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1.
瑞氏木霉木糖醇脱氢酶基因的分离与鉴定   总被引:2,自引:0,他引:2  
将在木聚糖上生长的瑞氏木霉(Trichoderma reesei)RutC-30的cDNA文库全部质粒转化已携带有毕赤氏酵(Pithia stipitis)木糖还原酶基因的重组酿酒酵母(Saccharomycescerevisiae)菌株H475,在H475中构建了瑞氏木霉的cDNA表达亚文库。在以木糖为唯一碳源的选择性酵母合成培养基上,从该亚文库中筛选到瑞氏木霉木糖醇脱氢酶cDNA基因.该基因片段长为1.3kb。Southern、Norhern印迹杂交分析和蛋白质凝胶电泳结果表明该基因确实来源于瑞氏木霉,所编码蛋白质分子量约为40kDa。携带有毕赤氏酵母木糖还原酶和瑞氏木霉木糖醇脱氢酶基因的重组酵母能够在以木糖为唯一碳源的培养基上生长,并能将90%以上的木糖转化为木糖醇、乙醇和其它副产品。  相似文献   

2.
根据已报道的寄生疫霉(Phytophthora parasitica)parA1基因的序列设计引物,从4株寄生疫霉中国菌株(3株来自烟草,1株来自刺槐)中克隆到此基因并进行了重组表达。序列分析表明4株寄生疫霉parA1基因序列高度保守。对表达载体pET30a(+)双酶切,构建表达Parasiticein蛋白的表达载体pETeli,用CaCl\-2法转化大肠杆菌(Escherichia coli)BL21,通过诱导在大肠杆菌中进行非融合表达,表达产物在烟草上引起过敏性反应。性质测定表明,表达产物有一定的耐热性,并对蛋白酶K敏感。  相似文献   

3.
汉森酵母表达载体的构建和人血管生成抑制素基因的表达   总被引:1,自引:0,他引:1  
汉森酵母(H.polymorpha)是一类能以甲醇为唯一碳源和能源的甲基营养酵母,具有高表达外源基因、易于高密度发酵和产业化的特点。应用PCR技术扩增汉森酵母甲醇氧化酶(Methanol oxidase MOX)基因启动子和转录终止序列,并与汉森酵母Leu基因(Hpleu2)和人血管生成抑制素基因一起重组进大肠杆菌质粒pSP72,构建了整合型表达载体pSMA17,采用LiAc法将pSMA17转入汉森酵母A16(leu),筛选出阳性转化子H.polymorpha A16(pSMA17)。转化子在YPGE培养基中培养至对数生长后期,用甲醇进行诱导表达。ELISA和SDSPAGE分析结果证明人血管生成抑制素已获表达,表达产物分泌至培养基中。Western blot结果显示重组的人血管生成抑制素能与抗人纤溶酶原抗血清特异结合,具有免疫原性。  相似文献   

4.
对苜蓿中华根瘤菌(Sinorhizobium meliloti)042BM noeAB基因的表达调控进行研究。结果发现,葫芦巴碱不能使noeAB的表达水平提高,证明它们的转录不受nodD2的调控。当nodD3和syrM同时存在时,noeAB的表达水平没有明显的变化,表明它们也不受nodD3syrM系统的调控。在FY基本培养基上,毛地黄黄酮的诱导使noeAB基因的表达水平提高16倍,而在不添加该诱导物的TY培养基上,noeAB基因的表达水平也能够提高30倍以上,说明noeAB是受nodD1控制的,但除受毛地黄黄酮诱导外,noeAB还可能受到其他因子的调节。  相似文献   

5.
谷氨酸棒杆菌Corynebacterium glutamicum可以利用乙酸为碳源和能源进行生长. 乙酸代谢中涉及乙酸活化的两个酶为磷酸转乙酰酶PTA和乙酸激酶AK, 它们是由pta-ack操纵子经诱导表达产生的. 采用转座子挽救法, 我们从调控突变株C. glutamicum G25中获得了amrG1amrG2两个目标基因. 经分析鉴定, amrG1基因(NCBI GenBank 接受号为AF532964)可能参与乙酸代谢调控, 编码作用于pta-ack操纵子的一个调控因子. 该调控因子基因序列全长732 bp, 开放阅读框含有243个氨基酸, 分子量约为27 kD. 通过基因定点缺失和过量表达技术, 在谷氨酸棒杆菌野生型菌株中分别构建了amrG1基因缺失菌株和表达菌株, 并研究了它们在含有葡萄糖和/或乙酸不同碳源的基本培养基上生长时产生的PTA和AK酶活性特征. 酶活性测定结果发现其中的amrG1基因缺失菌株和表达菌株存在着与野生型菌株不同的一系列酶学特征, 分析显示: 以野生型菌株为对照, amrG1基因缺失菌株在含有葡萄糖碳源的培养基上生长时表现出较高的PTA和AK酶活性, 并且在葡萄糖和乙酸两种碳源上生长时表现出与乙酸碳源上生长时几乎同样的PTA和AK酶活性; amrG1基因过量表达对葡萄糖碳源上生长产生的PTA和AK酶活性有一定程度的抑制, 即表现出与基因缺失情况相反的调控效应. 根据以上结果分析, amrG1可能编码了作用于pta-ack操纵子的一个阻遏因子或共阻遏因子.  相似文献   

6.
嗜热细菌木糖异构酶基因xylA在酿酒酵母中的高效表达   总被引:22,自引:2,他引:20  
采用PCR技术克隆得到嗜热细菌Clostridium thermohydrosulfuricum木糖异构酶(xylose isomerase XI)基因xylA,将该基因连接于酵母表达载体pMA91的磷酸甘油激酶(PGK)启动子下,得到重组质粒pBX1。通过LiAc完整细胞转化法将重组质粒转移至酿酒酵母(Saccharomyces cerevisiae)H158受体菌中,得到重组酵母转化子H612,酶活测定结果表明,成功地在酿酒酵母中得到木糖异构酶的活性表达。SDSPAGE电泳结果显示出明显的特异性表达产物带,单体分子量为43kD。由酿酒酵母重组子H612产生的木糖异构酶最高酶活条件与其在自然状态下的一致,均为85℃,pH70,在这一条件下酶的比活力为10U/mg蛋白,而在接近酵母最适生长温度的30℃和40℃时,其相对酶活分别下降37%和11%。研究结果显示在酿酒酵母中得到木糖异构酶的活性表达,为进一步在酿酒酵母菌中建立新的木糖代谢途径打下了基础。  相似文献   

7.
α-葡萄糖醛酸酶作为木聚糖降解的限速酶之一,在木聚糖类半纤维素的生物转化中起着重要的作用。海栖热袍菌Thermotoga maritima是一个嗜极端高温的厌氧细菌,其产生的极耐热性酶类具有非常可观的工业应用前景。但热袍菌属Thermotoga的基因在大肠杆菌中的表达一般较困难。研究了T. maritima中的极耐热性α葡萄糖醛酸酶基因在大肠杆菌不同菌株中的表达水平及纯化技术。结果表明,稀有密码子AGA、AGG和AUA限制了该基因在大肠杆菌中的表达,在大肠杆菌BL21-CodonPlus(DE3)RIL可得到高效表达,重组蛋白表达量达20%,比酶活比野生菌株提高5倍;重组蛋白经热处理和金属Ni2+的亲和层析提纯后,达到了电泳纯,提纯倍数为5.1倍,收率为55.1%。对重组菌诱导表达条件的研究表明,营养丰富的TB培养基有助于重组菌的生长, 重组菌生长至OD600为0.7~0.8时添加IPTG诱导5h后重组蛋白的表达量最高。  相似文献   

8.
酿酒酵母(Saccharomyces cerevisiae)LCB1(Long chain base)基因被克隆到酵母诱导表达载体pYES2中,并转入到FY2中,用半乳糖诱导表达。与对照相比,质粒所含LCB1基因的表达,使酵母细胞干重略有下降,而神经酰胺的含量提高为对照的1.9倍。  相似文献   

9.
里氏木霉内切-β-甘露聚糖酶基因在毕赤酵母中的表达   总被引:4,自引:0,他引:4  
采用PCR方法从里氏木霉(Trichoderma reesei)基因组中获得含有两个内含子的内切-β-甘露聚糖酶全长基因,末端重叠延伸PCR去除内含子后,将其插入到巴斯德毕赤酵母(Picher pastoris)表达载体pPIC9K中,位于α-因子信号肽序列的下游,并与之同框,获得重组质粒pM242。重组质粒线性化后用电击法转化毕赤酵母菌株GS115。经大量筛选,获得高效分泌表达内切甘露聚糖酶的毕赤酵母工程菌株Gpmf25。摇瓶发酵结果表明,培养基中甘露聚糖酶的活力可达12.5IU/mL。重组酶最适pH和最适反应温度分别为5.0和80℃,在pH5.0~6.0时酶活稳定,在pH5.4时70℃保温30min酶活维持50%以上。  相似文献   

10.
在槐豆荚提取液中分离到白色针状的槐糖结晶,该糖对拟康氏木霉(Trichoderma pseudo-Koningii Rafai) EA3-867的纤维素酶(C1和Cx)有强力的诱导作用。在纤维素酶活力,尤其是产酶速度上明显超过纤维素的诱导作用。槐糖的诱导作用与添加槐糖的时间和菌种有关,并受甘油强烈阻遏。在以纤维二糖(0.5%)为碳源培养时,木霉EA3-867也能较迅速地形成纤维素酶,但在EA3-867的甘油培养物中加入纤维二糖(5×10-3M)并不能诱导Cx酶。槐糖和纤维素对纤维素酶的诱导作用,无论在诱导胞外和胞内纤维素酶的成分上或从凝肢电泳图上,都十分相似。作者认为木霉EA,一867的纤维素酶形成同时受诱导一阻遏机制调节,并对组成型和诱导型的纤维素酶的作用,以及固体纤维素对纤维素酶可能的诱导机制作了推测。  相似文献   

11.
The main mechanism causing catabolite repression by glucose and other carbon sources transported by the phosphotransferase system (PTS) in Escherichia coli involves dephosphorylation of enzyme IIAGlc as a result of transport and phosphorylation of PTS carbohydrates. Dephosphorylation of enzyme IIAGlc leads to 'inducer exclusion': inhibition of transport of a number of non-PTS carbon sources (e.g. lactose, glycerol), and reduced adenylate cyclase activity. In this paper, we show that the non-PTS carbon source glucose 6-phosphate can also cause inducer exclusion. Glucose 6-phosphate was shown to cause inhibition of transport of lactose and the non-metabolizable lactose analogue methyl-β- D -thiogalactoside (TMG). Inhibition was absent in mutants that lacked enzyme IIAGlc or were insensitive to inducer exclusion because enzyme IIAGlc could not bind to the lactose carrier. Furthermore, we showed that glucose 6-phosphate caused dephosphorylation of enzyme IIAGlc. In a mutant insensitive to enzyme IIAGlc-mediated inducer exclusion, catabolite repression by glucose 6-phosphate in lactose-induced cells was much weaker than that in the wild-type strain, showing that inducer exclusion is the most important mechanism contributing to catabolite repression in lactose-induced cells. We discuss an expanded model of enzyme IIAGlc-mediated catabolite repression which embodies repression by non- PTS carbon sources.  相似文献   

12.
采用双载体系统,将携带有瑞氏木霉木糖醇脱氢酶基因的表达质粒pAJ401-Xdh1转化已带有树干毕赤氏酵母木糖还原酶基因的重组酿酒酵母H475,构建了同时带有毕赤氏酵母木糖还原酶基因和瑞氏木霉木糖醇脱氢酶基因的重组酿酒酵母HX1。研究了重组酿酒酵母HX1对木糖的转化利用情况。  相似文献   

13.
Synthesis of penicillinamidohydrolase (penicillin acylase, EC 3.5.1.11) in Escherichia coli is subjected to the absolute catabolite repression by glucose and partial repression by acetate. Both types of catabolite repression of synthesis of the enzyme in Escherichia coli are substantially influenced by cyclic 3',5'-adenosinemonophosphate (cAMP). Growth diauxie in a mixed medium containing glucose and phenylacetic acid serving as carbon and energy sources is overcome by cAMP. cAMP does not influence the basal rate of the enzyme synthesis (without the inducer). Derepression of synthesis of penicillinamidohydrolase by cAMP in a medium with glucose and inducer (phenylacetic acid) is associated with utilization of the inducer, due probably to derepression of other enzymes responsible for degradation of phenylacetic acid. Lactate can serve as a "catabolically neutral" source of carbon suitable for the maximum production of penicillinamidohydrolase. The gratuitous induction of the enzyme synthesis in a medium with lactate as the carbon and energy source and with phenylacetic acid is not influenced by cAMP; however, cAMP overcomes completely the absolute catabolite repression of the enzyme synthesis by glucose.  相似文献   

14.
大肠杆菌分解代谢产物阻遏效应研究进展   总被引:2,自引:1,他引:1  
马婉晴  章珍  刘悦琳  王华忠 《遗传》2010,32(6):571-576
细菌在多种碳源共存的环境中优先利用一种(通常是葡萄糖)的现象被称为分解代谢产物阻遏效应。国内现有分子生物学及相关课程教材普遍对该效应的机理解释不清甚至给出错误的解释。大肠杆菌葡萄糖-乳糖分解代谢产物阻遏效应产生的根本原因不是胞内葡萄糖的存在, 而是葡萄糖经PTS(Phosphoenolpyruvate: carbohydrate phosphotransferase system)系统向胞内运输同时藕联磷酸化的过程。磷酸向葡萄糖的传递导致PTS关键组分EⅡAGlc去磷酸化形式的积累。该形式的EⅡAGlc可以与质膜上本底表达的乳糖透性酶LacY结合, 阻止诱导物乳糖的吸收。cAMP的影响也是通过激活参与PTS系统的关键基因而加强了诱导物排斥作用。此外, 去磷酸化形式的EⅡBGlc和YeeⅠ对全局性转录阻遏蛋白Mlc活性的抑制也保证了PTS系统关键组分蛋白的基因表达。文章综述了近年来有关大肠杆菌分解代谢产物阻遏效应机理的最新研究进展, 并对相关教材有关这一内容的阐述提出了修改建议。  相似文献   

15.
The symbiotic, nitrogen-fixing bacterium Sinorhizobium meliloti favors succinate and related dicarboxylic acids as carbon sources. As a preferred carbon source, succinate can exert catabolite repression upon genes needed for the utilization of many secondary carbon sources, including the alpha-galactosides raffinose and stachyose. We isolated lacR mutants in a genetic screen designed to find S. meliloti mutants that had abnormal succinate-mediated catabolite repression of the melA-agp genes, which are required for the utilization of raffinose and other alpha-galactosides. The loss of catabolite repression in lacR mutants was seen in cells grown in minimal medium containing succinate and raffinose and grown in succinate and lactose. For succinate and lactose, the loss of catabolite repression could be attributed to the constitutive expression of beta-galactoside utilization genes in lacR mutants. However, the inactivation of lacR did not cause the constitutive expression of alpha-galactoside utilization genes but caused the aberrant expression of these genes only when succinate was present. To explain the loss of diauxie in succinate and raffinose, we propose a model in which lacR mutants overproduce beta-galactoside transporters, thereby overwhelming the inducer exclusion mechanisms of succinate-mediated catabolite repression. Thus, some raffinose could be transported by the overproduced beta-galactoside transporters and cause the induction of alpha-galactoside utilization genes in the presence of both succinate and raffinose. This model is supported by the restoration of diauxie in a lacF lacR double mutant (lacF encodes a beta-galactoside transport protein) grown in medium containing succinate and raffinose. Biochemical support for the idea that succinate-mediated repression operates by preventing inducer accumulation also comes from uptake assays, which showed that cells grown in raffinose and exposed to succinate have a decreased rate of raffinose transport compared to control cells not exposed to succinate.  相似文献   

16.
17.
A glucose kinase (glkA) mutant of Streptomyces coelicolor A3(2) M145 was selected by the ability to grow in the presence of the nonmetabolizable glucose analog 2-deoxyglucose. In this glkA mutant, carbon catabolite repression of glycerol kinase and agarase was relieved on several carbon sources tested, even though most of these carbon sources are not metabolized via glucose kinase. This suggests that catabolite repression is not regulated by the flux through glucose kinase and that the protein itself has a regulatory role in carbon catabolite repression. A 10-fold overproduction of glucose kinase also results in relief of catabolite repression, suggesting that excess glucose kinase can titrate the repressing signal away. This could be achieved directly by competition of excess glucose kinase with its repressing form for binding sites on DNA promoter regions or indirectly by competition for binding of another regulatory protein.  相似文献   

18.
Carbon catabolite repression in bacteria.   总被引:1,自引:0,他引:1  
Carbon catabolite repression (CCR) is a regulatory mechanism by which the expression of genes required for the utilization of secondary sources of carbon is prevented by the presence of a preferred substrate. This enables bacteria to increase their fitness by optimizing growth rates in natural environments providing complex mixtures of nutrients. In most bacteria, the enzymes involved in sugar transport and phosphorylation play an essential role in signal generation leading through different transduction mechanisms to catabolite repression. The actual mechanisms of regulation are substantially different in various bacteria. The mechanism of lactose-glucose diauxie in Escherichia coli has been reinvestigated and was found to be caused mainly by inducer exclusion. In addition, the gene encoding HPr kinase, a key component of CCR in many bacteria, was discovered recently.  相似文献   

19.
Galactose appears to be the physiological inducer of the chromosomal lac operon in Klebsiella aerogenes. Both lactose and galactose are poor inducers in strains having a functional galactose catabolism (gal) operon, but both are excellent inducers in gal mutants. Thus the slow growth of K. aerogenes on lactose reflects the rapid degradation of the inducer. Several pts mutations were characterized and shown to affect both inducer exclusion and permanent catabolite repression. The beta-galactosidase of pts mutants cannot be induced at all by lactose, and pts mutants appear to have a permanent and constitutive inducer exclusion phenotype. In addition, pts mutants show a reduced rate of glucose metabolism, leading to slower growth on glucose and a reduced degree of glucose-mediated permanent catabolite repression. The crr-type pseudorevertants of pts mutations relieve the constitutive inducer exclusion for lac but do not restore the full level of glucose-mediated permanent catabolite repression and only slightly weaken the glucose-mediated inducer exclusion. Except for weakening the glucose-mediated permanent catabolite repression, pts and crr mutations have no effect on expression of the histidine utilization (hut) operons.  相似文献   

20.
Catabolite repression of tryptophanase in Escherichia coli   总被引:16,自引:14,他引:2       下载免费PDF全文
Catabolite repression of tryptophanase was studied in detail under various conditions in several strains of Escherichia coli and was compared with catabolite repression of beta-glactosidase. Induction of tryptophanase and beta-galactosidase in cultures grown with various carbon sources including succinate, glycerol, pyruvate, glucose, gluconate, and arabinose is affected differently by the various carbon sources. The extent of induction does not seem to be related to the growth rate of the culture permitted by the carbon source during the course of the experiment. In cultures grown with glycerol as carbon source, preinduced for beta-galactosidase or tryptophanase and made permeable by ethylenediaminetetraacetic acid (EDTA) treatment, catabolite repression of tryptophanase was not affected markedly by the addition of cAMP (3',5'-cyclic adenosine monophosphate). Catabolite repression by glucose was only partially relieved by the addition of cAMP. In contrast, under the same conditions, cAMP completely relieved catabolite repression of beta-galactosidase by either pyruvate or glucose. Under conditions of limited oxygen, induction of tryptophanase is sensitive to catabolite repression; under the same conditions, beta-galactosidase induction is not sensitive to catabolite repression. Induction of tryptophanase in cells grown with succinate as carbon source is sensitive to catabolite repression by glycerol and pyruvate as well as by glucose. Studies with a glycerol kinaseless mutant indicate that glycerol must be metabolized before it can cause catabolite repression. The EDTA treatment used to make the cells permeable to cAMP was found to affect subsequent growth and induction of either beta-galactosidase or tryptophanase much more adversely in E. coli strain BB than in E. coli strain K-12. Inducation of tryptophanase was reduced by the EDTA treatment significantly more than induction of beta-galactosidase in both strains. Addition of 2.5 x 10(-3)m cAMP appeared partially to reverse the inhibitory effect of the EDTA treatment on enzyme induction but did not restore normal growth.  相似文献   

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