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1.
为了了解影响厌氧发酵产氢细菌Acetanaerobacterium elongatum Z7产氢效率的因素,采用生理学方法对其进行了研究。结果表明:乙醇型发酵菌A. elongatum Z7的最适产氢温度为37℃, 最适产氢的起始pH为8.0。该菌发酵葡萄糖和阿拉伯糖产氢的能力较强,氢气产率分别为1.55mol H2/mol葡萄糖和1.50mol H2/mol阿拉伯糖。酵母粉是菌株Z7生长和产氢所必须的生长因子;pH影响菌株的生长和葡萄糖利用率;氢压则影响电子流的分配,从而改变代谢产物乙酸和乙醇的比例;当产氢菌与甲烷菌共培养以维持发酵体系低的氢压时,可使氢的理论产量提高约4倍;培养基中乙酸钠浓度> 60mmol/L明显抑制产氢。另外,一个只利用蛋白类物质的细菌能够促进菌株Z7对葡萄糖的利用,进而提供氢产量,为生物制氢的工业化生产提供理论参考。  相似文献   

2.
从海枣曲霉(Aspergillus phoenicis)麦麸培养物抽提液中。通过聚乙二醇6000-磷酸钾缓冲液双水相分离.相继用SephadexG-100凝胶过滤、DEAE—Sephadex A-50离子交换柱层析、羟基磷灰石吸附层析、DEAE-Sephadex A-50离子交换层析、SE—Sephadex C-50离子交换层析以及Sephadex G-50柱层析等提纯步骤,提纯到凝胶电泳均一的β-木糖苷酶。该酶的最适pH为3.5,最适温度为65 C.在pH3.5—6.5之间稳定,酶保温30分钟时的半失活温度(t1-2)为68C。酶的分子量勾95 000,等电点为4.4。Hg2-和Ag+对该酶有强烈的抑制作用。在所测定的底物中.Β-术糖苷酶仅对β-木精苷(pNP-β-Xyl)有强水解作用。其Km值为0.63mmol/L.Vmax为410 umol·min 1.Mg-1。D-木糖为β-木糖苷酶的竞争性抑制剂,其K.值为7.5mmol/L。  相似文献   

3.
恶臭假单孢菌(Pseudomonas putida)产生的二氢嘧啶酶催化5-苯海因水解产生N-氨甲酰基-D-苯甘氨酸反应的转化率随使用的酶量增加和底物浓度的降低而提高。酶反应的最适温度为45℃,但在35℃时反应转化率最高,低或高于此温度转化率均降低。表面活性剂Triton X-100和甘油磷酸钾不能使酶从细胞中分泌出来,并使酶活力下降,但加在反应混合物中可提高转化率。使用高浓度缓冲液可提高转化率,若加碱控制反应混合物pH,转化率可进一步提高。氯化铵-氢氧化铵缓冲系统优于磷酸缓冲系统。采用氯化铵-氢氧化铵缓冲系统,用氨水控制pH可使底物转化率达95%以上。  相似文献   

4.
蜜环菌胞外漆酶的合成、纯化及性质研究   总被引:9,自引:0,他引:9  
研究了蜜环菌胞外漆酶合成条件和酶学性质。实验表明,培养基初始pH5.5、培养温度25℃有利于菌株产酶;与麦芽糖、山梨糖和半乳糖相比,纤维二糖和棉子糖作为碳源时漆酶产量更高;有机氮源比无机氮源有利于漆酶合成。泥炭提取液可显著诱导漆酶生成,当其含量为50%时,菌株漆酶最高产量是对照组的7倍。在蜜环菌发酵上清液中检测到3个漆酶同功酶组分,其主要活性(约占75%)组份漆酶A经 (NH4)2SO4沉淀、制备级PAGE电泳和阴离子交换柱层析被分离纯化至电泳均一,SDSPAGE法测得酶亚基分子量59kD,凝胶过滤色谱法测定活性酶分子量58kD。纯化的漆酶A等电点pI为4.0,氧化愈创木酚的最适反应pH为5.6,最适温度为60℃,在60℃和65℃时半衰期分别为45min和36.8min,在pH5.2~7.2范围内稳定性较好。100mmol/L Cl-对该酶有显著抑制作用,1mmol/L SO2-4 对漆酶有激活作用,1mmol/L NaN3可完全抑制酶活性,10 mmol/L EDTA对漆酶活没有明显影响,1mmol/L Cu2+对漆酶有激活作用。以愈创木酚为底物时,测得酶的Km=1.026mmol/L,Vmax=5μmol/(min·mg);以ABTS为底物时,测得其Km=0.22mmol/L,Vmax=69μmol/(min·mg)。  相似文献   

5.
虽然芦β-D-岩藻糖苷酶(EC3.2.1,38)已从多种动植物中分离纯化,但因它们的专一性均不高而难以确证。我们从海枣曲霉(Aspergillus phoenicis)培养物中提取,经过PEG6000-磷酸缓冲液双水相分离,相继用DEAE—sepbadev A-50、羟基磷灰石、Sephadex G-100等柱层析分离,获得了凝腔电泳均一的β-D-岩藻糖苷酶,比话力提高500倍。酶反应的最适条件为40℃和pH 6.0,在35℃以下和pH5.5—6.5稳定。凝胶过滤法测分子量为50000—60000,用SDS—PAGE测出分子量为57000。酶的Km值为2.4mmol/L,Vmax为12.8μmol·min-1·mg-1。金属离子Ag+.Hg2+对酶有强抑制作用,巯基乙醇和牛血清清蛋白以及甘油 和多种糖能提高酶活力。化学修饰结果表明,-SH、-COOH基团和组氨酸,色氨酸残基为酶活力所必需。该酶只能水解pNPβ-D-岩藻糖苷,有严格的底物专一性,并能专一地受D-岩藻培和D-岩藻糖酸-r-内酯所抑制,为迄今为止最专一的β-D-岩藻钠苷酶,堪称该酶的典型代表。  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.
白腐菌Phanerochaeta chrysosporium MIG. 383降解桉木时具有显著的选择性,30天内降解37.23%Klason木素,7.29%综纤维素。该菌株产胞外锰过氧化物酶,并在高碳低氧培养基中显示较高酶活。静置液体培养的优化培养条件是(L-1):10g葡萄糖,2mmol酒石酸铵,10mmol pH4.5醋酸钠缓冲液,1g吐温80,2gK2PO4,0.5g MgSO4·7H2O,0.1g CaCl2·2H2O,lmg VB1,70ml微量元素混合液:最适产酶温度是37℃。上述条件下,该菌接种后静置培养4天,产锰过氧化物酶活达1840U/L,酶作用最适温度是37℃,最适DH是3.5。  相似文献   

8.
镍对荚膜红假单胞菌氢酶和固氮酶活性的促进作用   总被引:1,自引:1,他引:0  
本文报道了过渡金属镍离子对荚膜红假单胞菌(Rhodopseudomonas capsulata)菌株N3氢酶吸氢活性和固氮酶乙炔还原活性的促进作用,当培养基内的镍离子浓度为IμM时,生长菌体的氢酶具有最大的吸氢活性,但镍离子对固氮酶活性的最适浓度为5pjIfo镍离子加入到整体细胞或无细胞提取液中,对氢酶话性无促进作用。镍离子加入到整体细胞中,固氮酶活性也没有被促进。其它一些过渡金属离子,例如Co2+、Cu2+、Zn2+什对氢酶和固氮酶活性均无促进作用。无论有无镍离子存在,螯合试剂。O-phenanthroline 和EDTA 对生长菌体的氢酶和周氮酶的活性均有少量的抑制作用,基于以上试验结果,对Ni2+参与Rps. Capsulata 氢酶蛋白质合成以及有关作用机理进行了讨论。  相似文献   

9.
<正>缓冲液和一般方法 磷酸盐缓冲液为100mM氯化钠,20mM磷酸钠缓冲液,pH7.7。磷酸盐缓冲液(A)为10mM氯化钠,10mM磷酸钠缓冲液,pH6.8。正常血清缓冲液为磷酸盐缓冲液中含1:6(v/v)正常山羊血清,0.1%聚氧乙烯十二烷基醚(Brij 35)。蛋白质浓度以牛IgG作为标准溶液用计算280nm(E280)的消光值求得。  相似文献   

10.
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   

11.
The metabolism of Clostridium butyricum was manipulated at pH 6.5 and in phosphate-limited chemostat culture by changing the overall degree of reduction of the substrate using mixtures of glucose and glycerol. Cultures grown on glucose alone produced only acids (acetate, butyrate, and lactate) and a high level of hydrogen. In contrast, when glycerol was metabolized, 1,3-propanediol became the major product, the specific rate of acid formation decreased, and a low level of hydrogen was observed. Glycerol consumption was associated with the induction of (i) a glycerol dehydrogenase and a dihydroxyacetone kinase feeding glycerol into the central metabolism and (ii) an oxygen-sensitive glycerol dehydratase and an NAD-dependent 1,3-propanediol dehydrogenase involved in propanediol formation. The redirection of the electron flow from hydrogen to NADH formation was associated with a sharp decrease in the in vitro hydrogenase activity and the acetyl coenzyme A (CoA)/free CoA ratio that allows the NADH-ferredoxin oxidoreductase bidirectional enzyme to operate so as to reduce NAD in this culture. The decrease in acetate and butyrate formation was not explained by changes in the concentration of phosphotransacylases and acetate and butyrate kinases but by changes in in vivo substrate concentrations, as reflected by the sharp decrease in the acetyl-CoA/free CoA and butyryl-CoA/free CoA ratios and the sharp increase in the ATP/ADP ratio in the culture grown with glucose and glycerol compared with that in the culture grown with glucose alone. As previously reported for Clostridium acetobutylicum (L. Girbal, I. Vasconcelos, and P. Soucaille, J. Bacteriol. 176:6146-6147, 1994), the transmembrane pH of C. butyricum is inverted (more acidic inside) when the in vivo activity of hydrogenase is decreased (cultures grown on glucose-glycerol mixture). For both cultures, the stoichiometry of the H(+) ATPase was shown to remain constant and equal to 3 protons exported per molecule of ATP consumed.  相似文献   

12.
漆酶在磁性壳聚糖微球上的固定及其酶学性质研究   总被引:5,自引:0,他引:5  
以磁性壳聚糖微球为载体,戊二醛为交联剂,共价结合制备固定化漆酶。探讨了漆酶固定化的影响因素,并对固定化漆酶的性质进行了研究。确定漆酶固定化适宜条件为:50 mg磁性壳聚糖微球,加入10mL 0.8mg/mL 漆酶磷酸盐缓冲液(0.1mol/L,pH 7.0),在4℃固定2h。固定化酶最适pH为3.0, 最适温度分别为10℃和55℃,均比游离酶降低5℃。在pH 3.0,温度37℃时,固定化酶对ABTS的表观米氏常数为171.1μmol/L。与游离酶相比,该固定化漆酶热稳定性明显提高,并具有良好的操作和存储稳定性。  相似文献   

13.
花生根瘤菌类菌体经超声波破碎,TritonX-100溶解,正已烷-硫酸铵处理后,再经DEAE-纤维素和Sephacryl凝胶柱层析等纯化步骤,获得凝胶电泳纯的膜结合态氢酶,比活为71.4μmolH2mg-1Protmin-1,为类菌体吸H2活性的211倍。纯化的氢酶分子量为110kD。经SDS-PAGE后,呈现两个蛋白带,分子量分利为65kD和35kD。纯酶的Ni含量为0.62molNi/mol氢酶。在磷酸缓冲液中其活性的最适pH为6.5。DCIP、亚甲蓝、铁氰化钾、细胞色素C均可作为氢酶的电子受体,其中以DCIP为最适。  相似文献   

14.
浑球红假单胞菌野生型菌株的氢酶表达被有机碳、氮底物所抑制。在光照和黑暗时,氧浓度变化对氢酶的作用不同,但高氧浓度都阻遏氢酶的表达。微量Ni~(2+)能专一性地促进氢酶活性,固氮酶的产氢也可以调节氢酶的表达水平。该野生菌株的GOGAT突变株缺乏固氮酶和氢酶活性,在加入谷氨酰胺合成酶抑制剂MSX后,固氮酶和氢酶以相关联的方式合成出来,固氮酶产生的氢看来诱导了氢酶的合成。然而在固氮酶不表达的情况下,外源氢也可诱导氢酶的合成。  相似文献   

15.
作者以前报道过几种快速生长的固氮蓝藻在某种条件下能好气光放氢,其速度可以达到光合放氧速度的10—15%,但这种活性只有在不积累氢气的流动气相下或在短时间内发生。本文报道用亚硝基胍诱变所得到的Anabaena spp。Strain CA的高光放氢突变种——N9A和18A——的筛选和氢代谢特点。在达生长饱和光照以后,野生型的光放氢活性与光照强度的增加成正相关,而其吸氢活性则与之成负相关,显示高光照强度可能抑制吸氢酶的活性。无论在什么光强下,均测不到两个突变种的吸氢活性,暗示在突变种中,吸氢酶或有关系统受损伤。把细胞固相化在琼脂上,在密闭系统中,高光强下培养50个小时,两个突变种光释放和积累的氢分别为野生型的2倍(N9A)和6倍(18A),后者等于氢占气相(1%CO_2的空气)的1.8%。两个突变种在生长速度、叶绿素含量、乙炔还原活性以及光合放氧方面与野生型无明显不同。当以含50—100nM的镍离子的培养基培养时,野生型的好气净产氢活性完全丢失,其吸氢活性却增加约10倍。培养基中镍离子的存在,对两个突变种的高光放氢活性则毫无影响,而且在此情况下,仍测不出其吸氢活性。实验结果表明,这两个突变种系吸氢酶缺陷型突变种。  相似文献   

16.
Anabaena7120经高温处理后,固氮活性下降,对氧的敏感度增大,增大程度随氧浓度增高而递增。高温胁迫下,分子氢与对正常条件下生长的蓝藻一样可以削弱或消除氧对固氮的伤害,氢的此种行为在光照下和黑暗中表现相似,其良好作用比正常生长蓝藻显著,添加光合抑制剂。CO2或N2时亦如何。有外源蔗糖时,氢的良好作用不表现。经CO或C2H2处理的蓝藻,氢在其固氮活性受氧伤害时的良好作用消失。  相似文献   

17.
A procedure was developed to purify the Streptococcus faecium ATCC 12755 L-alpha-glycerophosphate oxidase. The molecular weight of the purified enzyme was 131,000 and the subunit molecular weight was 72,000. Two moles of FAD were bound/mol of enzyme. Apo-L-alpha-glycerophosphate oxidase displayed physical properties similar to the holoenzyme as judged by electrophoresis in 10% buffer gels at pH 8.5 and by centrifugation in a 5 to 20% linear sucrose gradient. The apoenzyme was completely reactivated by incubation with FAD. L-alpha-Glycerophosphate oxidase was specific for L-alpha-glycerophosphate when compared with several other pohsphorylated glycerol and sugar derivatives. Oxygen was the preferred electron acceptor. At 10 mM DL-alpha-glycerophosphate (below the Km of 26 mM for L-alpha-glycerophosphate), activity was increased from 2.6- to 10-fold by increasing the buffer concentration from 0.01 to 0.1 m. This buffer effect was observed with potassium phosphate and other anionic buffers. In 0.001 m potassium phosphate buffer, pH 7.0, activity was increased by several divalent metal ions, including 10 mM CaCl2 (7.7-fold activation) and 10 mM MgCl, (6.8-fold activation). Fructose 6-phosphate and fructose1-phosphate were inhibitors of the L-alpha-glycerophosphate oxidase.  相似文献   

18.
粘虫中肠α-淀粉酶活性的敏感性研究   总被引:2,自引:1,他引:1  
黄青春  卓军  曹松  钱旭红 《昆虫学报》2006,49(2):189-193
研究了不同酶反应缓冲体系、pH值、氯离子浓度以及噁唑哒嗪对5龄2日粘虫 Pseudaletia separata Walker 中肠α-淀粉酶活性的影响。结果表明,乙酸-乙酸钠缓冲体系(pH 5.8)和磷酸氢二钠-磷酸二氢钠缓冲体系(pH 8.0)有利于增强α-淀粉酶活性,比活力最高分别达到4.49和4.97。在乙酸-乙酸钠缓冲体系(pH 5.8)中,5、10、20、40和80 mmol/L氯离子浓度引起α-淀粉酶活性呈现先减弱后增强的变化规律,而在磷酸氢二钠-磷酸二氢钠缓冲体系(pH 8.0)中仅呈现减弱的趋势。1.4 mmol/L噁唑哒嗪对α-淀粉酶活性的抑制率可达70%,但抑制程度随着反应体系中蛋白含量的增加而逐渐降低。  相似文献   

19.
Methanosarcina barkeri has recently been shown to produce a multisubunit membrane-bound [NiFe] hydrogenase designated Ech (Escherichia coli hydrogenase 3) hydrogenase. In the present study Ech hydrogenase was purified to apparent homogeneity in a high yield. The enzyme preparation obtained only contained the six polypeptides which had previously been shown to be encoded by the ech operon. The purified enzyme was found to contain 0.9 mol of Ni, 11.3 mol of nonheme-iron and 10.8 mol of acid-labile sulfur per mol of enzyme. Using the purified enzyme the kinetic parameters were determined. The enzyme catalyzed the H2 dependent reduction of a M. barkeri 2[4Fe-4S] ferredoxin with a specific activity of 50 U x mg protein-1 at pH 7.0 and exhibited an apparent Km for the ferredoxin of 1 microM. The enzyme also catalyzed hydrogen formation with the reduced ferredoxin as electron donor at a rate of 90 U x mg protein-1 at pH 7.0. The apparent Km for the reduced ferredoxin was 7.5 microM. Reduction or oxidation of the ferredoxin proceeded at similar rates as the reduction or oxidation of oxidized or reduced methylviologen, respectively. The apparent Km for H2 was 5 microM. The kinetic data strongly indicate that the ferredoxin is the physiological electron donor or acceptor of Ech hydrogenase. Ech hydrogenase amounts to about 3% of the total cell protein in acetate-grown, methanol-grown or H2/CO2-grown cells of M. barkeri, as calculated from quantitative Western blot experiments. The function of Ech hydrogenase is ascribed to ferredoxin-linked H2 production coupled to the oxidation of the carbonyl-group of acetyl-CoA to CO2 during growth on acetate, and to ferredoxin-linked H2 uptake coupled to the reduction of CO2 to the redox state of CO during growth on H2/CO2 or methanol.  相似文献   

20.
E. coli K10 was found to grow anaerobically on molecular hydrogen by reducing nitrate, fumarate, and trimethylamine N-oxide when peptone was added to the culture medium. Molar growth yields based on consumed hydrogen estimated from the amounts of reduction products were all 7.8 g cells/mol, suggesting that 1 mol of ATP was produced in the oxidation of 1 mol of hydrogen. Hydrogenase activity measured in terms of hydrogen evolution was several times higher in cells grown on glucose than in cells grown on hydrogen in the presence of fumarate and trimethylamine N-oxide, while hydrogenase activity measured in terms of hydrogen uptake was unchanged in both cases. The ratio of hydrogenase activities measured in terms of hydrogen uptake and evolution was also high in the extract and centrifugal fractions from cells grown in hydrogen. The soluble fraction and trypsin digest of the precipitate at 100,000 X g were subjected to polyacrylamide disc gel electrophoresis and hydrogenase bands were stained by reduction of benzyl viologen with hydrogen and by oxidation of reduced methyl viologen. The resulting patterns suggest that multiple forms of hydrogenase are present and that the amounts of forms functioning in hydrogen evolution were greatly decresed in cells grown on hydrogen in the presence of acceptors.  相似文献   

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