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1.
卤化物是农业、制药业和化学工业的重要原料,主要以化学法合成,该法具有环境不友好和合成条件苛刻等劣势。天然卤化物生物合成途径的关键酶为卤化酶,包括卤过氧化物酶(haloperoxidase,HPO)、α-酮戊二酸依赖型卤化酶(α-ketoglutarate dependent halogenase,KG-Hal)、S-腺苷甲硫氨酸依赖型卤化酶(S-adenosylmethionine-dependenthalogenase)和黄素依赖型卤化酶(flavin-dependent halogenase,FDH)。其中,黄素依赖型卤化酶因其分布广泛、具有底物特异性和卤化位点选择性,是最具开发潜力的卤化酶。因此,本文对黄素依赖型卤化酶的结构、类型、催化机制及其应用研究进展进行综述,对利用基因分析和基因筛选方法寻找新型黄素依赖型卤化酶进行了展望。本综述有助于拓展黄素依赖型卤化酶的类型及其催化机制的知识,推动黄素依赖型卤化酶及其酶工程的研究,为新型卤化物的合成提供技术思路。  相似文献   

2.
根据棉铃虫单核衣壳核多角体病毒 (HaSNPV)几丁质酶基因的序列 ,设计引物 ,引入适当的酶切位点 ,利用PCR扩增出不含N末端信号肽以及C末端内质网定位肽的几丁质酶基因片段。将该基因片断克隆至原核表达载体 pProEXHTb ,经IPTG诱导 ,在大肠杆菌DH5α中获得了高效表达 ,表达产物的大小为 6 0kD ,含量占菌体总蛋白量的 4 0 %。利用来源于AcMNPV几丁质酶的抗体对表达蛋白进行检测 ,获得特异性的显色信号 ,证实所获原核表达产物与杆状病毒的几丁质酶具有同源性  相似文献   

3.
棉铃虫单核衣壳核多角体病毒几丁质酶基因的克隆与表达   总被引:2,自引:0,他引:2  
根据棉铃虫单核衣壳核多角体病毒(HaSNPV)几丁质酶基因的序列,设计引物,引入适当的酶切位点,利用PCR扩增出不含N末端信号肽以及C末端内质网定位肽的几丁质酶基因片段.将该基因片断克隆至原核表达载体pProEXHTb,经IPTG诱导,在大肠杆菌DH5α中获得了高效表达,表达产物的大小为60kD,含量占菌体总蛋白量的40%.利用来源于AcMNPV 几丁质酶的抗体对表达蛋白进行检测,获得特异性的显色信号,证实所获原核表达产物与杆状病毒的几丁质酶具有同源性.  相似文献   

4.
【目的】本研究旨在克隆来自北极海洋、具有合成卤化物潜力的链霉菌(Streptomyces sp.)604F中的一个卤化酶基因,为后续克隆卤化物合成基因簇、分离鉴定卤化物提供指导。【方法】利用琼脂块法初步测试抗菌活性,借助液相色谱-飞行时间串联质谱技术(LC-Tof MS)初步寻找Streptomyces sp.604F发酵粗提液中的卤化物,并以简并PCR扩增合成次级代谢产物的指示基因(I型、II型聚酮合酶及非核糖体多肽合成酶编码基因);根据依赖黄素腺嘌呤二核苷酸的卤化酶基因保守区设计的简并引物,扩增基因片段并测序分析;采用高效热不对称交错PCR(hiTAIL-PCR)技术扩增卤化酶基因全长。【结果】Streptomyces sp.604F具有较强的抗白色念珠菌活性,其基因组同时含有编码I型聚酮合酶、II型聚酮合酶和非核糖体多肽合成酶基因,以及卤化酶基因;通过染色体步移克隆该卤化酶基因全长,共1443 bp,编码一个新的非色氨酸卤化酶,在合成已知卤化物的卤化酶数据库中,与其同源关系最近的为一类参与合成糖肽类次级代谢产物的卤化酶。【结论】Streptomyces sp.604F具有新的非色氨酸卤化酶,且推测参与糖肽类化合物的卤化修饰,为后续寻找目的卤化物提供了指导,也为研究该合成基因簇奠定基础。  相似文献   

5.
半胱氨酸合成酶是半胱氨酸合成反应的关键限速酶,催化了半胱氨酸合成的最后一个步骤。以A.ferro-oxidans ATCC 23270基因组为模板,通过PCR扩增得到编码半胱氨酸合成酶(cysM)的基因,与原核表达载体PLM 1构建重组体,转入大肠杆菌DH5α中,测序正确后,加IPTG诱导表达,用一步亲和层析法纯化出了浓度和纯度都较高的半胱氨酸合成酶。由蛋白颜色和紫外分析,确定是以PLP辅基作为活性中心。表达产物进行SDS-PAGE分析,证实分子量为32 kD。  相似文献   

6.
单加氧酶催化的硫醚底物不对称氧化反应是手性亚砜类药物绿色合成的新途径之一,而寻求高催化效率和高底物耐受性的硫醚单加氧酶仍是其难点和瓶颈。本研究从前期获得的能高效合成手性亚砜化合物的菌株中筛选和克隆了2个单加氧酶基因,构建相应的表达载体并诱导表达重组蛋白,最后以苯甲硫醚为底物来初步探讨重组蛋白在生物催化合成苯甲亚砜中的活性。结果显示,成功构建了2个基因的表达载体并获得了大量的可溶性重组蛋白。而且,这2个重组蛋白均表现出了一定的生物催化活性,能将少量的苯甲硫醚底物转化为苯甲亚砜产物。本研究为将来进一步利用重组酶蛋白生物催化合成手性亚砜类化合物打下了一定的基础。  相似文献   

7.
目的构建编码细菌素pediocin PA-1基因片段的原核表达载体,诱导表达,鉴定表达产物。方法重组DNA技术构建原核表达载体pET32-papA,IPTG诱导表达,用金属亲和层析纯化,并通过SDS-PAGE与Westernblot对表达的重组蛋白进行鉴定。结果双酶切和测序鉴定显示papA片段插入正确,诱导表达后获得分子量为19 kD的融合蛋白,表达量为25%,用金属亲和层析的方法获得纯化的片球菌素pediocin PA-1。结论papA基因片段编码的蛋白质能在原核细胞中正确表达,为下一步研究该功能域的生物活性奠定了基础。  相似文献   

8.
以陆地棉胚珠和纤维为实验材料,利用RT-PCR技术克隆得到磷脂酶C(Phospholipase C,PLC)基因(GhPLC,GenBank登录号:KR154219),将棉花磷脂酶C基因转化拟南芥,分析其在油脂代谢过程中的重要作用。测序鉴定显示,GhPLC基因的全长开放读码框为1 524bp,编码包含508个氨基酸的蛋白质,理论分子量约为55kD。序列比对分析显示,GhPLC属于典型的碱性磷酸酶超家族的磷脂酶。利用pET32a-GhPLC原核表达获得分子量约为55kD左右的重组蛋白GhPLC;酶活力分析显示,重组GhPLC蛋白具有较高的将卵磷脂(PC)催化为二酰甘油(DAG)的酶活力。半定量RT-PCR结果表明,GhPLC基因参与棉花种子和纤维发育过程。构建植物过量表达载体35S∷GhPLC并转化哥伦比亚野生型拟南芥,转基因拟南芥中GhPLC基因的表达和PLC酶活力显著提高,且转基因拟南芥种子的油脂含量提高了5.3%。  相似文献   

9.
新基因PRR11的克隆、原核表达及鉴定   总被引:1,自引:0,他引:1  
克隆新基因PRR11的开放阅读框区,构建其原核表达载体,并进行表达检测及鉴定.以Hela细胞cDNA为模板,RT-PCR扩增PRR11基因,克隆入原核表达载体PET-28a中,酶切、测序鉴定确认获得PRR11基因的重组原核表达载体PET-28a-PRR11.然后把PET-28a-PRR11重组载体转化到BL21中,经IPTG诱导蛋白表达,提取细胞蛋白并采用SDS-PAGE和蛋白质免疫印迹法检测目的蛋白的表达情况.结果表明成功扩增了PRR11基因,双酶切、测序鉴定证实目的基因成功克隆到原核表达载体PET-28a中,目的蛋白成功表达.成功构建的PRR11基因的原核表达载体,及PRR11的重组蛋白表达产物,为进一步研究PRR11的基因功能奠定了基础.  相似文献   

10.
本实验旨在构建雪莲类PEBP基因原核表达载体,在大肠杆菌中表达并纯化类PEBP基因所编码的蛋白,为进一步研究奠定基础.将雪莲类PEBP基因开放阅读框序列克隆到原核表达载体pET30( )上,转化感受态表达菌株BL21(DE3),低浓度IPTG低温诱导融合蛋白的表达,纯化产物,Western blotting鉴定目的蛋白.IFTG低诱导PEBP,经SDS-PAGE分析,其相对分子量约为28 kD,与预期相符,表达量约占菌体蛋白的26.8%,并且通过亲和层析纯化了重组融合蛋白,Western blotting鉴定为阳性.成功构建了原核表达载体pET-PEBP,获得了高效表达产物,并为进一步研究雪莲类PEBP基因的抗冻功能打下基础.  相似文献   

11.
能催化卤代反应的卤化酶,因其具有高效、选择性好、反应条件温和的特点受到广泛关注。其中色氨酸卤化酶是研究最多的一类酶,它的特点是可以有选择性地卤化色氨酸,主要包括氯化和溴化。而卤代化合物具有多种生物活性,在医药、化工等领域有着广泛的应用。本文主要介绍了色氨酸卤化酶的来源和种类,酶学性质及其异源表达的研究现状;重点阐述了其结构和功能之间的相互关系及催化机理;并对色氨酸卤化酶的应用以及未来发展方向进行了展望,以期为色氨酸卤化酶的开发应用提供参考。  相似文献   

12.
Many marine sponges (Porifera) are known to contain large amounts of phylogenetically diverse microorganisms. Sponges are also known for their large arsenal of natural products, many of which are halogenated. In this study, 36 different FADH2-dependent halogenase gene fragments were amplified from various Caribbean and Mediterranean sponges using newly designed degenerate PCR primers. Four unique halogenase-positive fosmid clones, all containing the highly conserved amino acid motif “GxGxxG”, were identified in the microbial metagenome of Aplysina aerophoba. Sequence analysis of one halogenase-bearing fosmid revealed notably two open reading frames with high homologies to efflux and multidrug resistance proteins. Single cell genomic analysis allowed for a taxonomic assignment of the halogenase genes to specific symbiotic lineages. Specifically, the halogenase cluster S1 is predicted to be produced by a deltaproteobacterial symbiont and halogenase cluster S2 by a poribacterial sponge symbiont. An additional halogenase gene is possibly produced by an actinobacterial symbiont of marine sponges. The identification of three novel, phylogenetically, and possibly also functionally distinct halogenase gene clusters indicates that the microbial consortia of sponges are a valuable resource for novel enzymes involved in halogenation reactions.  相似文献   

13.
Chloramphenicol is a halogenated natural product bearing an unusual dichloroacetyl moiety that is critical for its antibiotic activity. The operon for chloramphenicol biosynthesis in Streptomyces venezuelae encodes the chloramphenicol halogenase CmlS, which belongs to the large and diverse family of flavin-dependent halogenases (FDH’s). CmlS was previously shown to be essential for the formation of the dichloroacetyl group. Here we report the X-ray crystal structure of CmlS determined at 2.2 Å resolution, revealing a flavin monooxygenase domain shared by all FDHs, but also a unique ‘winged-helix’ C-terminal domain that creates a T-shaped tunnel leading to the halogenation active site. Intriguingly, the C-terminal tail of this domain blocks access to the halogenation active site, suggesting a structurally dynamic role during catalysis. The halogenation active site is notably nonpolar and shares nearly identical residues with Chondromyces crocatus tyrosyl halogenase (CndH), including the conserved Lys (K71) that forms the reactive chloramine intermediate. The exception is Y350, which could be used to stabilize enolate formation during substrate halogenation. The strictly conserved residue E44, located near the isoalloxazine ring of the bound flavin adenine dinucleotide (FAD) cofactor, is optimally positioned to function as a remote general acid, through a water-mediated proton relay, which could accelerate the reaction of the chloramine intermediate during substrate halogenation, or the oxidation of chloride by the FAD(C4α)-OOH intermediate. Strikingly, the 8α carbon of the FAD cofactor is observed to be covalently attached to D277 of CmlS, a residue that is highly conserved in the FDH family. In addition to representing a new type of flavin modification, this has intriguing implications for the mechanism of FDHs. Based on the crystal structure and in analogy to known halogenases, we propose a reaction mechanism for CmlS.  相似文献   

14.
为进一步验证棉花GhVHA-A基因的功能,该研究将棉花GhVHA-A基因构建到原核表达载体pET28a上,利用IPTG诱导其在大肠杆菌BL21(DE3)中高效表达,同时对重组大肠杆菌BL21(pET28a-GhVHA-A)进行抗逆性分析。结果表明:(1)半定量RT-PCR分析发现,棉花幼苗液泡膜H+-ATPase基因(GhVHA-A)表达水平受脱水和高盐胁迫诱导。(2)将1 872bp长的编码区序列连接至原核表达载体pET28a上,成功构建了原核表达载体pET28a-GhVHA-A;SDS-PAGE电泳检测结果表明,在70kD左右处有1条特异表达的蛋白质条带,与预期的目的产物大小一致。(3)重组菌BL21(pET28a-GhVHA-A)的抗逆性分析发现,重组菌对PEG6000(20%)和NaCl(0.5mol/L)的抗性明显高于对照菌株BL21(pET28a),表明GhVHA-A基因在大肠杆菌中表达后能够增强菌株的抗性。本研究结果为GhVHA-A基因在植物抗逆基因工程中的应用提供了理论依据。  相似文献   

15.
Cyanobacteria of the genus Microcystis are known to produce secondary metabolites of large structural diversity by nonribosomal peptide synthetase (NRPS) pathways. For a number of such compounds, halogenated congeners have been reported along with nonhalogenated ones. In the present study, chlorinated cyanopeptolin- and/or aeruginosin-type peptides were detected by mass spectrometry in 17 out of 28 axenic strains of Microcystis. In these strains, a halogenase gene was identified between 2 genes coding for NRPS modules in respective gene clusters, whereas it was consistently absent when the strains produced only nonchlorinated corresponding congeners. Nucleotide sequences were obtained for 12 complete halogenase genes and 14 intermodule regions of gene clusters lacking a halogenase gene or containing only fragments of it. When a halogenase gene was found absent, a specific, identical excision pattern was observed for both synthetase gene clusters in most strains. A phylogenetic analysis including other bacterial halogenases showed that the NRPS-related halogenases of Microcystis form a monophyletic group divided into 2 subgroups, corresponding to either the cyanopeptolin or the aeruginosin peptide synthetases. The distribution of these peptide synthetase gene clusters, among the tested Microcystis strains, was found in relative agreement with their phylogeny reconstructed from 16S-23S rDNA intergenic spacer sequences, whereas the distribution of the associated halogenase genes appears to be sporadic. The presented data suggest that in cyanobacteria these prevalent halogenase genes originated from an ancient horizontal gene transfer followed by duplication in the cyanobacterial lineage. We propose an evolutionary scenario implying repeated gene losses to explain the distribution of halogenase genes in 2 NRPS gene clusters that subsequently defines the seemingly erratic production of halogenated and nonhalogenated aeruginosins and cyanopeptolins among Microcystis strains.  相似文献   

16.
目的:构建鼠肝炎冠状病毒(MHV)非结构蛋白1(NSP1)及其突变体(NSP1 mu)的原核重组表达质粒,在大肠杆菌中分别融合表达重组NSP1及NSP1 mu。方法:以现有质粒载体为模板,扩增编码NSP1及NSP1 mu的基因片段,并克隆至pMD18-T克隆载体;菌落PCR鉴定阳性克隆并测序分析;将阳性克隆的目的片段亚克隆至表达载体pET-28a,并转化大肠杆菌TOP10感受态细胞,PCR和双酶切鉴定转化菌落;将阳性质粒转化大肠杆菌BL21(DE3)感受态细胞并加入IPTG诱导表达,SDS-PAGE和免疫印迹分析目的蛋白的表达。结果:PCR扩增得到表达NSP1及NSP1 mu的特异片段,并克隆到pMD18-T载体,测序结果正确无误;构建了NSP1和NSP1 mu的重组表达质粒,并在大肠杆菌BL21(DE3)中分别融合表达了重组NSP1及NSP1 mu,表达的目的蛋白均能与His单克隆抗体特异结合;用Ni-NTA琼脂糖试剂盒纯化重组蛋白,获得可溶性的NSP1及NSP1 mu,相对分子质量分别为27×103和28×103。结论:在大肠杆菌中分别表达并纯化获得了大量可溶性重组NSP1及NSP1 mu。  相似文献   

17.
GAS41是新发现的与神经胶质瘤密切相关的基因。为了对该基因进行深入的功能研究,成功地将GAS41基因构建于原核表达载体pQE—N3,转化BL21(DE3)获得融合表达产物。对含融合蛋白的包含体进行溶解和复性,通过免疫新西兰大白兔获得兔抗GAS41多克隆抗体。采用Western印迹技术,用该抗体检测GAS41基因的原核和真核表达产物,证明该抗体有较好的针对GAS41蛋白的专一性,可用于对GAS41的结构和功能研究。同时,用该抗体通过荧光免疫细胞进行定位分析发现,GAS41蛋白均匀分布于COS7细胞的细胞核中,提示GAS41可能是一个重要的转录因子。  相似文献   

18.
原核表达、纯化T4多聚核苷酸激酶,并尝试将纯化的T4 PNK用于短探针序列的连接。本研究以合成的pseT基因为模板,PCR扩增出带有NdeⅠ和Bam HⅠ位点的目的片段,构建pseT-pET-15b原核表达载体,并转入E. coli ER2566中诱导表达。Ni-Agarose亲和层析柱纯化重组蛋白后,再进行Western blot鉴定。用纯化后再浓缩的T4 PNK参与探针连接反应,并设置商品T4 PNK和阴性对照。PCR扩增成功获得大于900 bp的目的基因片段,原核表达载体pseT-pET-15b构建成功,经诱导表达的重组蛋白分子量大小约为35 kD,Western blotting确认蛋白表达正确,浓缩后的蛋白浓度达到826μg/m L。电泳结果显示,重组T4 PNK在探针连接中效果较好。本研究成功表达并纯化了可溶性的T4多聚核苷酸激酶,且具有较好的活性,该蛋白可进一步用于后续大批量探针连接反应或其他相关研究,具有一定实际应用价值。  相似文献   

19.
Rdc2 is the first flavin-dependent halogenase identified from fungi. Based on the reported structure of the bacterial halogenase CmlS, we have built a homology model for Rdc2. The model suggests an open substrate binding site that is capable of binding the natural substrate, monocillin II, and possibly other molecules such as 4-hydroxyisoquinoline (1) and 6-hydroxyisoquinoline (2). In vitro and in vivo halogenation experiments confirmed that 1 and 2 can be halogenated at the position ortho to the hydroxyl group, leading to the synthesis of the chlorinated isoquinolines 1a and 2a, respectively, which further expands the spectrum of identified substrates of Rdc2. This work revealed that Rdc2 is a useful biocatalyst for the synthesis of various halogenated compounds.  相似文献   

20.
Flavin-dependent halogenases involved in secondary metabolism in bacteria   总被引:2,自引:0,他引:2  
The understanding of biological halogenation has increased during the last few years. While haloperoxidases were the only halogenating enzymes known until 1997, it is now clear that haloperoxidases are hardly, if at all, involved in biosynthesis of more complex halogenated compounds in microorganisms. A novel type of halogenating enzymes, flavin-dependent halogenases, has been identified as a major player in the introduction of chloride and bromide into activated organic molecules. Flavin-dependent halogenases require the activity of a flavin reductase for the production of reduced flavin, required by the actual halogenase. A number of flavin-dependent tryptophan halogenases have been investigated in some detail, and the first three-dimensional structure of a member of this enzyme subfamily, tryptophan 7-halogenase, has been elucidated. This structure suggests a mechanism involving the formation of hypohalous acid, which is used inside the enzyme for regioselective halogenation of the respective substrate. The introduction of halogen atoms into non-activated alkyl groups is catalysed by non-heme FeII α-ketoglutarate- and O2-dependent halogenases. Examples for the use of flavin-dependent halogenases for the formation of novel halogenated compounds in in vitro and in vivo reactions promise a bright future for the application of biological halogenation reactions.  相似文献   

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