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1.
目的:利用发根农杆菌ACCC10060介导丹参牻牛儿基牻牛儿基焦磷酸合酶1基因(SmGGPS1)RNA干扰(RNAi)载体转化丹参叶片,生成SmGGPS1的RNAi转基因毛状根。方法:根据已克隆到的SmGGPS1特异区域设计并合成2段RNAi序列,分别插入RNAi双元载体pK7GWIWG2D(Ⅱ)中,构建2个含卡那霉素(Kan)和绿色荧光蛋白(GFP)双筛选标记的植物表达载体pK7GWIWG2D(Ⅱ)-SmGGPS1-RNAi2和pK7GWIWG2D(Ⅱ)-SmGGPS1-RNAi3;利用带有上述2个RNAi载体的发根农杆菌ACCC10060侵染丹参叶片,诱导生成转基因毛状根;通过Kan抗性筛选和GFP绿色荧光观察统计转化率。结果:分别得到SmGGPS1-RNAi2和SmGGPS1-RNAi3转基因毛状根301根和399根,平均转化率为60.34%。结论:首次建立了发根农杆菌介导的外源基因转化丹参的体系。  相似文献   

2.
代谢工程酵母菌合成紫杉烯的研究   总被引:4,自引:0,他引:4  
紫杉烯是紫杉醇生物合成的重要中间体,为在酿酒酵母(Saccharomyces cerevisiae)中建立一个生物合成紫杉烯的代谢途径,克隆了酵母的羟甲基戊二酰CoA(3-hydroxy-3-methylglutarylcoenzyme A,HMG-CoA)还原酶基因和=牛儿基=牛儿基二磷酸(geranylgeranyl diphosphate,GGDP)合酶基因,并构建了其融合表达载体pGBT9/HG;同时构建了包含紫杉烯合酶基因的表达载体pADH/TS;将这两个表达载体共转化酵母细胞,通过GC-MS分析检测工程酵母的代谢产物,结果表明获得的工程酵母能够合成紫杉烯,即在酵母细胞中建立了一个合成紫杉烯的代谢途径。  相似文献   

3.
牻牛儿基牻牛儿基焦磷酸(GGPP)在真核生物中主要参与对包括Rho/Rac,Rap和Rab家族在内的多种蛋白质的翻译后修饰及细胞凋亡的调控.牻牛儿基牻牛儿基焦磷酸合成酶(GGPPS)是合成GGPP的关键酶,它催化法呢基焦磷酸与异戊烯焦磷酸的缩合反应而产生GGPP.报道了从人睾丸cDNA文库中克隆到一个与果蝇GGPPS cDNA高度同源的基因转录本,它的序列长1466 bp,其中nt 239~1138是一个完整的可读框,编码一个由300个氨基酸组成的35 ku蛋白质.该推导蛋白质的氨基酸序列与果蝇GGPPS的一致性和相似性分别达到了57.5%和75%,并且含有异戊二烯转移酶中保守的5个特征性结构域.Northern杂交结果显示人GGPPS基因在心脏中表达最高,在脾、睾丸、脑、胎盘、肺、肝、骨胳肌、肾、胰腺组织中为中度表达,而在其他组织中未见有明显的杂交带.采用辐射杂种细胞系定位技术,发现GGPPS位于人染色体lq43区.由于此前有遗传连锁资料证实该区域存在一个前列腺癌的易感位点,并且另有研究发现GGPP的结构类似物可抑制PC-3前列腺癌细胞系中p21rap蛋白的牻牛儿基牻牛儿基化,从而提示GGPPS有可能是与该病相关的候选基因之一.  相似文献   

4.
紫杉烯合酶是一种二萜环化酶,催化牛儿基牛儿基焦磷酸形成紫杉醇生物合成过程中的中间体紫杉烯.利用PCR扩增同源探针筛选cDNA文库,克隆了一个编码中国红豆杉(Taxus chinensis (Pilg.) Rehd.)紫杉烯合酶3′端的2 151 bp的cDNA片段,也通过PCR扩增得到了该基因5′端的611 bp的cDNA片段,将这两个cDNA片段拼接在一起,得到长2 712 bp的cDNA片段,具有一个2 586个碱基的开放阅读框架(ORF),编码包括质体转移肽在内的共862个氨基酸残基;该酶与太平洋红豆杉紫杉烯合酶有97%的同源性(identity),与其他植物萜类环化酶也有较高的同源性.利用融合表达载体pET-32a在大肠杆菌BL21trxB中表达,所表达的融合蛋白以包含体形式存在.包含体经过变性、复性和再折叠,利用His残基亲和凝胶柱层析得到融合的紫杉烯合酶.用毛细管气相色谱-质谱联用对酶促反应产物进行分析,结果表明,融合的紫杉烯合酶能催化产生4(5),11(12)-紫杉烯.  相似文献   

5.
中国红豆杉紫杉烯合酶cDNA的分离、表达和鉴定   总被引:10,自引:0,他引:10  
紫杉烯合酶是一种二萜环化酶 ,催化牛儿基牛儿基焦磷酸形成紫杉醇生物合成过程中的中间体紫杉烯。利用PCR扩增同源探针筛选cDNA文库 ,克隆了一个编码中国红豆杉 (Taxuschinensis (Pilg .)Rehd .)紫杉烯合酶 3′端的 2 15 1bp的cDNA片段 ,也通过PCR扩增得到了该基因 5′端的 6 11bp的cDNA片段 ,将这两个cDNA片段拼接在一起 ,得到长 2 712bp的cDNA片段 ,具有一个 2 5 86个碱基的开放阅读框架 (ORF) ,编码包括质体转移肽在内的共 86 2个氨基酸残基 ;该酶与太平洋红豆杉紫杉烯合酶有 97%的同源性 (identity) ,与其他植物萜类环化酶也有较高的同源性。利用融合表达载体pET_32a在大肠杆菌BL2 1trxB中表达 ,所表达的融合蛋白以包含体形式存在。包含体经过变性、复性和再折叠 ,利用His残基亲和凝胶柱层析得到融合的紫杉烯合酶。用毛细管气相色谱 质谱联用对酶促反应产物进行分析 ,结果表明 ,融合的紫杉烯合酶能催化产生 4(5 ) ,11(12 )_紫杉烯  相似文献   

6.
旨在提高稻米中三烯生育酚的含量,将来源于日本晴尿黑酸牻牛儿基牛儿基牻转移酶(homogentisic acid gerany-lgeranyl transferase,HGGT)基因导入粳稻品种武育粳3号过量表达。经PCR和RT-PCR分析证明外源基因已导入水稻中并能够在水稻胚乳中表达。HPLC测定结果表明,过表达HGGT后,转基因水稻种子糠层及胚乳中γ-三烯生育酚和总三烯生育酚的含量分别是未转化对照的1.52和1.67倍,且三烯生育酚的积累并未导致总生育酚含量的降低,最终糠层及胚乳中总三烯生育酚与总生育酚的比值分别提高到0.82和1.82,极显著高于(P<0.01)未转化对照(分别为0.54和1.27)。  相似文献   

7.
摘要:【目的】旨在用毕赤酵母高效表达灰盖鬼伞过氧化物酶。【方法】借助DNAworks 3.1软件设计、优化引物,用自己构建的基因合成、定点突变平台合成了毕赤酵母密码子偏好性的灰盖鬼伞过氧化物酶基因,测序后构建在表达载体pPICZαA上,整合于巴斯德毕赤酵母GS115染色体,来自酿酒酵母的α因子作为信号肽序列指导重组蛋白的分泌表达。从82个PCR检测为阳性的酵母转化子中筛选出6株高Zeocin抗性的菌进行表达,选表达酶活性最高的作为实验菌株命名为CIP/GS115。【结果】以ABTS为底物时,CIP/GS115 在甲醇诱导第4天酶活最高达到487.5 U/mL,是目前摇瓶培养诱导表达灰盖鬼伞过氧化物酶活性最高报道。纯化后的酶最适反应温度为25℃,45℃酶反应速度是最适温度时的61.5%,在低于40℃时比较稳定,超过45℃稳定性迅速下降。最适反应pH 为5.0,在pH 4.5-6.5之间比较稳定。以不同的底物研究纯酶底物特异性发现最适底物的顺序是:ABTS > 愈创木酚> 2,6-二甲氧苯酚> 2,4-二氯苯酚> 苯酚。【结论】灰盖鬼伞过氧化物酶在毕赤酵母中的高效分泌表达和高的特殊活性为该酶在废水处理、染料脱色等方面的工业化应用奠定了一定基础。  相似文献   

8.
穗花杉(Amentotaxus argotaenia(Hance)Pilger)是红豆杉科穗花杉属的一个种。由于穗花杉与红豆杉属植物具有较近的亲缘关系,有研究者认为穗花杉也可以合成紫杉醇,并利用HPLC法测到其含有紫杉醇。但这仅仅是依靠HPLC中出峰时间来判断,并没有质谱结果。该研究利用LC-MS对穗花杉茎叶的化学提取物分析结果显示,穗花杉的茎叶中均未发现紫杉醇。为了进一步证明穗花杉不能合成紫杉醇,该研究利用欧洲红豆杉(Taxus baccata L.)紫杉醇生物合成关键基因-紫杉二烯合成酶基因(Taxadiene synthase gene,TbTS)的序列TBLASTN比对穗花杉本地转录组,从中找出并克隆得到与TbTS同源性最高的AarTSL1基因;利用原核表达分析AarTSL1基因的编码蛋白,结果发现该基因不具有紫杉二烯合成酶编码基因的功能。该研究从化学和生物学两个方面均证明穗花杉无法合成紫杉醇,为以后通过植物学和化学分类学等研究穗花杉的分类学地位提供了新的有用信息。  相似文献   

9.
牻牛儿基牻牛儿基焦磷酸合酶是产紫杉醇内生真菌紫杉醇合成下游途径中的关键步骤之一,在榛子产紫杉醇内生真菌中进行紫杉醇生物合成研究时首先要确认GGPP合酶的存在。该研究通过RT-PCR方法克隆得到了榛子产紫杉醇内生真菌Penicillium aurantiogriseum中GGPP合酶基因Pa GGPPS(Gen Bank登录号为KM881430)的c DNA开放阅读框(Open reading frame,ORF)。利用生物信息学方法,我们分析了该基因的序列,并对其编码的氨基酸序列进行了预测。结果发现该基因ORF长度为1 113 bp,预计蛋白分子量为40.98k D,等电点为6.168,表明该蛋白呈酸性。对其进行亲疏水性分析发现肽链整体呈现为亲水性。Pa GGPPS的主要二级结构元件为α-螺旋,并且包含一个异戊二烯类化合物合酶功能域。对榛子产紫杉醇内生真菌与其他物种的GGPPS进行氨基酸同源性分析,发现其与娄地青霉、曲霉菌和费氏新萨托菌的一致性较高,分别为94%、76%和76%。进化树分析表明来自动物、真菌和酵母的GGPPS聚为一类,来自植物的GGPPS聚为一类,其中榛子产紫杉醇内生真菌的GGPPS和青霉菌的进化关系最近,与植物的GGPPS的进化关系最远。对其进行基础生物信息学分析后,我们构建了原核表达载体,成功诱导其表达并得到可溶性蛋白。该研究结果为下一步深入研究GGPPS基因在内生真菌Penicillium aurantiogriseum紫杉醇合成途径中的作用及和构建高产紫杉醇基因工程菌株奠定了一定的基础。  相似文献   

10.
为了研究马铃薯萜类代谢物的生物合成机制,从马铃薯基因组数据中筛选到一个萜类合酶基因。通过RT-PCR方法,从致病疫霉侵染后的马铃薯品种‘费乌瑞它’中成功克隆到该基因,命名为StHcS,并对其进行生物信息学分析、生化功能鉴定及表达模式分析。结果表明:(1)序列分析显示StHcS编码区序列长1 497 bp,编码498个氨基酸,分子质量为74.78 kD。(2)StHcS基因编码的蛋白序列含有DDXXD催化功能域,与短柱茶(Camellia maliflora)中的四甲基环癸二烯甲醇合酶相似度最高。(3)蛋白体外催化实验和大肠杆菌代谢工程分析表明,StHcS可以催化生成倍半萜化合物四甲基环癸二烯甲醇(hedycaryol)。(4)基因表达分析显示,StHcS可以被致病疫霉侵染诱导表达反式法尼烯焦磷酸(FPP),且在侵染后72 h表达最高;GC-MS分析显示,在受侵染的马铃薯块茎中检测到四甲基环癸二烯甲醇。StHcS生化功能的鉴定为倍半萜合酶的研究提供了多样性,也是首次在马铃薯中发现的四甲基环癸二烯甲醇合酶,为马铃薯萜类代谢途径解析提供了参考。  相似文献   

11.
Production of taxa-4(5),11(12)-diene by transgenic Physcomitrella patens   总被引:1,自引:0,他引:1  
Taxadiene synthase gene from Taxus brevifolia was constitutively expressed in the moss Physcomitrella patens using a ubiquitin promoter to produce taxa-4(5),11(12)-diene, the precursor of the anticancer drug paclitaxel. In stable moss transformants, taxa-4(5),11(12)-diene was produced up to 0.05% fresh weight of tissue, without significantly affecting the amounts of the endogenous diterpenoids (ent-kaurene and 16-hydroxykaurane). Unlike higher plants that had been genetically modified to produce taxa-4(5),11(12)-diene, transgenic P. patens did not exhibit growth inhibition due to alteration of diterpenoid metabolic pools. Thus we propose that P. patens is a promising alternative host for the biotechnological production of paclitaxel and its precursors.  相似文献   

12.
Taxa-4(5),11(12)-diene is the first committed precursor of functionalized taxanes such as paclitaxel, a successful anticancer drug. Biosynthesis of taxanes in yew involves several oxidations, a number of which have been shown to be catalyzed by cytochrome P-450 oxygenases. Hydroxylation of the C-5alpha of taxa-4(5),11(12)-diene is believed to be the first of these oxidations, and a gene encoding a taxa-4(5),11(12)-diene 5alpha-hydroxylase (CYP725A4) was recently described (Jennewein, S., Long, R. M., Williams, R. M., and Croteau, R. (2004) Chem. Biol. 11, 379-387). In an attempt to produce the early components of the paclitaxel pathway by a metabolic engineering approach, cDNAs encoding taxa-4(5),11(12)-diene synthase and CYP725A4 were introduced in Nicotiana sylvestris for specific expression in trichome cells. Their co-expression did not lead to the production of the expected 5alpha-hydroxytaxa-4(20),11(12)-diene. Instead, taxa-4(5),11(12)-diene was quantitatively converted to a novel taxane that was purified and characterized. Its structure was determined by NMR analysis and found to be that of 5(12)-oxa-3(11)-cyclotaxane (OCT) in which the eight-carbon B-ring from taxa-4(5),11(12)-diene is divided into two fused five-carbon rings. In addition, OCT contains an ether bridge linking C-5 and C-12 from opposite sides of the molecule. OCT was also the sole major product obtained after incubation of taxa-4(5),11(12)-diene with NADPH and microsomes prepared from recombinant yeast expressing CYP725A4. The rearrangement of the taxa-4(5),11(12)-diene ring system is thus mediated by CYP725A4 only and does not rely on additional enzymes or factors present in the plant. The complex structure of OCT led us to propose a reaction mechanism involving a sequence of events so far unknown in P-450 catalysis.  相似文献   

13.
The diterpene cyclase taxadiene synthase from yew (Taxus) species transforms geranylgeranyl diphosphate to taxa-4(5),11(12)-diene as the first committed step in the biosynthesis of the anti-cancer drug Taxol. Taxadiene synthase is translated as a preprotein bearing an N-terminal targeting sequence for localization to and processing in the plastids. Overexpression of the full-length preprotein in Escherichia coli and purification are compromised by host codon usage, inclusion body formation, and association with host chaperones, and the preprotein is catalytically impaired. Since the transit peptide-mature enzyme cleavage site could not be determined directly, a series of N-terminally truncated enzymes was created by expression of the corresponding cDNAs from a suitable vector, and each was purified and kinetically evaluated. Deletion of up to 79 residues yielded functional protein; however, deletion of 93 or more amino acids resulted in complete elimination of activity, implying a structural or catalytic role for the amino terminus. The pseudomature form of taxadiene synthase having 60 amino acids deleted from the preprotein was found to be superior with respect to level of expression, ease of purification, solubility, stability, and catalytic activity with kinetics comparable to the native enzyme. In addition to the major product, taxa-4(5),11(12)-diene (94%), this enzyme produces a small amount of the isomeric taxa-4(20), 11(12)-diene ( approximately 5%), and a product tentatively identified as verticillene ( approximately 1%). Isotopically sensitive branching experiments utilizing (4R)-[4-(2)H(1)]geranylgeranyl diphosphate confirmed that the two taxadiene isomers, and a third (taxa-3(4),11(12)-diene), are derived from the same intermediate taxenyl C4-carbocation. These results, along with the failure of the enzyme to utilize 2, 7-cyclogeranylgeranyl diphosphate as an alternate substrate, indicate that the reaction proceeds by initial ionization of the diphosphate ester and macrocyclization to the verticillyl intermediate, followed by a secondary cyclization to the taxenyl cation and deprotonation (i.e., formation of the A-ring prior to B/C-ring closure). Two potential mechanism-based inhibitors were tested with recombinant taxadiene synthase but neither provided time-dependent inactivation nor afforded more than modest competitive inhibition.  相似文献   

14.
The taxanes are a group of polycyclic diterpenes produced by various species of yew. The potent anticancer drug paclitaxel (marketed as Taxol™) is the commercially most important taxane with annual sales in 2000 exceeding $1.6 billion. Paclitaxel is currently obtained either by direct extraction from yew trees or by the extraction of the precursor 10-deactilbaccatin III, which is then converted to paclitaxel by semi-synthesis. Apart from cost, one of the main draw backs to taxol in cancer treatment is the development of resistance by tumours, commonly due to the expression of ABC transporter efflux pumps which remove the drug from the target cell. A number of natural taxanes and semisynthetic derivates, have recently been shown to act as potent inhibitors of ABC transport proteins. These compounds have no effect upon microtubule polymerization (the normal target of paclitaxel), but have the ability to restore drug sensitivity when given in combination with paclitaxel to resistant cell lines. In work to be described elsewhere, we sort to carry out a structure function analysis of the ability of novel oxidised taxanes to act as ABC transporter inhibitors. For this study 100 mg or more of taxadiene [taxa-4(5),11(12)-diene], the first taxane in the paclitaxel pathway, was required as starting material from which to synthesize these compounds. Taxadiene is synthesised directly from geranylgeranyl diphosphate (GGPP), which is found in most plant tissues where it serves as a common precursor for many metabolites. The synthesis and use of GGDP are tightly regulated in most vegetative organs, however, in tomato fruit it is used almost exclusively for the production of coloured carotenoids which accumulate to high levels in the plastid as lycopene crystals. Expressing taxadiene synthase in a yellow-fruited tomato line that lacks the ability to utilise GGPP for carotenoid synthesis allowed GGPP normally utilised for making carotenoids to be re-routed for the production of taxadiene, allowing the facile extraction of 160 mg of highly pure taxadiene from 1 kg of freeze dried fruit.  相似文献   

15.
The trichodiene synthase gene (Tox5) was isolated from Gibberella pulicaris, and its nucleotide sequence was determined. Tox5 was disrupted through transformation with a plasmid carrying a doubly truncated copy of the coding region and a selectable marker for resistance to hygromycin B (Hygr). Analysis of 82 transformants for their ability to produce the trichothecene, 4,15-diacetoxyscirpenol (DAS), resulted in the identification of five DAS- strains. Southern hybridization analysis of DAS- Hygr transformants indicated that the plasmid integrated at the Tox5 locus. The disrupted Tox5 gene was shown to be mitotically stable. Analysis of nine tetrads revealed either the cosegregation of the disrupter plasmid and the DAS- phenotype or the loss of the disrupter plasmid. These results demonstrate the feasibility of using gene disruption in G. pulicaris and suggest a general method for obtaining Tox5- mutants in other trichothecene-producing fungi.  相似文献   

16.
A gene encoding a plant terpene cyclase, Artemisia annua amorpha-4,11-diene synthase (ADS), was expressed in Aspergillus nidulans under control of a strong constitutive promoter, (p)gpdA. The transformants produced only small amounts of amorphadiene, but much larger amounts of similar sesquiterpenes normally produced as minor by-products in planta. In contrast, expression of ADS in Escherichia coli produced almost exclusively amorpha-4,11-diene. These results indicate that the host environment can greatly impact the terpenes produced from terpene synthases.  相似文献   

17.
The gene encoding for amorpha-4,11-diene synthase from Artemisia annua was transformed into yeast Saccharomyces cerevisiae in two fundamentally different ways. First, the gene was subcloned into the galactose-inducible, high-copy number yeast expression vector pYeDP60 and used to transform the Saccharomyces cerevisiae strain CEN·PK113-5D. Secondly, amorpha-4,11-diene synthase gene, regulated by the same promoter, was introduced into the yeast genome by homologous recombination. In protein extracts from galactose-induced yeast cells, a higher activity was observed for yeast expressing the enzyme from the plasmid. The genome-transformed yeast grows at the same rate as wild-type yeast while plasmid-carrying yeast grows somewhat slower than the wild-type yeast. The plasmid and genome-transformed yeasts produced 600 and 100 μg/l of the artemisinin precursor amorpha-4,11-diene, respectively, during 16-days’ batch cultivation. Revisions requested 14 November 2005; Revisions received 17 January 2006  相似文献   

18.
【背景】链霉菌属于放线菌科,在土壤环境中广泛分布。链霉菌具有复杂的形态分化和多样性的次生代谢网络,能产生大量具有生物活性的次级代谢产物,被广泛深入研究。【目的】天蓝色链霉菌是链霉菌的模式菌株,其脂肪酸合成代谢与次级代谢联系紧密,但目前脂肪酸合成代谢途径还不清楚,其长链3-酮脂酰ACP合成酶还未见报道。【方法】利用大肠杆菌FabF序列进行同源比对,发现天蓝色链霉菌A3(2)的基因组中,SCO2390(ScoFabF1)、SCO1266(ScoFabF2)、SCO0548(ScoFabF3)和SCO5886 (ScoRedR)具有较高的相似性,并具有保守的Cys-His-His催化活性中心,可能具有长链3-酮脂酰ACP合成酶活性。采用PCR扩增方法分别获得以上基因,连入表达载体pBAD24M后分别互补大肠杆菌fabB(ts)突变株和fabB(ts)fabF双突变株,并检测转化子的生长情况。以上基因与pET-28b连接后,在大肠杆菌BL21(DE3)中表达,并利用Ni-NTA纯化获得蛋白,体外测定其催化活性。将以上基因分别互补大肠杆菌fabF突变株后,GC-MS测定互补株的脂肪酸组成。【结果】4个同源基因中,只有ScofabF1能恢复fabB(ts)fabF双突变株42°C时在添加油酸条件下的生长,其他3个基因均不能恢复生长。而这4个基因都不能恢复fabB(ts)突变株42°C时生长。体外活性测定ScoFabF1具有长链3-酮脂酰ACP合成酶活性,其他3个蛋白都不具有该活性。仅ScofabF1能显著提高大肠杆菌fabF突变株的顺-11-十八碳烯酸(C18:1)比例,其他3个基因都不具有该功能。【结论】天蓝色链霉菌中ScofabF1编码长链3-酮脂酰ACP合成酶II,在脂肪酸利用过程中发挥重要作用。天蓝色链霉菌中没有发现编码长链3-酮脂酰ACP合成酶I的基因,其可能通过其他途径合成少量的不饱和脂肪酸。以上研究结果为进一步研究天蓝色链霉菌中脂肪酸合成机制奠定了基础。  相似文献   

19.
利用从灰树花菌丝体中克隆的gpd-Gf(615bp)启动子片段串联于报告基因gfp上游,构建启动子功能活性检测表达质粒pGg-gfp。采用PEG介导法把表达质粒pGg-gfp与辅助质粒pCc1001(含有trp1基因)共转化进色氨酸营养缺陷型的灰盖鬼伞粉孢子的原生质体中。经过选择培养基筛选、假定转化子的分子鉴定以及GFP荧光检测, 结果表明:灰树花gpd-Gf启动子在灰盖鬼伞菌丝中具有较强驱动gfp基因表达的活性,在荧光显微镜和共聚焦显微镜下可以观察到转化子菌丝发出的强烈荧光。  相似文献   

20.
There are conflicting reports regarding the cellular localization in Saccharomyces cerevisiae and filamentous fungi of homocitrate synthase, the first enzyme in the lysine biosynthetic pathway. The homocitrate synthase (HS) gene (lys1) of Penicillium chrysogenum was disrupted in three transformants (HS(-)) of the Wis 54-1255 pyrG strain. The three mutants named HS1(-), HS2(-) and HS3(-) all lacked homocitrate synthase activity and showed lysine auxotrophy, indicating that there is a single gene for homocitrate synthase in P. chrysogenum. The lys1 ORF was fused in frame to the gene for the green fluorescent protein (GFP) gene of the jellyfish Aequorea victoria. Homocitrate synthase-deficient mutants transformed with a plasmid containing the lys1-GFP fusion recovered prototrophy and showed similar levels of homocitrate synthase activity to the parental strain Wis 54-1255, indicating that the hybrid protein retains the biological function of wild-type homocitrate synthase. Immunoblotting analysis revealed that the HS-GFP fusion protein is maintained intact and does not release the GFP moiety. Fluorescence microscopy analysis of the transformants showed that homocitrate synthase was mainly located in the cytoplasm in P. chrysogenum; in S. cerevisiae the enzyme is targeted to the nucleus. The control nuclear protein StuA was properly targeted to the nucleus when the StuA (targeting domain)-GFP hybrid protein was expressed in P. chrysogenum. The difference in localization of homocitrate synthase between P. chrysogenum and S. cerevisiae suggests that this protein may play a regulatory function, in addition to its catalytic function, in S. cerevisiae but not in P. chrysogenum.  相似文献   

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