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21.
By combining low nutrient enrichments and molecular methods, a high diversity of new amylase genes was detected in a neutral sulphide-rich hot spring in Iceland. Enrichments based on hot spring water and low concentrations of starch were used to select slow-growing, starch-degrading microorganisms. Six enrichments had in total 17 bacterial types detected by 16S rRNA analysis, mostly related to the Thermus-Deinococcus group, green non-sulphur bacteria, gram positives, and uncultivated new candidate divisions. No Archaea were found. The apparent 16S rRNA species composition of the enrichments was very different from that of the microbial mat in the same hot spring. DNA samples obtained from 4 enrichments and from hot spring biomass were screened by PCR for amylase genes in glycoside-hydrolase family 13. Degenerate primers, based on conserved amino acid sequences from multiplealignments of family 13, enabled the detection of 18 amylase sequence types in the enrichments, including -amylases, -glucosidases, 1,4--glucan branching enzymes, cyclomaltodextrin hydrolases, maltogenic amylases and neopullulanases, and unspecified family 13 glycoside-hydrolases. Only one unique neopullulanase sequence, also found in most of the enrichments, was detected in the hot spring biomass DNA. The results suggest that the enrichment method combined with sequence-based screening is an efficient way to access the silent, i.e. not detectable, gene diversity in natural environments.  相似文献   
22.
Mammalian amylases harbor a flexible, glycine-rich loop 304GHGAGGA(310), which becomes ordered upon oligosaccharide binding and moves in toward the substrate. In order to probe the role of this loop in catalysis, a deletion mutant lacking residues 306-310 (Delta306) was generated. Kinetic studies showed that Delta306 exhibited: (1) a reduction (>200-fold) in the specific activity using starch as a substrate; (2) a reduction in k(cat) for maltopentaose and maltoheptaose as substrates; and (3) a twofold increase in K(m) (maltopentaose as substrate) compared to the wild-type (rHSAmy). More cleavage sites were observed for the mutant than for rHSAmy, suggesting that the mutant exhibits additional productive binding modes. Further insight into its role is obtained from the crystal structures of the two enzymes soaked with acarbose, a transition-state analog. Both enzymes modify acarbose upon binding through hydrolysis, condensation or transglycosylation reactions. Electron density corresponding to six and seven fully occupied subsites in the active site of rHSAmy and Delta306, respectively, were observed. Comparison of the crystal structures showed that: (1) the hydrophobic cover provided by the mobile loop for the subsites at the reducing end of the rHSAmy complex is notably absent in the mutant; (2) minimal changes in the protein-ligand interactions around subsites S1 and S1', where the cleavage would occur; (3) a well-positioned water molecule in the mutant provides a hydrogen bond interaction similar to that provided by the His305 in rHSAmy complex; (4) the active site-bound oligosaccharides exhibit minimal conformational differences between the two enzymes. Collectively, while the kinetic data suggest that the mobile loop may be involved in assisting the catalysis during the transition state, crystallographic data suggest that the loop may play a role in the release of the product(s) from the active site.  相似文献   
23.
Thermomyces lanuginosus was subjected to three cycles of mutagenesis (UV/NTG) and a selection procedure to develop amylase-hyperproducing, catabolite-repression-resistant and partially constitutive strains. One of the selected derepressed mutant strain III51, produced ∼7- and 3-fold higher specific activity of α-amylase (190 U/mg protein) and glucoamylase (105 U/mg protein), respectively, compared to a wild-type parental strain. Further, the effect of production parameters on mutant strain III51 was studied using a Box–Behnken design. The regression models computed showed significantly high R 2 values of 96 and 97% for α-amylase and glucoamylase activities, respectively, indicating that they are appropriate for predicting relationships between corn flour, soybean meal and pH with α-amylase and glucoamylase production. Journal of Industrial Microbiology & Biotechnology (2002) 29, 70–74 doi:10.1038/sj.jim.7000270 Received 05 July 2001/ Accepted in revised form 16 April 2002  相似文献   
24.
The gene previously designated as putative cyclodextrinase from Thermotoga maritima (TMG) was cloned and overexpressed in Escherichia coli. The recombinant TMG was partially purified and its enzymatic characteristics on various substrates were examined. The enzyme hydrolyzes various maltodextrins including maltotriose to maltoheptaose and cyclomaltodextrins (CDs) to mainly glucose and maltose. Although TMG could not degrade pullulan, it rapidly hydrolyzes acarbose, a strong amylase and glucosidase inhibitor, to acarviosine and glucose. Also, TMG initially hydrolyzes p-nitrophenyl-alpha-pentaoside to give maltopentaose and p-nitrophenol, implying that the enzyme specifically cleaves a glucose unit from the reducing end of maltooligosaccharides unlike to other glucosidases. Since its enzymatic activity is negligible if alpha-methylglucoside is present in the reducing end, the type of the residue at the reducing end of the substrate is important for the TMG activity. These results support the fact that TMG is a novel exo-acting glucosidase possessing the characteristics of both CD-/pullulan hydrolyzing enzyme and alpha-glucosidase.  相似文献   
25.
26.
Sardar M  Gupta MN 《Bioseparation》1998,7(3):159-165
Calcium-alginate beads were found to bind a variety of enzymes in a nonspecific fashion. However, alpha amylases from porcine pancreas, Bacillus subtilis (BAN 240L) and wheat germ bound at a significant level and B. subtilis and wheat germ amylases could be eluted with 1M maltose. The wheat germ alpha amylase could be purified 45 fold with 70% recovery. The SDS - PAGE pattern showed significant purification by this single step strategy.  相似文献   
27.
以产酸性淀粉酶菌株Bacillus sp.CN7的基因组DNA为模板,PCR扩增到α淀粉酶成熟肽基因,将该基因插入表达质粒pSE380中,构建重组质粒pSE380-cn7a。将重组质粒导入到Escherichia coli JM109中,IPTG诱导表达。重组酶经Sephacryl S300、Ni-NTA纯化后测定其酶学性质。重组酶CN7A的最适温度为65°C,最适pH为5.5?6.0,对可溶性淀粉的Km值为3.784g/L,最大反应速度为101.2mg/(L·min),该酶的热稳定性不依赖钙离子。  相似文献   
28.
海洋菌W11产中温淀粉酶的酶学特性   总被引:1,自引:0,他引:1  
本研究从威海文登海域筛选获得一株产淀粉酶海洋菌W11,初步鉴定为弧菌,并探讨pH、温度、无机离子对淀粉酶活性和稳定性的影响及该酶底物浓度效应和Km值。结果表明:在pH7.5左右酶活性最高,pH在4.0~7.5范围内体现较强的稳定性。最适酶解温度为55℃,酶液在60℃以下有较好的热稳定性;Ba2+、Mn2+对淀粉酶有激活作用,而Cu2+、Mg2+、Zn2+则抑制淀粉酶活性,表观Km值为0.973mg/mL。海洋菌W11所产的中温淀粉酶保存温度范围较广、适应pH作用的范围广及稳定性较强,将有着广泛的应用潜力。  相似文献   
29.
荞麦属植物淀粉酶和甲酸脱氢酶同功酶研究(英文)   总被引:1,自引:0,他引:1  
以聚丙烯酰胺凝胶电泳方法研究了荞麦属植物8个种42个收集系干种子和发芽种子的淀粉酶和甲酸脱氢酶同功酶。结果表明,荞麦淀粉酶在于种子中缺乏活性,但是在发芽种子中活性很强。在供试材料的发芽种子中共发现23个淀粉酶谱带,其中甜荞和苦荞分别有10条和8条。不同荞麦种间淀粉酶谱带差异很大,但是同种内不同收集系间差异较小。谱带聚类分析表明大野荞和毛野荞分别与甜荞和苦荞较近缘,支持它们分别为甜荞和苦荞祖先种的假说。在干种子和发芽种子中,发现所有荞麦种类均只有1条位置一致的甲酸脱氢酶谱带,暗示该酶在进化中具有高度稳定性。  相似文献   
30.
采用苔酚蓝-生淀粉法从贵州遵义百年磨坊的磨盘下的土样中筛选得到一株具有生淀粉降解能力的丝状真菌,经形态学鉴定和ITS核苷酸序列比对确定该菌为Rhizopus microsporusvar.chinensis。本文首次报道了由Rhizopus microsporus var.chinensis产生的生淀粉酶。通过酶学性质研究发现,该菌株所产生淀粉酶拥有较好的温度耐受性和较宽的pH适用范围,具有一定的工业应用价值。  相似文献   
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