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1.
对黑曲霉(Aspergillus niger)高产菌株T21和原始菌株3.795糖化酶的基因表达从菌体生长、酶形成动力学、glaA基因拷贝数、糖化酶mRNA含量及其稳定性等多个方面进行了分析和比较。T21和3.795糖化酶的大量产生均自菌体生长的静止期开始。培养72h后,两者的菌体浓度相同,但T2l产生的糖化酶量为3.795的10~17倍,说明糖化酶产量的差异不是因生物量或酶起始合成期不同引起的,而是由于细胞内酶表达量不同引起的。Northern杂交显示T21总RNA中糖化酶mRNA含量为3.795的4.3~4.4倍.两菌株glaA基因拷贝数及糖化酶mRNA的稳定性分析结果排除了这两个因素的影响,因此T21糖化酶mRNA含量的增加主要是glaA基因转录水平提高的结果。T21与3.795之间糖化酶水平差异(10~17倍)与糖化酶mRNA水平差异(4.3~4.4倍)的不一致性,提示T21和3.795之间除转录水平外可能还存在着翻译水平上的差异(2~4倍)。此外,T21和3.795均存在着对糖化酶基因表达的碳源调控机制,根据两者在淀粉、麦芽糖和葡萄糖培养条件下所产生的mRNA比均为4:3:2,可以认为,这种调控作用发生在转录水平上,并且具有相同的调控方式。  相似文献   

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对黑曲霉高产菌株T21和原始菌株3.795糖化酶的基因表达从菌体生长、酶形成动力学、glaA基因拷贝数、糖化酶mRNA含量及其稳定性等多个方面进行了分析和比较。T21和3.795糖化酶的大量产生均自菌体生长的静止期开始。培养72h捂得的菌体浓度相同,但T21产生的糖化酶量为3.795的10 ̄17倍,说明糖化酶产量的差异不是因生物量或酶起始合成期不同引起的,而是由于细胞内酶表达量不同引起的。Nort  相似文献   

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携多拷贝glaA的重组黑曲霉过量合成糖化酶的研究   总被引:4,自引:0,他引:4  
以工业生产菌株黑曲霉CICIMF0410基因组DNA为模板,扩增出糖化酶glaA基因,测序并进行表达研究。GlaA基因的核苷酸序列长为2167bp,包含4个内含子。氨基酸序列比对表明此黑曲霉糖化酶与其他曲霉属来源的糖化酶有很高的同源性。将glaA基因克隆到pBC-Hygro载体中,构建重组质粒pBC-Hygro-glaA并转化A.nigerF0410。携多拷贝glaA的转化子用150μg/mL潮霉素抗性筛选并通过荧光实时定量PCR鉴定。结果表明,在染色体整合2~3倍糖化酶基因对糖化酶的过量合成是适宜的,有助于提高糖化酶活力。对转化子进行摇瓶发酵研究,发酵终止时转化子GB0506的糖化酶活力比出发菌株F0410提高了17.5%。因此,增加黑曲霉染色体糖化酶基因的拷贝数可以显著提高糖化酶活力。  相似文献   

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Y Hata  K Tsuchiya  K Kitamoto  K Gomi  C Kumagai  G Tamura  S Hara 《Gene》1991,108(1):145-150
The glucoamylase-encoding gene (glaA) from Aspergillus oryzae was cloned using its cDNA as a probe, which had been isolated previously. From comparison of nucleotide (nt) sequences of genomic clones with its cDNA, the glaA gene was found to contain four short putative introns, 45-56 nt in length. The A. oryzae glaA gene shared 62% homology at the nt level with the A. niger glaA gene with the four introns located at the same position. The 5'-flanking region contained a TATA box at nt-72 from the start codon, and two putative CAAT sequences at nt-87 and -331. Genomic Southern analysis and physical mapping showed that the glaA gene is located on the smallest chromosome (3.4 Mb) of six separated bands of chromosomes. Clones containing the glaA gene, when re-introduced intro A. oryzae, resulted in a three- to eightfold increase in glucoamylase activity.  相似文献   

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为了提高糖化酶的耐热性能,降低淀粉糖化发酵工艺的生产成本,构建了同源整合载体pEasy-glaAdir以及pEasyssg,将黑曲霉(Aspergillus niger)的糖化酶基因(glaA)灭活,并将硫磺矿硫化叶菌(Sulfolobus solfataricus)的嗜热糖化酶基因(ssg)插入到黑曲霉基因组中,筛选得到表达嗜热糖化酶的重组黑曲霉工程菌(A.nigerWW1)。重组菌的发酵结果显示,嗜热糖化酶在黑曲霉中得到了分泌表达,发酵液酶活达到3 030 U/mL。重组嗜热糖化酶的最适反应温度为90℃,最适pH为6.0,该酶具有较高的热稳定性,在80℃时的半衰期在60 min以上,具有良好的工业应用前景。  相似文献   

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黑曲霉T21是由黑曲霉3.795经诱变育种获得的糖化酶高产菌株,为阐明其高产的分子机制,由黑曲霉3.795克隆了糖化酶结构基因及其5′旁侧序列,并与黑曲霉T21的相应序列进行了比较.由黑曲霉3.795菌丝体分离染色体DNA,Southern杂交分析表明,糖化酶结构基因位于~2.5kb的EcoRⅠ-EcoRⅤ染色体DNA片段上,在此EcoRⅠ位点上游约1.0kb处有一SalⅠ位点.为构建糖化酶结构基因及其5′旁侧序列的基因组文库,该染色体DNA分别用EcoRⅠ+EcoRⅤ和EcoR+SalⅠ消化,琼脂糖凝胶电泳分离并回收长度在1.0kb左右和2.5kb左右的DNA片段,分别与pUC19载体连接后转化入E.coliDH5.用原位杂交方法筛选到了携带糖化酶基因编码区及其1505bp5′旁侧序列的阳性克隆.对克隆片段的DNA序列进行了测定并与黑曲霉T21的相应序列进行了比较,结果表明,在糖化酶基因编码区及其150bp3′非编码区内,未发现碱基差异,但在-340~-1505的5′上游区内发生了9个位置的碱基变化,包括缺失、插入和替换.这些结果表明,黑曲霉T21与3.795的糖化酶产量的差异与其结构基因无关,但可能与其  相似文献   

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The cDNA gene encoding porcine pancreatic prophospholipase A2 (proPLA2) was cloned into an Aspergillus niger expression vector downstream of the glucoamylase (glaA) gene promoter region. When this construct was transformed into A. niger, no detectable PLA2 was produced. Evidence was obtained showing that the PLA2 gene was transcribed and that PLA2 is extremely susceptible to both intracellular and extracellular proteases of A. niger, thus indicating that translation products would be rapidly degraded. By fusing the proPLA2-encoding sequence to the entire glaA gene, secreted yields of PLA2 up to 10 micrograms/ml were obtained from a transformed protease-deficient strain of A. niger. PLA2 was secreted in young cultures as a fusion protein, but in older cultures, it was processed from the glucoamylase carrier protein. Secreted PLA2 was shown to be enzymatically active and to have the correct N-terminal amino acid (aa) sequence, although another form of processed PLA2 was also produced. This form included two aa of the proregion from PLA2. The potential for improving yields of secreted heterologous proteins from A. niger still further is discussed.  相似文献   

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构建了黑曲霉糖化酶、木聚糖酶基因双表达的酵母YIp型载体pNEW4,通过与G418抗性质粒共转化,将糖化酶和木聚糖酶基因表达元件整合到多倍体酒精生产用酵母S. cerevisiae2.346染色体上,获得了整合型分泌表达这两种酶的工业酿酒酵母工程菌株GX11,研究了重组糖化酶和木聚糖酶在酵母工程菌中的表达及性质。  相似文献   

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以PCR合成的糖化酶高产菌株黑曲霉(Asp. Niger)T21糖化酶基因5’近端非编码区588bp(EcoRI-BamHI)的序列为探针,从T21染色体DNA中克隆到近2.0kb的糖化酶基因5’端非编码区序列,并以此序列为探针从糖化酶低产菌株黑曲霉3.795(T21的诱变出发株)的染色体DNA中克隆到1.5kb的糖化酶基因5’端非编码区序列。该二序列的分析测定结果表明,其结构特征与文献报道的黑曲霉糖化酶基因5’端非编码区的基本一致,被称为“核心启动子”(Core promoter)的TATAAAT框及GCAAT框,分别在翻译起始点的-109bp及-178bp处。此外,在曲霉amdS,amyB基因中已发现有调控功能的CCAAT序列存在于-449bp和-799bp处。高产和低产菌株糖化酶基因5’端非编码区序列的分析比较结果表明,有9个部位的碱基发生了变化。此实验结果为进一步研究黑曲霉糖化酶基因在转录水平上的调控规律打下了基础。  相似文献   

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An in-depth characterization of the Aspergillus niger glucoamylase (glaA) promoter performance was carried out on defined medium employing multi-well high-throughput screening as well as controlled batch and fed-batch bioreactor culture techniques with GFP as a fluorescent reporter protein. A variety of metabolizable carbon substrates and non-metabolizable analogs were screened with regard to their effect on the glaA expression system. The results clearly demonstrate that only starch and its hydrolytic products, including glucose, act as inducers. However, induction of the glaA expression system through the monosaccharide glucose is significantly lower compared to starch and the higher molecular weight starch degradation products. All other 26 carbon substrates tested do not induce, or even, as in the case of the easily metabolizable monosaccharide xylose, repress glaA-promoter controlled gene expression in the presence of the inducing disaccharide maltose with an increase of repression strength by increasing xylose concentrations. The complex effect of glucose on glaA-promoter controlled expression was also analyzed using non-metabolizable glucose analogs, namely 5-thio-glucose and 2-deoxyglucose, which were identified as novel and potent inducers of the glaA expression system. The results show that the induction strength depends on the inducer concentration with a maximum at defined concentrations and lower induction or even repression at concentrations above. Moreover, controlled fed-batch cultivations using a high maltose feed rate with concomitant extracellular accumulation of glucose resulted in lower levels of the reporter protein compared to cultures with a low-maltose feed rate without extracellular glucose accumulation, thus supporting the conclusion that increasing the glucose concentration beyond a critical point reduces the induction strength or may even cause repression. This way, the speed of polymer hydrolysis, glucose uptake and intracellular breakdown can be fine-tuned for optimal fungal growth and the metabolic burden for glucoamylase synthesis can be limited adequately in response to nutrient availability.  相似文献   

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黑曲霉纤维素酶三类不同酶系中,纤维二糖水解酶基因表达处于很低水平,导致纤维素酶总体活力水平不高。为构建黑曲霉纤维素酶高产菌株,采用基因工程方法,全基因合成拼接黑曲霉高表达葡萄糖淀粉酶基因glaA的强启动子片段与纤维二糖水解酶基因cbhB编码区片段,然后将杂合基因克隆到二元载体pCAMBIA1301上,重组质粒通过农杆菌介导转化黑曲霉分生孢子,携带杂合基因的T-DNA片段插入到黑曲霉转化子的染色体上,共筛选到48个具有潮霉素抗性的转化子。纤维素酶活力水平测定结果显示,转化子A3-9的CMC酶活力最高,为野生型黑曲霉菌株的1.31倍;转化子B1-7与A3-6的滤纸酶活力最高,为野生型黑曲霉菌株2.51倍。另外,初步分析了杂合基因在黑曲霉中的表达所需的诱导条件。  相似文献   

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Aspergillus niger B1, a recombinant strain carrying 20 extra copies of the native glucoamylase gene, was grown in glucose-limited chemostat cultures supplemented with various organic nitrogen sources (dilution rate 0.12 +/- 0.01 h(-1), pH 5.4). In cultures supplemented with l-alanine, l-methionine, casamino acids, or peptone, specific glucoamylase (GAM) production rapidly decreased to less than 20% of the initial level. Reducing the pH of the culture to 4.0 resulted in stable GAM production for up to 400 h. Morphological mutants (a light brown and a dark brown mutant) appeared in each fermentation and generally displaced B1. Light brown mutants had higher selection coefficients relative to B1 than dark brown mutants and became the dominant strain in all fermentations except those maintained at pH 4.0. Several mutants isolated from these cultures had reduced ability to produce GAM in batch culture, although few had lost copies of the glaA gene. Some mutants had methylated DNA.  相似文献   

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