定的化学试剂中,N-3、CN-、Fe3+、Fe2+和Sn2+对酶有较强烈的抑制作用,而重金属离子Ag+、Hg2+、Pb2+、Cu2+、Cr3+以及SDS和EDTA对酶活力无显著影响  相似文献   

17.
Feruloyl esterases act as accessory enzymes for the complete saccharification of plant cell wall hemicelluloses. Although many fungal feruloyl esterases have been purified and characterized, few bacterial phenolic acid esterases have been characterized. This study shows the extracellular production of a feruloyl esterase by the thermophilic anaerobe Clostridium stercorarium when grown on birchwood xylan. The feruloyl esterase was purified 500-fold in successive steps involving ultrafiltration, preparative isoelectric focusing and column chromatography by anion exchange, gel filtration and hydrophobic interaction. The purified enzyme released ferulic, rho-coumaric, caffeic and sinapinic acid from the respective methyl esters. The purified enzyme also released ferulic acid from a de-starched wheat bran preparation. At pH 8.0 and 65 degrees C, the Km and Vmax values for the hydrolysis of methyl ferulate were 0.04 mmol l-l and 131 micromol min-1 mg-1, respectively; the respective values for methyl coumarate were 0.86 mmol l-l and 18 micromol min-1 mg-1. The purified feruloyl esterase had an apparent mass of 33 kDa under denaturing conditions and showed optimum activity at pH 8.0 and 65 degrees C. At a concentration of 5 mmol l-l, the ions Ca2+, Cu2+, Co2+ and Mn2+ reduced the activity by 70-80%.  相似文献   

18.
海枣曲霉β—D—岩藻糖苷酶的研究   总被引:1,自引:1,他引:0  
Although beta-D-fucosidase (beta-D-fucoside fucohydrolase, EC 3.2.1.38) has been isolated from various sources, the identity of this enzyme is still not settled. We have purified a specific beta-D-fucosidase in electrophoretically homogeneous form crude extracts of Aspergillus phoenicis by polyethyleneglycol 6000-phosphate buffer aqueous two-phase separation, and successive chromatography on DEAE-Sephadex A-50, hydroxyapatite and Sephadex G-100 columns. The molecular weight of the enzyme was estimated to be 57000 by SDS-polyacrylamide gel electrophoresis and 50000 to 60000 by gel filtration on Sephadex G-100. The enzyme showed optimum coside were 2.4mmol/L, and 1.28 mumol min-1 the pH range 5.5-6.5 and below 35 degrees C. The Km and the Vmax values for pNP-beta-D-fucoside were 2.4mmol/L, and 1.28 mumol.min-1.mg-1 respectively. The enzyme was strongly inhibited by sulfhydryl group reagents, PCMB-NEM and iodoacetate. It was also inhibited by EDC, DEP and NBS. Thus, -SH, -COOH groups, histidyl and tryptophyl residues were essential for enzyme activity. The purified beta-D-fucosidase showed high specificity toward p-nitrophenyl beta-D-fucoside. The enzyme was inhibited by D-fucose and D-fucono-gamma-lactone, but not by D-galactose, D-galactono-gamma-lactone, D-glucose or D-glucono-gamma-lactone; the latter compounds are specific inhibitors of beta-D-galactosidase and beta-D-glucosidase respectively. Thus, this enzyme is the most strictly specific beta-D-fucosidase when compared with those previously reported.  相似文献   

19.
An enzyme exhibiting alpha-L-rhamnosidase activity was purified by fractionating a culture filtrate of Aspergillus nidulans grown on L-rhamnose as the sole carbon source. The alpha-L-rhamnosidase was shown to be N-glycosylated and had a molecular mass of 102 kDa, of which approximately 7% was contributed by carbohydrate. The enzyme, optimally active at pH 4.5-6 and 60 degrees C, had an isoelectric point of 5. With rho-nitrophenyl-alpha-L-rhamnopyranoside as the substrate it showed Km and Vmax values of 0.27 mmol l-1 and 64.6 U mg-1, respectively. The enzyme was competitively inhibited by L-rhamnose (Ki 0.3 mmol l-1). Ca2+ (2 mmol l-1) stimulated the activity of the enzyme by 14%, whereas Mg2+ (2 mmol l-1) inhibited it by 63%. Substrate specificity studies showed the alpha-L-rhamnosidase to be active both on alpha-1,2 and alpha-1,6 linkages to beta-D-glucosides.  相似文献   

20.
A novel alpha-glucosidase with an apparent subunit mass of 59 +/- 0. 5 kDa was purified from protein extracts of Rhizobium sp. strain USDA 4280, a nodulating strain of black locust (Robinia pseudoacacia L), and characterized. After purification to homogeneity (475-fold; yield, 18%) by ammonium sulfate precipitation, cation-exchange chromatography, hydrophobic chromatography, dye chromatography, and gel filtration, this enzyme had a pI of 4.75 +/- 0.05. The enzyme activity was optimal at pH 6.0 to 6.5 and 35 degrees C. The activity increased in the presence of NH4+ and K+ ions but was inhibited by Cu2+, Ag+, Hg+, and Fe2+ ions and by various phenyl, phenol, and flavonoid derivatives. Native enzyme activity was revealed by native gel electrophoresis and isoelectrofocusing-polyacrylamide gel electrophoresis with fluorescence detection in which 4-methylumbelliferyl alpha-glucoside was the fluorogenic substrate. The enzyme was more active with alpha-glucosides substituted with aromatic aglycones than with oligosaccharides. This alpha-glucosidase exhibited Michaelis-Menten kinetics with 4-methylumbelliferyl alpha-D-glucopyranoside (Km, 0.141 microM; Vmax, 6.79 micromol min-1 mg-1) and with p-nitrophenyl alpha-D-glucopyranoside (Km, 0.037 microM; Vmax, 2.92 micromol min-1 mg-1). Maltose, trehalose, and sucrose were also hydrolyzed by this enzyme.  相似文献   

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