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1.
Petunia hybrida and Citrus paradisi have significantly different flavonoid accumulation patterns. Petunia sp. tend to accumulate flavonol glycosides and anthocyanins while Citrus paradisi is known for its accumulation of flavanone diglycosides. One possible point of regulation of flavanone metabolism is flavanone 3-hydroxylase (F3H) expression. To test whether this is a key factor in the different flavanone usage by Petunia hybrida and Citrus paradisi, F3H mRNA expression in seedlings of different developmental stages was measured using semi-quantitative RT-PCR. Primers were designed to conserved regions of F3H and used to amplify an approximately 350 bp segment for quantitation by PhosphorImaging. Primary leaves of 32 day old grapefruit seedlings and a grapefruit flower bud had the highest levels of F3H mRNA expression. Petunia seedlings had much lower levels of F3H mRNA expression relative to grapefruit. The highest expression in petunia was in primary leaves and roots of 65 day old seedlings. These results indicate that preferential use of naringenin for production of high levels of flavanone glycosides in young grapefruit leaves cannot be attributed to decreased F3H mRNA expression.  相似文献   

2.
Four UDP-dependent glucosyltransferase (UGT) genes, UGT706C1, UGT706D1, UGT707A3, and UGT709A4 were cloned from rice, expressed in Escherichia coli, and purified to homogeneity. In order to find out whether these enzymes could use flavonoids as glucose acceptors, apigenin, daidzein, genistein, kaempferol, luteolin, naringenin, and quercetin were used as potential glucose acceptors. UGT706C1 and UGT707A3 could use kaempferol and quercetin as glucose acceptors and the major glycosylation position was the hydroxyl group of carbon 3 based on the comparison of HPLC retention times, UV spectra, and NMR spectra with those of corresponding authentic flavonoid 3-O-glucosides. On the other hand, UGT709A4 only used the isoflavonoids genistein and daidzein and transferred glucose onto 7-hydroxyl group. In addition, UGT706D1 used a broad range of flavonoids including flavone, flavanone, flavonol, and isoflavone, and produced at least two products with glycosylation at different hydroxyl groups. Based on their substrate preferences and the flavonoids present in rice, the in vivo function of UGT706C1, UGT706D1, and UGT707A3 is most likely the biosynthesis of kaempferol and quercetin glucosides.  相似文献   

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The alkaline protease gene from Aspergillus oryzae was cloned, and then it was successfully expressed in the heterologous Pichia pastoris GS115 with native signal peptide or α-factor secretion signal peptide. The yield of the recombinant alkaline protease with native signal peptide was about 1.5-fold higher than that with α-factor secretion signal peptide, and the maximum yield of the recombinant alkaline protease was 513 mg/L, which was higher than other researches. The recombinant alkaline protease was purified by ammonium sulfate precipitation, ion exchange chromatography and gel filtration chromatography. The purified recombinant alkaline protease showed on SDS–PAGE as a single band with an apparent molecular weight of 34 kDa. The recombinant alkaline protease was identical to native alkaline protease from A. oryzae with regard to molecular weight, optimum temperature for activity, optimum pH for activity, stability to pH, and similar sensitivity to various metal ions and protease inhibitors. The native enzyme retained 61.18% of its original activity after being incubated at 50 °C for 10 min, however, the recombinant enzyme retained 56.22% of its original activity with same disposal. The work demonstrates that alkaline protease gene from A. oryzae can be expressed largely in P. pastoris without affecting its enzyme properties and the recombinant alkaline protease could be widely used in various industrial applications.  相似文献   

4.
cDNA corresponding to a flavonol synthase gene from Arabidopsis thaliana was cloned and expressed in Escherichia coli. The recombinant protein was purified to near-homogeneity and the catalytic properties of the enzyme were studied in vitro. Together with kaempferol and apigenin the recombinant protein synthesised the (2R,3S)-cis- and (2S,3S)-trans-isomers of dihydrokaempferol from the (2S)- and (2R)-isomers of naringenin, respectively. Flavanones and dihydroflavanols differing in degree of A- or B-ring hydroxylation were also accepted as substrates.  相似文献   

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植物自交不亲和性是植物生殖过程中普遍存在的一种现象,是植物特异性识别并拒绝自身花粉或亲缘关系很相近的花粉的一种遗传机制。无机焦磷酸酶(inorganic pyrophosphatase,IPPase)在植物生长发育方面起重要作用。该研究根据沙田柚花柱消减文库中EST序列(无机焦磷酸酶基因内部片段),设计了2对特异引物5'-GSP1,5'-n GSP1,3'-GSP2 and 3'-n GSP2,通过SMART-RACE PCR技术从所构建的沙田柚花柱抑制性消减文库中克隆了沙田柚无机焦磷酸酶基因的c DNA全长序列,利用Blastn、DNAman和Expasy软件对所克隆的基因进行同源性分析,以及基因编码的氨基酸的分子量、等电点、疏水性等理化性质分析。结果表明:IPPase基因c DNA全长为1 136 bp(Gen Bank登录号为KF990474),开放阅读框(ORF)全长为654 bp,共编码217个氨基酸,包括170 bp 5'UTR和312 bp的3'UTR;编码的蛋白质的分子量为24.4 k Da,等电点为5.96;蛋白结构域分析显示沙田柚IPPase与焦磷酸酶具有相同的保守结构域;对沙田柚IPPase蛋白质序列进行疏水性分析,结果表明沙田柚IPPase基因编码的肽链中疏水性最大值约为3.21,最小值约为-2.98,属于亲水性蛋白,无跨膜区域;Blastn搜索的结果显示,沙田柚IPPase基因序列与多种植物的IPP基因高度同源;序列分析表明,沙田柚IPPase基因核苷酸的同源性与毛果杨(Populus trichocarpa)和橡胶树(Hevea brasiliensis)IPPase基因均为87%;氨基酸序列与克莱门柚(Citrus clementina)无机焦磷酸酶完全一致。该研究结果可为深入研究无机焦磷酸酶在沙田柚自交不亲和中的作用机理提供基础。  相似文献   

7.
The phospholipase c (plc) gene from Bacillus cereus was cloned into the pPICZC vector and integrated into the genome of Pichia pastoris. The phospholipase C (PLC) when expressed in P. pastoris was fused to the -factor secretion signal peptide of Saccharomyces cerevisiae and secreted into a culture medium. Recombinant P. pastoris X-33 had a clear PLC band at 28.5 kDa and produced an extracellular PLC with an activity of 678 U mg–1 protein which was more than a recombinant P. pastoris GS115 (552 U mg–1 protein) or KM71H (539 U mg–1 protein). The PLCs were purified using a HiTrap affinity column with a specific activity of 1335 U mg–1 protein by P. pastoris GS115, 1176 U mg–1 protein by P. pastoris KM71H and 1522 U mg–1 protein by P. pastoris X-33. The three recombinant PLCs had high PLC activity in the low pH range of 4-5 and higher thermal stability (e.g. stable at 75 °C) than the wild-type PLC from B. cereus. Some organic solvents, surfactants and metal ions, e.g. methanol, acetone, Co2+ and Mn2+ etc., also influenced the activity of the recombinant PLCs.  相似文献   

8.
Flavonol synthase from Citrus unshiu is a bifunctional dioxygenase   总被引:3,自引:0,他引:3  
Flavonol synthase was classified as a 2-oxoglutarate-dependent dioxygenase converting natural (2R,3R)-dihydroflavonols, i.e. dihydrokaempferol, to the corresponding flavonols (kaempferol). Flavonol synthase from Citrus unshiu (Satsuma mandarin), expressed in Escherichia coli and purified to homogeneity, was shown to accept also (2S)-naringenin as a substrate, producing kaempferol in high yield and assigning sequential flavanone 3beta-hydroxylase and flavonol synthase activities to the enzyme. In contrast, dihydrokaempferol was identified as the predominant product from assays performed with the unnatural (2R)-naringenin as substrate. The product which was not converted any further on repeated incubations was identified by 1H NMR and CD spectroscopies as (-)-trans-dihydrokaempferol. The data demonstrate that Citrus flavonol synthase encompasses an additional non-specific activity trans-hydroxylating the flavanones (2S)-naringenin as well as the unnatural (2R)-naringenin at C-3.  相似文献   

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黏质沙雷氏菌(Serratia marcescens)是引起人类、动物及植物感染的重要条件致病菌,但其作为鱼类致病菌却鲜有报道。【目的】本研究以从患病牙鲆(Paralichthys olivaceus)病灶处分离的一株黏质沙雷氏菌YP1为研究对象,分析黏质沙雷氏菌对鱼类的致病性及对疾控的影响。【方法】利用形态学、分子生物学及生理生化实验综合鉴定菌株YP1;利用菌株YP1进行人工感染实验、组织病理实验及药敏试验,研究其感染症状、组织病理学、毒力和药物敏感性。【结果】分离自患病牙鲆体表溃疡病灶处的菌株YP1鉴定为黏质沙雷氏菌。感染实验结果显示,牙鲆和斑马鱼的半数致死量(LD50)分别为3.44×107CFU/g和6.28×105CFU/g,除牙鲆外菌株YP1对其他鱼类也具有高致病性;菌株YP1主要导致牙鲆腹水,同时伴有呼吸急促、摄食减弱、脱肛、白便、鳃缺血及多脏器膨大出血等症状,并随着感染时间的延长对脏器损伤呈加重趋势。病理组织切片结果显示,菌株YP1对牙鲆鳃、肠、肝、脾、肾、心均造成损伤。药敏试验结果表明,YP1对左氧氟沙星、诺氟沙星等14种药物敏感;但对氨苄西林、头孢拉定等19种药物具有耐药性。【结论】本研究结果证实了黏质沙雷氏菌是能导致牙鲆腹水病的一种病原菌,同时对其他鱼类也具高致病性,为该菌感染鱼类导致疾病的检测、鉴别和防治提供科学依据。  相似文献   

13.
【目的】在酿酒酵母中异源表达双孢蘑菇来源的酪氨酸酶基因PPO2,并研究酪氨酸酶在酿酒酵母胞内及胞外的酶学特性。【方法】提取双孢蘑菇总RNA,通过RT-PCR克隆酪氨酸酶基因PPO2,构建表达载体pSP-G1-PPO2,并转化至酿酒酵母进行表达,采用镍亲和层析纯化蛋白并研究其酶学性质。【结果】在酿酒酵母中正确表达了大小为65 kDa的酪氨酸酶蛋白。重组酶能催化底物酪氨酸产生黑色素。体外活性测定表明,酪氨酸酶催化最适温度为45°C,以酪氨酸和多巴为底物时最适pH分别为7.0和8.0。在酿酒酵母中测得底物酪氨酸浓度低于2.5 mg/mL时,黑色素的产量与底物浓度呈现正相关性。【结论】来源于双孢蘑菇的酪氨酸酶基因PPO2在酿酒酵母中成功表达,重组酶具有良好的酶学特性。利用酪氨酸酶产物黑色素的产量与底物浓度呈现正相关性这一特性,可将其作为细胞酪氨酸产量的传感器,为高通量筛选酪氨酸高产菌株提供了思路。  相似文献   

14.
芽胞杆菌属具有良好的蛋白表达和分泌能力,在工业酶的生产中被广泛应用,是理想的工业宿主菌,但实现蛋白分泌表达的普遍高效性还存在许多瓶颈。本文综述了芽胞杆菌的蛋白分泌表达策略,从启动子、信号肽、分泌途径、宿主和培养条件这5个方面总结了提高芽胞杆菌中分泌表达重组蛋白的方法,对芽胞杆菌高效生产工业酶有一定的参考价值,最后展望了优化芽胞杆菌分泌表达的研究方向,各种新型生物技术的发展必将推进芽胞杆菌在分泌表达领域有更深入的应用。  相似文献   

15.
Kynureninase has been described in bacteria, fungi and animals as an enzyme involved in the catabolic degradation pathway of l-tryptophan. This pyridoxal 5′-phosphate (PLP)-dependent enzyme catalyzes the hydrolytic cleavage of l-kynurenine and 3-hydroxy-l-kynurenine to yield l-alanine and either anthranilic or 3-hydroxyanthranilic acid, respectively. We identified a putative kynureninase gene from a Trypanosoma cruzi project aiming at the structural and functional characterization of more than 100 proteins differentially expressed during metacyclogenesis. This gene encodes a protein similar in size and sequence to kynureninases from other sources. This open reading frame was cloned and the recombinant enzyme was overexpressed. Recombinant T. cruzi kynureninase was purified to homogeneity and its identity was confirmed by mass spectrometry. The apparent molecular mass of the native T. cruzi kynureninase was estimated by gel filtration, suggesting that the protein is a homodimer. Circular dichroism spectrum indicated a mixture of α-helix and β-sheet structure, expected for an aminotransferase fold. l-kynurenine, preferentially hydrolyzed by prokaryotic inducible kynureninases, and 3-hydroxy-l-kynurenine, the preferred substrate in fungi and vertebrates, are both catabolized equally well by T. cruzi kynureninase. Further experimental assays will be performed to fully understand the importance of this enzyme for T. cruzi metabolism.  相似文献   

16.
【目的】对细菌Solitalea canadensis中编码β-N-乙酰氨基己糖苷酶的基因进行克隆,通过原核表达获得重组β-N-乙酰氨基己糖苷酶,并研究其酶学性质。【方法】以Solitalea canadensis基因组DNA为模板,使用加尾PCR的方法克隆编码β-N-乙酰氨基己糖苷酶的基因,构建含有组氨酸标签的重组表达载体,并将重组质粒导入大肠杆菌BL21(DE3)中进行原核表达。重组蛋白经Ni-NTA纯化,以对硝基苯酚-β-乙酰氨基葡萄糖(pNP-β-Glc NAc)为底物研究其酶学性质,包括最适温度、最适p H以及金属离子和抑制剂的影响。【结果】从菌株Solitalea canadensis克隆得到了β-N-乙酰氨基己糖苷酶基因片段(Gene Bank:WP_014682183.1),全长2586 bp,重组表达所得蛋白表观分子量约为97 k Da,最适pH 6.0,最适温度42°C,但不稳定,半衰期小于5 min。该酶对十二烷基磺酸钠(SDS)敏感,活性受Triton X-100和尿素的抑制。此外二糖分子也能不同程度地抑制该重组酶的活性,特异性抑制剂PugNAc(O-(2-Acetamido-2-deoxy-D-glucopyranosylideneamino)N-phenylcarbamate)对该酶的IC_(50)为2μmol/L。该重组酶蛋白除能水解对硝基苯酚-β-乙酰氨基葡萄糖苷和对硝基苯酚-β-乙酰氨基半乳糖(pNP-β-GalNAc)外,还能对O-链聚糖核心结构Core Ⅱ末端的乙酰氨基葡萄糖进行水解。【结论】本文首次从Solitalea canadensis中克隆得到能水解末端β1-6连接的乙酰氨基葡萄糖而不能水解β1-4连接键的β-N-乙酰氨基己糖苷酶,并对其进行了酶学性质研究和底物特异性分析,为开发高效特异性强的糖链分析工具酶提供理论基础。  相似文献   

17.
为了解丛枝菌根(AM)真菌对根、根系分泌物中次生代谢物和植物生长的影响,以AM真菌(Glomusepigaeum)接种柑橘(Citrusreticulata),对柑橘的酚类物质、抗氧化酶和生长情况进行研究。结果表明,温室盆栽6个月后,接种AM真菌显著提高柑橘酚酸类物质的积累,但是酚酸组分在根和根分泌物中存在差异,根中原儿茶酸和丁香酸含量为29.98和18.32μg/g,分别是未接种的4.58和2.26倍。而根系分泌物中香豆酸、苯甲酸和根皮苷含量为0.36、6.04和12.32μg/g,分别是未接种的1.71、1.94和1.25倍,而香草醛仅在未接种柑橘根中检测到。接种AM真菌的柑橘苯丙氨酸解氨酶、多酚氧化酶和过氧化物酶活性为38.36、0.51和28.62 U/(g·min),分别是未接种AM真菌的1.99、2.83和3.10倍。同时菌根定殖也显著提高柑橘的株高、茎粗和叶片数。因此,AM真菌定殖能促进植物生长,改变柑橘次生代谢产物的积累。  相似文献   

18.
[目的]克隆多形拟杆菌(Bacteroides thetaiotaomicron)Heparinase I基因,在大肠杆菌(Escherichia coli)中进行基因工程表达获得重组酶SUMO-Bt-HepI和Bt-HepI,并研究其酶学特性。[方法]对B.thetaiotaomicron肝素酶I(Bt-HepI)的基因序列进行密码子优化,PCR扩增得到目的基因,构建表达载体pET-28a-Bt-HepI和pE-SUMO-Bt-HepI,并转化至E. coli Rosetta(DE3)进行表达,分别得到重组产物Bt-HepI和SUMO-Bt-HepI,以肝素钠为底物研究两者的酶学性质。[结果]SDS-PAGE检测显示Bt-HepI和SUMO-Bt-HepI的分子量大小分别约为42.5 kDa和55 kDa。与Bt-HepI相比,融合SUMO-Tag后的肝素酶I比酶活提高了48.9%。酶学性质表明:Bt-HepI和SUMO-Bt-HepI的最适pH和温度均为pH 9、45℃,二者在pH 5-9都具有很好的稳定性,但pH<5时,SUMO-Bt-HepI的耐酸性明显高于Bt-HepI。同时,在温度低于50℃时,SUMO-Bt-HepI的比酶活高于Bt-HepI。此外,Ca2+和Mg2+对重组肝素酶I具有明显的促进作用,而Cu2+、Mn2+、Zn2+则表现出一定的抑制作用,提示在多形拟杆菌肝素酶I的结构中除了存在已知的Ca2+结合位点外,可能还存在Mg2+的结合位点。[结论]本研究首次将多形拟杆菌来源的肝素酶I和SUMO-Tag进行了融合表达,使其比酶活得到了显著的提高,为其生产应用奠定了基础。  相似文献   

19.
We report the case of a 52 year old woman that had an adverse reaction after taking a dry herbal extract of an unripe fruit of Citrus aurantium L. var. amara, as dietary supplement for weight loosing. The fruit is also known as zhi shi (in traditional Chinese Medicine) or bitter orange in other parts of the world.  相似文献   

20.
Flavonols, a class of bioactive polyphenols present in plants, are the products of flavonol desaturation catalyzed by flavonol synthase (FLS). We cloned the cDNA coding for the enzyme FLS from Camellia sinensis (CsFLS) by end-to-end PCR followed by 5'- and 3'-RACE. The putative CsFLS had 333 amino acid residues, displayed identities to the FLSs of Arabidopsis and Ginkgo of 53% and 52.5%, respectively, and contained several conserved elements found in the 2-oxoglutarate-Fe(II)-dioxygenase superfamily. The cDNA of CsFLS was subcloned into pET28a(+) and introduced into Escherichia coli (BL21-CodonPlus-RIL). Induction with 0.1mM IPTG at low temperature (20 degrees C) led to higher amounts of CsFLS in the soluble fraction than induction at 30 degrees C. The enzyme aggregated into inclusion bodies could be rescued by denaturation with 6M urea and purification with a His.Bind purification kit. The purified protein was desalted by Amicon Ultra-15 centrifugal filter unit, and the His-tag was removed with thrombin. The finally purified protein was assayed with dihydroquercetin as substrate and the products were analyzed by HPLC. The addition of FeSO(4) to the buffers used in the CsFLS purification significantly increased the recovery of active enzyme. The CsFLS obtained in this study was found to have higher specific activity and lower K(m) than previously reported FLSs.  相似文献   

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