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1.
从黄海深海海底淤泥中筛选出一株产纤维素酶的适冷革兰氏阴性杆菌MB1,克隆和分析了MB1的16S rDNA序列(GenBank接受号:AY551321),经鉴定为交替假单胞菌(Pseudoalt eromonas),命名为Pseudoalteromonas sp.MB1。克隆了该菌适冷内切葡聚糖酶基因celA(GenBank接受号:AY551322),并在大肠杆菌(Escherichia coli)BL21中进行了表达。重组E.coli菌体破碎后,获取上清液,其中融合蛋白GSTCelA浓度约为78.5mg/L。分析了融合酶GSTCelA的性质,其最适反应温度为35℃,最适反应pH值为72,为中性适冷酶。实验结果为交替假单胞菌低温纤维素酶的基础理论和应用研究奠定了基础。  相似文献   

2.
【目的】克隆产碱假单胞菌的脂肪酶基因,实现其在大肠杆菌中异源表达并进行酶学性质研究。【方法】通过基因文库构建和PCR,获得脂肪酶基因,并以pET30a(+)为表达载体、E.coli BL21(DE3)为宿主菌,在大肠杆菌中进行异源表达,表达产物经HisTrapTM亲和层析柱纯化后进行酶学性质研究。【结果】从产碱假单胞菌中克隆得到一个脂肪酶基因,大小为1 575 bp(GenBank登录号为JN674069)。该酶分子量为55 kD,最适底物为p-NPO,最适反应温度和pH分别为35°C、pH 9.0。重组酶经1 mmol/L的Cu2+处理30 min可使酶活提高至156%。在最适反应条件下重组酶的比活力为275 U/mg,Km和Vmax分别为80μmol/L和290 mmol/(min.g protein)。【结论】产碱假单胞菌脂肪酶基因的克隆与表达不仅积累了脂肪酶基因的资源,并为其在手性拆分中的应用奠定基础。  相似文献   

3.
韩伟  林娟  谢勇  徐凡  叶秀云 《微生物学通报》2017,44(5):1074-1080
【目的】克隆交替假单胞菌(Pseudoalteromonas sp.)BYS-2的褐藻胶裂解酶基因,实现其在大肠杆菌细胞中异源表达,对分离纯化的重组酶进行酶学性质研究。【方法】以交替假单胞菌BYS-2菌株基因组DNA为模板,克隆得到褐藻胶裂解酶基因alg738,构建重组基因工程菌BL21(DE3)/p ET22b-alg738,诱导表达,表达产物通过Ni-NTA树脂纯化后进行酶学性质研究。【结果】重组酶的最适反应p H为8.0,在p H 6.0-9.0范围内37°C保温1 h仍能保持84%以上的相对酶活力,具有较好的p H稳定性;最适反应温度为45°C,热稳定性实验显示在37°C下保温60 min其残余酶活力仍达66.6%;在5 mmol/L浓度下,Na~+、Mg~(2+)、Mn~(2+)对该酶具有明显的促进作用,Ni~(2+)、Co~(2+)、Cu~(2+)、Hg~(2+)、Zn~(2+)、EDTA、β-巯基乙醇、SDS具有明显的抑制作用。动力学参数Km、Vmax分别为1.11 g/L和0.011 g/(L·min),底物特异性分析表明该重组酶为偏好聚甘露糖醛酸钠(Poly M)裂解作用的双功能酶。【结论】重组褐藻胶裂解酶具有良好的酶学特性,为褐藻胶裂解酶的开发应用打下基础。  相似文献   

4.
恶臭假单胞菌NA-1菌株的培养和产酶特性与已报道的产酶菌株粘质沙雷氏菌(Serratiamarcescens)IFO12648和荧光假单胞菌(Psudomonasfluorescens)TN5有所不同,主要反映在最适碳源及浓度、最适诱导剂浓度和最适培养温度等方面。最适的转化条件是温度为30℃,pH为7.0,烟酸的浓度为3%。采用初步优化后的条件和流加底物的方式进行4L上罐生产,恶臭假单胞菌NA-1菌株的6-羟基烟酸产率可达到108.39gL。  相似文献   

5.
目的:从常温土壤中筛选冷适应微生物,并进行初步鉴定和产低温酶分析。方法:采集吉首大学校园内土壤样品,通过低温富集培养筛选冷适应微生物;通过形态观察、生理生化特性检测和基于16S rRNA基因序列的系统发育分析,对分离的菌株进行初步鉴定;利用平板筛选法检测其产低温酶特性。结果:分离获得6株耐冷细菌JSBP-1~JSBP-6,初步鉴定其分属假单胞菌属(Pseudomonas)、紫色杆菌属(Janthinobacterium)和节杆菌属(Arthrobacter);在5℃和15℃培养条件下,菌株JSBP-1产蛋白酶能力较强,JSBP-2和JSBP-6产淀粉酶能力较强,JSBP-5仅在5℃条件下有较强的产脂肪酶特性。结论:常温土壤中存在一定数量的冷适应微生物,其中假单胞菌是其优势菌群之一。这类适冷微生物菌群具有潜在的生产低温酶能力。  相似文献   

6.
【背景】连作可引起微生物群落结构失调,导致土壤环境恶化、养分循环不畅、当归[Angelica sinensis (Oliv.) Diels]产量降低,通过现代微生物技术改良土壤、消减连作障碍势在必行。【目的】于大田条件下,研究施用复合菌剂对当归根围土壤酶活、速效养分及产量的影响,明确增产机制,改进增产措施。【方法】利用溶磷圈法检测不同菌株溶磷活性、乙炔还原法检测固氮活性、试剂盒法检测过氧化物酶和硝化能力;复合菌剂T1[荧光假单胞菌(Pseudomonas fluorescens)CBS5、产碱假单胞菌(Pseudomonas alcaligenes) CBS7、嗜冷假单胞菌(Pseudomonas extremaustralis)CBSB、生枝动胶菌(Zoogloea ramigera) CBS4]和T2 (荧光假单胞菌CBS5、产碱假单胞菌CBS7、嗜冷假单胞菌CBSB)及对照CK (无菌马铃薯葡萄糖肉汤培养基)分别处理连作当归,分光光度法测定根围土壤及根中养分循环、转化相关酶活,氮、磷、钾速效养分含量;常规方法测产量;统计软件进行相关数据方差分析和主成分分析。【结果】产碱假单胞菌C...  相似文献   

7.
低温纤维素降解菌的筛选及其酶学性质初步研究   总被引:1,自引:0,他引:1  
从青藏高原冰川雪样恢复出的4株细菌中筛选出1株降解纤维素能力比较高的菌株LHG-C-9。经16SrDNA序列分析,初步鉴定为假单胞菌属。对该菌所产纤维素酶的性质进行了初步研究,其最适作用温度为30℃;对热敏感;最适pH8.0;属碱性温酶。该低温纤维素酶在纺织、造纸、环保、医药和饲料等行业可望有广泛的应用前景。  相似文献   

8.
张宝  王志航  储卫华 《微生物学通报》2019,46(11):2927-2932
【背景】由于抗生素的大量使用,导致细菌耐药性越来越强,寻找新的抗细菌感染药物成为研究热点。【目的】克隆表达群体感应淬灭酶,探究其对铜绿假单胞菌毒力及致病性的影响。【方法】利用PCR技术从产群体感应淬灭酶的芽孢杆菌QSI-1基因组DNA中克隆出aiiA基因,将其克隆到表达载体pET30a并导入大肠杆菌E.coliBL21(DE3)中进行诱导表达,通过镍柱亲和层析获得纯化的N-酰基高丝氨酸内酯酶。用不同浓度的淬灭酶作用于铜绿假单胞菌,检测其对铜绿假单胞菌毒力因子产生以及生物膜形成能力的影响;以秀丽隐杆线虫为模型,考察其对线虫感染铜绿假单胞菌存活率的影响。【结果】克隆表达出群体感应淬灭酶,该酶能显著抑制铜绿假单胞菌毒力因子产生和生物膜的形成,并能降低铜绿假单胞菌对感染线虫的致死率。【结论】群体感应淬灭酶可作为一种能高效抑制细菌致病性的物质,为临床治疗细菌性感染提供新的策略。  相似文献   

9.
金针菇漆酶基因的克隆及其在毕赤酵母中的表达研究   总被引:13,自引:0,他引:13  
综合运用cDNA末端快速扩增 (RapidAmplificationofcDNAEnds ,RACE )和基因组步行等技术克隆到一个金针菇 (Flammulinavelutipes)的漆酶结构基因和其对应的全长cDNA ,经测序和BLAST比对分析表明该基因属于多铜氧化酶基因家族 ,与已发表的漆酶基因 (AF176 2 30 )的同源性最高 ,在氨基酸水平为 72 %。该结构基因命名为gl ccFv,cDNA命名为lccFv ,其序列提交GenBank ,登录号分别为AY4 85 82 6和AY4 5 0 4 0 6。将lccFv的开放阅读框克隆到毕赤酵母表达载体pHBM90 6 ,转化毕赤酵母GS115且实现了分泌表达。将重组毕赤酵母GS115 (pHBM5 6 5 )诱导产酶 ,在培养温度 2 0℃、甲醇流加量为 1 0 % (V V)的情况下 ,其分泌表达的LCCFv的最高酶活为 0 10 70U mL ,最适反应温度为 4 5℃ ,最适反应pH值为 3 9,在最适反应条件下其热稳定性和pH值稳定性均较好  相似文献   

10.
假单胞菌(Psendomonas sp.)生长在一定的培养条件中能产生胞外脂酶。 最适碳源为1.0%淀粉,氮源为1.0%蛋白胨。一些植物油,如橄榄油、糠油、菜油等能诱导脂酶的大量产生,诱导脂酶产生的橄榄油最适浓度为0.5%。无机离子在菌培养过程中对脂酶产率影响很大,K+、Na+、Mg2+、Ca2+等对脂酶产生有促进作用,而Mn2+、Ba2+、Zn2+、Fe3+、Co2+、Cu2+件等则抑制脂酶产生。非离子表面活性剂(tween、span及糖脂)能刺激胞外脂酶的产生。  相似文献   

11.
【目的】嘌呤核苷磷酸化酶(PNP,EC.2.4.2.1)在酶法合成核苷类药物及中间体中具有广泛应用。本文研究的目标是,获得极地嗜冷菌假交替单胞菌Pseudoa lteromonas sp.XM2107嘌呤核苷磷酸化酶编码基因,并对该酶酶学性质进行研究,以考察该酶在核苷类中间体及药物合成中的潜在应用价值。【方法】利用同源序列PCR技术从Pseudoa lteromonas sp.XM2107基因组DNA中扩增出其编码嘌呤核苷磷酸化酶基因,测序获得编码序列。将该基因在大肠杆菌BL21(DE3)中进行重组表达以及金属螯合层析纯化,对其酶学性质进行初步研究。【结果】经过测序获得了该酶编码基因序列,全长702 bp,共编码233个氨基酸,大小为25 kDa,Genbank登录号为GQ475485。酶学性质研究发现,该重组酶最适反应温度为50℃,最适酶促反应pH为7.6(25 mmol/L磷酸盐缓冲液),最适酶促反应底物为肌苷(Km值0.389 mmol/L,37℃),且对底物腺苷和鸟苷也有磷酸解活性,在普通温度下具有较高催化活性和较好热稳定性。【结论】来源于Pseudoa lteromonas sp.XM2107的嘌呤核苷磷酸化酶在普通温度条件下具有较高的催化活性及良好热稳定性性质,在核苷类中间体和药物合成中具有较广泛的应用价值。  相似文献   

12.
The gram-negative antarctic bacterium Pseudoalteromonas sp. 22b, isolated from the alimentary tract of krill Thyssanoessa macrura, synthesizes an intracellular cold-adapted beta-galactosidase. The gene encoding this beta-galactosidase has been PCR amplified, cloned, expressed in Escherichia coli, purified, and characterized. The enzyme is active as a homotetrameric protein, and each monomer consists of 1028 amino acid residues. The enzyme was purified to homogeneity (50% recovery of activity) by using the fast, two-step procedure, including affinity chromatography on PABTG-Sepharose. Enzymatic properties of the recombinant protein are identical to those of native Pseudoalteromonas sp. 22b beta-galactosidase. The enzyme is cold-adapted and at 10 degrees C retains 20% of maximum activity. The purified enzyme displayed maximum activity close to 40 degrees C and at pH of 6.0-8.0. PNPG was its preferred substrate (58% higher activity than against ONPG). The enzyme was particularly thermolabile, losing all activities within 10 min at 50 degrees C. The hydrolysis of lactose in a milk assay revealed that 90% of milk lactose was hydrolyzed during 6 h at 30 degrees C and during 28 h at 15 degrees C. Because of its attributes, the recombinant Pseudoalteromonas sp. 22b beta-galactosidase could be applied at refrigeration temperatures for production of lactose-reduced dairy products.  相似文献   

13.
The nature and location of structural features responsible for the secretion of a cold-adapted alpha-amylase in the Antarctic marine bacterium Pseudoalteromonas haloplanktis TAC125 was studied by deletion mutagenesis of the wild-type enzyme and of chimerical proteins derived from the fusion of the alpha-amylase with a reporter enzyme. Domain C of the psychrophilic alpha-amylase contains secretion features involved in extracellular targeting.  相似文献   

14.
The cloning, overexpression and characterization of a cold-adapted DNA ligase from the Antarctic sea water bacterium Pseudoalteromonas haloplanktis are described. Protein sequence analysis revealed that the cold-adapted Ph DNA ligase shows a significant level of sequence similarity to other NAD+-dependent DNA ligases and contains several previously described sequence motifs. Also, a decreased level of arginine and proline residues in Ph DNA ligase could be involved in the cold-adaptation strategy. Moreover, 3D modelling of the N-terminal domain of Ph DNA ligase clearly indicates that this domain is destabilized compared with its thermophilic homologue. The recombinant Ph DNA ligase was overexpressed in Escherichia coli and purified to homogeneity. Mass spectroscopy experiments indicated that the purified enzyme is mainly in an adenylated form with a molecular mass of 74 593 Da. Ph DNA ligase shows similar overall catalytic properties to other NAD+-dependent DNA ligases but is a cold-adapted enzyme as its catalytic efficiency (kcat/Km) at low and moderate temperatures is higher than that of its mesophilic counterpart E. coli DNA ligase. A kinetic comparison of three enzymes adapted to different temperatures (P. haloplanktis, E. coli and Thermus scotoductus DNA ligases) indicated that an increased kcat is the most important adaptive parameter for enzymatic activity at low temperatures, whereas a decreased Km for the nicked DNA substrate seems to allow T. scotoductus DNA ligase to work efficiently at high temperatures. Besides being useful for investigation of the adaptation of enzymes to extreme temperatures, P. haloplanktis DNA ligase, which is very efficient at low temperatures, offers a novel tool for biotechnology.  相似文献   

15.
The gene encoding a cold-adapted phospholipase A(1) (PLA(1)) from a psychrotrophic, glacier soil bacterium Serratia sp. xjF1 was cloned by two-step PCR (general PCR and TAIL-PCR). The full-length fragment comprised two open reading frames plA and plS. The gene product of plA encoding 320 amino acids with a molecular weight of 33.8kDa was identified as a phospholipase A(1). Its amino acid sequence exhibited the highest homology to PLA(1) of Serratia marcescens (71%). plS encoded a protein of 251 amino acids, which showed no enzymatic activity. The result of plA expression in Escherichia coli indicated that plS might improve the efficient expression of PLA(1) in E. coli. Furthermore, PLA(1) was functionally expressed in Pichia pastoris, yielding 41.8U/mL in a 3.7L fermentor. The purified recombinant phospholipase A(1) (rPLA(1)) had features typical of cold-adapted enzymes with a temperature optimum of 35°C and a maximum activity of 70% at 10°C. The rate of catalysis was optimal at pH 9.0 and the enzyme could be slightly activated by Ca(2+). This is the first report on gene isolation and expression of cold-adapted PLA(1).  相似文献   

16.
The beta-galactosidase from the Antarctic gram-negative bacterium Pseudoalteromonas haloplanktis TAE 79 was purified to homogeneity. The nucleotide sequence and the NH(2)-terminal amino acid sequence of the purified enzyme indicate that the beta-galactosidase subunit is composed of 1,038 amino acids with a calculated M(r) of 118,068. This beta-galactosidase shares structural properties with Escherichia coli beta-galactosidase (comparable subunit mass, 51% amino sequence identity, conservation of amino acid residues involved in catalysis, similar optimal pH value, and requirement for divalent metal ions) but is characterized by a higher catalytic efficiency on synthetic and natural substrates and by a shift of apparent optimum activity toward low temperatures and lower thermal stability. The enzyme also differs by a higher pI (7.8) and by specific thermodynamic activation parameters. P. haloplanktis beta-galactosidase was expressed in E. coli, and the recombinant enzyme displays properties identical to those of the wild-type enzyme. Heat-induced unfolding monitored by intrinsic fluorescence spectroscopy showed lower melting point values for both P. haloplanktis wild-type and recombinant beta-galactosidase compared to the mesophilic enzyme. Assays of lactose hydrolysis in milk demonstrate that P. haloplanktis beta-galactosidase can outperform the current commercial beta-galactosidase from Kluyveromyces marxianus var. lactis, suggesting that the cold-adapted beta-galactosidase could be used to hydrolyze lactose in dairy products processed in refrigerated plants.  相似文献   

17.
The marine, psychrotolerant, rod-shaped and Gram-negative bacterium 22b (the best of 41 beta-galactosidase producers out of 107 Antarctic strains subjected to screening), classified as Pseudoalteromonas sp. based on 16S rRNA gene sequence, isolated from the alimentary tract of Antarctic krill Thyssanoessa macrura, synthesizes an intracellular cold-adapted beta-galactosidase, which efficiently hydrolyzes lactose at 0-20 degrees C, as indicated by its specific activity of 21-67 U mg(-1) of protein (11-35% of maximum activity) in this temperature range, as well as k(cat) of 157 s(-1), and k(cat)/K(m) of 47.5 mM(-1) s(-1) at 20 degrees C. The maximum enzyme synthesis (lactose as a sufficient inducer) was observed at 6 degrees C, thus below the optimum growth temperature of the bacterium (15 degrees C). The enzyme extracted from cells was purified to homogeneity (25% recovery) by using the fast, three-step procedure, including affinity chromatography on PABTG-Sepharose. The enzyme is a tetramer composed of roughly 115 kDa subunits. It is maximally active at 40 degrees C (190 U mg(-1) of protein) and pH 6.0-8.0. PNPG is its preferred substrate (50% higher activity than against ONPG). The Pseudoalteromonas sp. 22b beta-galactosidase is activated by thiol compounds (70% rise in activity in the presence of 10 mM dithiotreitol), some metal ions (K(+), Na(+), Mn(2+)-40% increase, Mg(2+)-15% enhancement), and markedly inactivated by pCMB and heavy metal ions, particularly Cu(2+). Noteworthy, Ca(2+) ions do not affect the enzyme activity, and the homogeneous protein is stable at 4 degrees C for at least 30 days without any stabilizers.  相似文献   

18.
为了在宿主菌Acinetobacter sp.DWC6中构建低温菌蛋白表达载体,以pBR322质粒为基础,去除质粒上β-内酰胺酶基因的启动子片段,取而代之为来源于质粒pJRD215的卡那霉素抗性基因片段,并在pBR322中插入Acinetobacter菌属特异性ori的DNA片段,构建了能在Acinetobacter sp.DWC6和E.coli中正常复制的启动子探针质粒pBAP1。通过在质粒pBAP1中的β-内酰胺酶基因上游随机导入Acinetobacter sp.DWC6基因组片段,通过检测宿主细胞的氨苄青霉素抗性和β-内酰胺酶活性,来筛选强启动子片段,并分析了启动子探针质粒载体的功能及启动子的强度。  相似文献   

19.
3-isopropylmalate dehydrogenase (IPMDH) from the psychrotrophic bacterium Vibrio sp. I5 has been expressed in Escherichia coli and purified. This cold-adapted enzyme is highly homologous with IPMDHs from other organisms, including mesophilic E. coli and thermophilic Thermus thermophilus bacteria. Its molecular properties are similar to these counterparts. Whereas the E. coli and T. thermophilus enzymes are hardly active at room temperature, the Vibrio IPMDH has reasonable activity below room temperature. The thermal stabilities, conformational flexibilities (hydrogen-deuterium exchange), and kinetic parameters of these enzymes were compared. The temperature dependence of the catalytic parameters of the three enzymes show similar but shifted profiles. The Vibrio IPMDH is a much better enzyme at 25 degrees C than its counterparts. With decreasing temperature i.e. with decreasing conformational flexibility, the specific activity reduces, as well; however, in the case of the Vibrio enzyme, the residual activity is still high enough for normal physiological operation of the organism. The cold-adaptation strategy in this case is achieved by creation of an extremely efficient enzyme, which has reduced but still sufficient activity at low temperature.  相似文献   

20.
高效降解纤维素低温真菌的筛选、鉴定及发酵优化   总被引:4,自引:1,他引:3  
【背景】纤维素的生物转化已经成为能源、环境和化工领域的研究热点,但可降解纤维素的低温真菌鲜有报道。【目的】从西藏高海拔的植物根际土壤中筛选具有高效降解纤维素能力的低温真菌,优化其产酶条件,为其工业化应用奠定基础。【方法】利用稀释平板涂布法、刚果红定性及酶活定量分析进行低温降解菌的筛选;根据菌株形态学特征及ITSrDNA序列分析对其进行鉴定;利用单因素实验和响应面优化法优化其产酶条件。【结果】分离筛选到一株高效产纤维素酶的低温真菌NLS-2;鉴定菌株NLS-2为青霉菌属;在低温15°C下,其产纤维素酶的最佳培养条件为稻草粉2.5%,酵母粉0.5%,KH2PO40.5%,发酵时间7d,pH6.5,摇床转速170r/min。【结论】青霉菌NLS-2可在低温条件下生长并具有较强的纤维素酶生产能力,具有良好的应用前景。  相似文献   

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