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1.
Abstract Phosphate interference in the production of cephalosporins by Streptomyces clavuligerus had been associated with repression of expandase (desacetoxycephalosporin C synthetase) and inhibition of both expandase and cyclase (isopenicillin N synthetase). The present work shows that inhibition of enzyme action could be prevented by increasing the Fe2+ added to the cell-free reactions or to resting cells incubated with chloramphenicol. Since excess Fe2+ could not reverse phosphate interference of antibiotic synthesis in complete fermentations, it is clear that the major cause of the phosphate effect in fermentations is phosphate repression, rather than phosphate inhibition caused by Fe2+ deprivation.  相似文献   

2.
Chemical structures of new piericidins produced by Streptomyces pactum are elucidated on the basis of mass, PMR and CMR spectral analyses. Consequently, these piericidins were shown to be constructed by a combination of variations in each four functionalities and carbon skeletons.  相似文献   

3.
洪斌  李元  Jozef Anné 《遗传学报》2003,30(3):209-214
以变铅青链霉菌为宿主研究了人INFβ(hTNFβ)的异源表达。应用链霉菌S.VENEZUELAC cbs762.70分泌产生的枯草杆菌蛋白酶抑制剂vsi基因的启动子、表达调控序列和分泌信号肽序列,分别对hTNFβ进行了直接分泌表达、分泌融合表达和胞内表达。将hTNFβ的cDNA分别直接融合于vsi信号肽序列下游2个氨基酸处、vsi全长基因之后以及vsi起始密码子ATG的下游,获得的表达盒分别克隆至链霉菌高拷贝质粒pIJ486,转化Streptomyces lividans TK24,获得了重组菌株S.lividans(pIJ486-hTNFβ),s.LIVIDANS(PIJ486-vsi-hTNFβ)和S.lividans(pIVPA-hTNFβ)。分别对不同的重组菌株进行摇瓶培养,对其培养的上清液和细胞裂解液进行SDS—PAGE和Westen杂交,结果表明:hTNFβ在重组菌株中均获得了表达,且直接分泌产物和胞内表达产物均具有生物学活性。hTNFβ直接分泌表达产物的分子量约为16kDa,NB培养基中培养48h时表达水平约为0.7mg/L。胞内表达产物分子量与对照重组hTNFβ一致(18.7kDa),但随培养时间的延长远步降解为16kDa,NB培养基中培养48h时的表达水平(25.1mg/L)远高于其直接分泌表达水平。  相似文献   

4.
An antibacterial and antifungal antibiotic was isolated from the culture filtrate of Streptomyces sp. 201, and its structure was determined as 2-methyl-heptyl isonicotinate by extensive use of NMR spectroscopy. The compound exhibited marked antimicrobial activity against Bacillus subtilis, Shigella sp., Klebsiella sp., E. coli, Proteus mirabilis, and the pathogenic fungi, Fusarium moniliforme, F. semitectum, F. oxysporum, F. solani and Rhizoctonia solani.  相似文献   

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6.
目的:进行紫杉醇药物生物合成前五步催化酶二磷酸盐合酶(GGPPS)、紫杉二烯合酶(TS)、紫杉二烯5α羟化酶(THY5α)、紫杉二烯5α-O-乙酰转移酶(TAT)和紫杉烷10β羟化酶(TDH)基因在大肠杆菌异源生物合成途径的组建及串联,实现单个表达及串联表达,并试图通过连续生物催化获得紫杉醇中间体紫衫二烯。方法:依据合成生物学中Brick基因组装方法,通过对载体pET30a的酶切位点进行定向改造,设计独特的BglⅡ/BamHⅠ和XbaⅠ/SpeⅠ串联表达盒,在大肠杆菌BM Rosetta(DE3)中表达产物。结果:设计多基因表达盒,实现紫杉醇药物生物合成前五步催化酶的单个表达,GGPPS和TS以及THY5α、TAT和TDH的串联表达。结论:利用BglBrick/BioBrick基因组装方法,可以实现紫杉醇生物合成催化酶的快速组装及后续表达。  相似文献   

7.
黄胜  李娜  周俊  何璟 《微生物学报》2012,52(1):30-37
【目的】很多链霉菌来源的天然产物的生物合成基因簇往往很大,用传统的cosmid载体很难完整的克隆和异源表达。本研究通过载体改造,成功构建出一个新的细菌人工染色体(BAC)载体,用于链霉菌来源的天然产物生物合成基因簇的克隆及异源表达实验。【方法】从复合型载体pCUGIBAC1出发,通过λRED介导的PCR-targeting方法,用链霉素抗性基因替换掉原有的氯霉素抗性基因标记,同时插入链霉菌中常用的安普拉霉素抗性标记、转移起始位点oriT、φC31整合酶基因int、整合位点attP等元件。【结果】成功构建出可装载链霉菌大片段DNA的BAC载体pMSBBACs。使用pMSBBACs构建出链霉菌U27的基因组BAC文库,平均插入片段大小为100 kb。选取其中一个大小为140 kb的BAC质粒进行功能验证,实验证明通过接合转移和原生质体转化的方法都能够将这个大型BAC质粒导入链霉菌模式菌株,并通过位点特异性重组整合到染色体中进行异源表达。【结论】BAC载体pMSBBACs可成功用于放线菌大片段基因组DNA的克隆和异源表达实验。  相似文献   

8.
利用ORF438启动子在链霉菌中表达透明颤菌血红蛋白   总被引:1,自引:0,他引:1  
利用ORF438启动子在链霉菌中表达透明颤菌血红蛋白崔风文杨胜利(中国科学院上海生物工程研究中心上海200233)1988年,由原核的透明颤菌(Vitreoscilaspp.)克隆到血红蛋白基因(vgb)[1],其后Magnolo等在天蓝链霉菌及变青...  相似文献   

9.
Adenosine 3':5' cyclic monophosphate seems to regulate antibiotic biosynthesis and secondary metabolism in tylosin-producing cultures of Streptomyces fradiae C373.1. A dose-dependent response is observed by exogenous additions of dibutyryl cyclic AMP (cAMP), and is related to the nutritional status of the culture. Addition of cAMP to cultures growing in nutritionally lean media caused higher cumulative antibiotic tigers and some cellular differentiation compared with the control. In nutritionally rich media, a qualitatively different behavior resulted: an almost instantaneous shift toward secondary metabolism occurred. The response is characterized by extensive cellular differentiation with little growth and only a trace of antibiotic production. The possible role of cyclic AMP n the regulation of tylosin biosynthesis and secondary metabolism and its relation to specific nutrient limitations in synthetic, defined media in Streptomyces fradiae is discussed. (c) 1994 John Wiley & Sons, Inc.  相似文献   

10.
The production of complex compounds from technically convenient microorganisms is an emerging route to the chemical diversity found in the surrounding environment. In this study, the antibiotic compound erythromycin A is produced from Escherichia coli as an alternative to native production through the soil bacterium Saccharopolyspora erythraea. By doing so, there is an opportunity to apply and refine engineering strategies for the manipulation of the erythromycin biosynthetic pathway and for the overproduction of this and other complex natural compounds. Previously, E. coli‐derived production was enabled by the introduction of the entire erythromycin pathway (20 genes total) using separately selectable expression plasmids which demonstrated negative effects on final biosynthesis through metabolic burden and plasmid instability. In this study, improvements to final production were made by altering the design of the expression plasmids needed for biosynthetic pathway introduction. Specifically, the total number of genes and plasmids was pruned to reduce both metabolic burden and plasmid instability. Further, a comparison was conducted between species‐specific (E. coli vs. S. coelicolor) protein chaperonins. Results indicate improvements in growth and plasmid retention metrics. The newly designed expression platform also increased erythromycin A production levels 5‐fold. In conclusion, the steps outlined in this report were designed to upgrade the E. coli erythromycin A production system, led to improved final compound titers, and suggest additional forms of pathway engineering to further improve results from heterologous production attempts. © 2013 American Institute of Chemical Engineers Biotechnol. Prog., 29:862–869, 2013  相似文献   

11.
链霉菌基因组及次生代谢研究进展   总被引:3,自引:0,他引:3  
吴雪昌  缪克排  钱凯先 《遗传学报》2005,32(11):1221-1226
链霉菌属革兰氏阳性放线菌,具有复杂的生活周期和次生代谢途径,并产生大量具有重要价值的天然代谢物。本文概述了链霉菌基因组染色体的独特结构与次生代谢途径的研究进展,重点论述了利用基因组信息改造和调控链霉菌次生代谢途径的研究成果。后基因组时代的功能基因组研究使人类能深入了解链霉菌家族,对链霉菌进行更加合理高效的遗传操作,为提高具有重要价值的天然代谢物的产量和获得新代谢物创造更有利的条件。  相似文献   

12.
The thermal degradation kinetics of pectin methylesterase (PME) from carrot and lettuce were studied. Fresh extracts were exposed to temperatures from 55 to 70 °C until the enzyme was inactivated. A model based on the presence of two forms of the enzyme, one active and one non-active, is proposed. The natural variability of the PME activity was taken into the model in the form of normally distributed random effects. The common model parameters obtained (cleavage constant (0.0395±0.0062 s?1), degradation constant (0.556±0.112 s?1), cleavage energy of activation (469±23 kJ mol?1) and degradation energy of activation (488±18 kJ mol?1)) show that the PME degradation kinetics of the two vegetables can be explained with a single set of parameters.  相似文献   

13.
拮抗细菌B9菌株抗菌物质的初步研究   总被引:2,自引:0,他引:2  
B9菌株是从番茄灰霉病发生严重植株的健康叶片上分离到的拮抗细菌。采用酸沉淀的方法从B9菌株的发酵液中得到抗菌物质的粗提物。该物质在中性和碱性条件下都能溶解于水和有机溶剂,在270~280 nm处有吸收峰,其成分可能是蛋白质。平板抑菌试验表明抗菌物质抑菌谱广,对供试的6种病原菌都有不同程度的抑菌作用。稳定性试验结果表明抗菌物质对温度比较稳定,经80~100℃处理10 min或者121℃(1.4 Pa/cm2)高温抑菌活性才显著降低;对紫外光稳定性差,随着紫外照射时间的延长抑菌活性逐渐减弱。  相似文献   

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15.
链霉菌FIM 95-F1产生的抗真菌抗生素S1   总被引:1,自引:0,他引:1  
放线菌FIM 95-F1的形态特征、培养特性及生理生化特征和16S rDNA序列分析表明该菌属于Strepto-myces castelarensis的一个变种,暂定名为S.castelarensis FIM 95-F1。本研究利用高速逆流色谱分离和结晶法相结合的方法从放线菌FIM 95-F1胞内分离纯化抗真菌抗生素S1。化合物理化性质和UV、IR、MS以及NMR等波谱分析结果表明化合物S1与抗真菌抗生素Scopafungin同质,为36元环大环内酯类抗生素。S1对白色念珠菌(Candida albicans)、黑曲霉(Aspergillus niger)及红酵母(Rhodotorula sp.)均有抗菌活性,其MIC分别为0.234、0.469μg/mL和0.234μg/mL。  相似文献   

16.
The diversity of indolocarbazole natural products results from the differences in oxidation states of the pyrroline ring moiety. In the biosynthetic pathways for staurosporine and rebeccamycin, two homologous enzymes having 64% identity, StaC and RebC, are responsible for the selective production of K252c, which has one oxo group at the pyrroline ring, and arcyriaflavin A, which has two. Although StaC has a FAD-binding motif, most StaC molecules do not contain FAD, and the protein cannot be reconstituted with FAD in vitro. In this study, we mutated Ala-118 in StaC by replacing a glutamine that is conserved in FAD monooxygenases, resulting in increased FAD content as well as catalytic activity. In addition, mutations around the substrate-binding sites of StaC and RebC can change the product selectivity. Specifically, StaC-N244R-V246T and RebC-F216V-R239N mutants produced substantial amounts of arcyriaflavin A and K252c, respectively.  相似文献   

17.
The production and isolation of a new toxic substance, Teleocidin, and its biological properties were previously reported1,2). Thereafter it has been found that an other strain of Streptomyces produced such specific toxic substance as Teleocidin in its cultured mycellium. Comparative tests of these two purified crystalline powders showed the new toxic substance resembles Teleocidin closely though differs in certain chemical properties. Therefore, the original Teleocidin is designated Teleocidin A, whereas that produced by a new strain of Streptomyces is named Teleocidin B, which had been tentatively called as the SK-toxic substance.

From the results of the chemical studies of Teleocidin B and its hydrogenated derivative, which was easily obtained as a crystalline form by the catalytic hydrogenation of Teleocidin B with Adam’s catalyst, molecular formula, C28H39~41N3O2 was postulated for Teleocidin B.

It was also recognized that an alcoholic hydroxyl, a lactam ring and a heterocyclic ring like indole or pyrrole structure existed as the functional groups of Teleocidin B.  相似文献   

18.
A new look at antibiotic resistance   总被引:1,自引:0,他引:1  
Abstract Since the discovery of antibiotic resistance in clinically important microbes, attention has focused properly on the profound medical aspects of this problem. However, studies of antibiotic resistance are of great interest in their own right for studies of gene regulation, evolution, chromosome structure, etc.; several resistance genes in clinical isolates are components of classical 'operon' structures. The construction of cloning vectors and gene transfer systems, particularly for interspecies studies, rely heavily on the use of antibiotic resistance genes, since these phenotypes can be used to select for DNA transfer between microbes, plants, and animals. Studies of the role of resistance mechanisms and their genetic determinants in antibiotic-producing organisms have shown that these functions play important roles in biosynthetic pathways and can provide important genetic and biochemical tools for the rational analysis of antibiotic production.  相似文献   

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Two new butenolides, (4S)‐4,10‐dihydroxydodec‐2‐en‐1,4‐olide ( 1 ) and (4S)‐4,8,10‐trihydroxy‐10‐methyldodec‐2‐en‐1,4‐olide ( 2 ), together with three known compounds, MKN‐003B ( 3 ), MKN‐003C ( 4 ), and cyclo(Ala‐Leu) ( 5 ), were isolated from the culture broth of a bacterium of the genus Streptomyces derived from soil environment. The structures of these compounds were elucidated on the basis of spectroscopic analysis. The inhibitory activities of the butenolides against eight pathogenic fungi were evaluated. All of the butenolides showed moderate‐or‐weak antifungal activities in a broth microdilution assay.  相似文献   

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