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1.
利用染色体步移策略,以尼可霉素生物合成相关的基因片段为探针,从圈卷产色链霉菌中克隆到了一个大约10kb的DNA片段。对其中1.8kb的PvuⅡ-SacⅡ片段进行了序列分析,结果表明:此片段中含有一个具有1170个核苷酸的完整开放阅读框,起始密码子为447位的ATG,终止密码子为1614位的TGA,推测其编码一个389个氨基酸的蛋白质产物。利用BLASTX程序进行了分析揭示,此基因编码一个肌氨酸单体  相似文献   

2.
Li  Wenli  Tan  Huarong 《Current microbiology》2003,46(6):0403-0407
A 6.3-kb BamHI-BglII DNA fragment was cloned from cos20 by using chromosome walking strategy. It was partially sequenced with the result that there is a possible ORF of 1272 nucleotides. The ORF designated sanV was deposited in GenBank under accession no. AF469955. Database search indicated that the deduced protein of sanV shows 28% identity and 44% similarity over 405 amino acid residues to the large component (E) of glutamate mutases from Clostridium cochlearium. Gene disruption was performed to study the function of sanV. It was found that sanV disruptants exhibited much poorer inhibition to the test strain than the wild-type S. ansochromogenes 7100. Furthermore, HPLC analysis indicated that the sanV disruptants almost did not produce nikkomycins X and Z, whereas they accumulated new nikkomycins Ox and Oz, which revealed that sanV is an important gene involved in the biosynthesis of the peptidyl moiety of nikkomycins. Received: 13 June 2002 / Accepted: 27 July 2002  相似文献   

3.
Li Y  Zeng H  Tan H 《Current microbiology》2004,49(2):128-132
A 2-kb SmaI DNA fragment was cloned from the cosmid library of Streptomyces ansochromogenes. This DNA fragment contains a complete open reading frame which is 1275 bp in length, designated sanS (GenBank accession no. AF322179). The deduced SanS protein consists of 424 amino acids and belongs to a superfamily of enzymes with an unusual ATP-grasp fold. The disruption and complementation of sanS indicated that sanS is essential for nikkomycin biosynthesis in Streptomyces ansochromogenes. The sanS gene was subcloned into expression vector pET23b and overexpressed in E. coli BL21 (DE3). The protein was then purified and showed ATPase activity.  相似文献   

4.
采用常规转化方法用来自天蓝色链霉菌J1 5 0 1的质粒pUC1 1 6 9(pMT6 6 0∷Tn45 5 6∷vph)多次转化尼可霉素产生菌圈卷产色链霉菌野生型 71 0 0的原生质体 ,均未得到转化子。采用限制性热衰减法于 5 0℃ ,3 0min溶菌制备 71 0 0的原生质体 ,获得了转化子 ,但转化频率极低 ,只有 0 4个转化子 μgDNA。用来自 71 0 0的pUC1 1 6 9再转化不含pUC1 1 6 9的 71 0 0原生质体 ,转化频率提高 1 0 3 ~ 1 0 4 倍。于 3 9℃ ,MM Vio条件下培养携带有pUC1 1 6 9的 71 0 0孢子 ,Tn45 6 0发生转座 ,筛选到 40 6 8个转座菌落 ,并从中得到 8株尼可霉素阻断突变株 ;对这 8株突变株的总DNA进行Southern杂交分析表明 ,Tn45 6 0至少在 4个不同的位点插入到 71 0 0的染色体上。用实验室已获得的与尼可霉素生物合成有关的 3 0kbDNA片段为探针和经不同酶切的 8株突变株的总DNA进行Southern杂交 ,结果表明 ,除阻断突变株Nik5有杂交信号且杂交信号大小均同野生型…  相似文献   

5.
链霉菌139能够产生一种新的胞外多糖139A,该多糖具有抗类风湿性关节炎的活性。为研究多糖139A的生物合成基因簇,首要策略是克隆到在多糖139A的生物合成中起关键作用的引导糖基转移酶基因。根据其他几个种属的糖基转移酶氨基酸序列的两个保守区域设计简并引物,通过PCR方法扩增出相应的DNA片段作为探针,从链霉菌139基因组文库中分离到引导糖基转移酶基因ste5,并定位于约32kb的基因簇上。序列分析发现其蛋白序列与引导糖基转移酶具有较高的同源性,其C-端含有A,B和C3个保守区,N-端具有5个跨膜区。引导糖基转移酶基因阻断突变株不能够产生多糖139A表明其参与多糖139A的生物合成。  相似文献   

6.
Nikkomycins are a group of peptidyl nucleoside antibiotics with potent fungicidal, insecticidal, and acaricidal activities. sanN was cloned from the partial genomic library of Streptomyces ansochromogenes 7100. Gene disruption and complementation analysis demonstrated that sanN is essential for nikkomycin biosynthesis in S. ansochromogenes. Primer extension assay indicated that sanN is transcribed from two promoters (sanN-P1 and sanN-P2), and sanN-P2 plays a more important role in nikkomycin biosynthesis. Purified recombinant SanN acts as a dehydrogenase to convert benzoate-CoA to benzaldehyde in a random-order mechanism in vitro, with respective Kcat/Km values of 3.8 mM-1s-1 and 12.0 mM-1s-1 toward benzoate-CoA and NADH, suggesting that SanN catalyzes the formation of picolinaldehyde during biosynthesis of nikkomycin X and Z components in the wild-type stain. These data would facilitate us to understand the biosynthetic pathway of nikkomycins and to consider the combinatorial synthesis of novel antibiotic derivatives.  相似文献   

7.
以天蓝色链霉菌的whiB基因为探针,从圈卷产色链霉菌7100的总DNA部分文库中克隆了含有whiB同源序列的28kb DNA片段,并对其中的14kb片段进行了序列测定。序列分析表明,该片段含有一个完整的开放阅读框—sawE。预测的蛋白质结构及同源性分析显示,sawE与天蓝色链霉菌孢子形成早期的关键基因whiB高度同源,编码产物为一个调控蛋白。sawE的破坏使圈卷产色链霉菌7100的分化终止在气生菌丝阶段,在延长培养时间的情况下仍保持白色的表型,菌丝不能分隔,不能形成成熟的灰色孢子,结果表明sawE基因是一个与圈卷产色链霉菌分化有关的重要基因。  相似文献   

8.
Zeng H  Tan H  Li J 《Current microbiology》2002,45(3):175-179
A 2.8-kb BamHI fragment was cloned from the cosmid library of Streptomyces ansochromogenes by using the 1.35-kb BamHI-ApaI fragment of sanO involved in nikkomycin biosynthesis as a probe. Sequence analysis showed that the BamHI fragment contains an open reading frame with 1191 bp, which was designated sanQ. In search of databases, the deduced product of sanQ gene has 56% similarity to the cytochrome P450. sanQ gene was inactivated by insertion of a kanamycin resistance gene. The resulting disruptants failed to produce nikkomycin X, but nikkomycin Z was at the same level as the wild type, indicating that sanQ is essential for the biosynthesis of nikkomycin X. Received: 26 November 2001 / Accepted: 21 December 2001  相似文献   

9.
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12.
Tan H  Tian Y  Yang H  Liu G  Nie L 《Archives of microbiology》2002,177(3):274-278
A 1.4-kb DNA fragment from Streptomyces ansochromogenes accelerated mycelium formation of S. ansochromogenes when present on a multicopy plasmid. The DNA fragment contains one complete open reading frame, designated samR, encoding a protein with 213 amino acids that contains a likely DNA-binding helix-turn-helix motif close to its N-terminus. The deduced SamR protein resembles the product of the hppR gene, which is involved in the regulation of catabolism of 3-(3-hydroxyphenyl) propionate in Rhodococcus globerulus. A samR disruption mutant was constructed that presented a bald phenotype and failed to form aerial hyphae and spores. We suggest that samR plays an important role in the emergence of aerial hyphae from substrate mycelium. An almost identical gene of Streptomyces coelicolor was also subjected to gene disruption. Surprisingly, the mutant was able to develop an aerial mycelium, but it remained white and deficient in sporulation instead of forming gray spores.  相似文献   

13.
Li W  Tan H 《Current microbiology》2003,46(6):403-407
A 6.3-kb BamHI- BglII DNA fragment was cloned from cos20 by using chromosome walking strategy. It was partially sequenced with the result that there is a possible ORF of 1272 nucleotides. The ORF designated sanV was deposited in GenBank under accession no. AF469955. Database search indicated that the deduced protein of sanV shows 28% identity and 44% similarity over 405 amino acid residues to the large component (E) of glutamate mutases from Clostridium cochlearium. Gene disruption was performed to study the function of sanV. It was found that sanV disruptants exhibited much poorer inhibition to the test strain than the wild-type S. ansochromogenes 7100. Furthermore, HPLC analysis indicated that the sanV disruptants almost did not produce nikkomycins X and Z, whereas they accumulated new nikkomycins O(x) and O(z), which revealed that sanV is an important gene involved in the biosynthesis of the peptidyl moiety of nikkomycins.  相似文献   

14.
A nitroalkane-oxidizing enzyme gene (naoA) was cloned from a genomic DNA library of Streptomyces ansochromogenes 7100. The deduced protein (NaoA) of this gene contains 363 amino acids and has high similarity to several nitroalkane-oxidizing enzymes from various micro-organisms. The naoA gene was subcloned into an expression vector pET23b and overexpressed in Escherichia coli BL21(DE3). The protein was then purified, and its characteristics were studied. Experimental results showed that NaoA can convert 1-nitropropane, 2-nitropropane and nitroethane into the corresponding carbonyl compounds. The optimal pH and temperature for NaoA was found to be pH 7-8 and 48-56 degrees C, respectively. The Km of NaoA for nitroethane is approximately 26.8 mm. NADH and nitro blue tetrazolium are strong inhibitors of NaoA, and thiol compounds and superoxide dismutase partially inhibit the enzyme activity. Therefore, superoxide may be an essential intermediate in the oxidation of nitroalkane by NaoA.  相似文献   

15.
Thioviridamide is a unique peptide antibiotic containing five thioamide bonds from Streptomyces olivoviridis. Draft genome sequencing revealed a gene (the tvaA gene) encoding the thioviridamide precursor peptide. The thioviridamide biosynthesis gene cluster was identified by heterologous production of thioviridamide in Streptomyces lividans.  相似文献   

16.
尼可霉素是一种新的抗真菌抗生素,在分离到的20多种活性单组分中,X、Z、I、J为主要生物活性组分。本文介绍了尼可霉素的结构,结构与活性的关系及其生物合成途径中有关基因的研究进展。  相似文献   

17.
The main siderophores produced by streptomycetes are desferrioxamines. Here we show that Streptomyces sp. ATCC 700974 and several Streptomyces griseus strains, in addition, synthesize a hitherto unknown siderophore with a catechol-peptide structure, named griseobactin. The production is repressed by iron. We sequenced a 26-kb DNA region comprising a siderophore biosynthetic gene cluster encoding proteins similar to DhbABCEFG, which are involved in the biosynthesis of 2,3-dihydroxybenzoate (DHBA) and in the incorporation of DHBA into siderophores via a nonribosomal peptide synthetase. Adjacent to the biosynthesis genes are genes that encode proteins for the secretion, uptake, and degradation of siderophores. To correlate the gene cluster with griseobactin synthesis, the dhb genes in ATCC 700974 were disrupted. The resulting mutants no longer synthesized DHBA and griseobactin; production of both was restored by complementation with the dhb genes. Heterologous expression of the dhb genes or of the entire griseobactin biosynthesis gene cluster in the catechol-negative strain Streptomyces lividans TK23 resulted in the synthesis and secretion of DHBA or griseobactin, respectively, suggesting that these genes are sufficient for DHBA and griseobactin biosynthesis. Griseobactin was purified and characterized; its structure is consistent with a cyclic and, to a lesser extent, linear form of the trimeric ester of 2,3-dihydroxybenzoyl-arginyl-threonine complexed with aluminum under iron-limiting conditions. This is the first report identifying the gene cluster for the biosynthesis of DHBA and a catechol siderophore in Streptomyces.Iron is an essential element for the growth and proliferation of nearly all microorganisms. In the presence of oxygen, the soluble ferrous iron is readily oxidized to its ferric form, which exists predominantly as a highly insoluble hydroxide complex at neutral pH. To overcome iron limitation, many bacteria synthesize and secrete low-molecular-weight, high-affinity ferric iron chelators, called siderophores (38, 53). Following the chelation of Fe3+ in the medium, the iron-siderophore complex is actively taken up by its cognate ABC transport system, and Fe3+ is subsequently released by reduction to Fe2+ and/or by hydrolysis of the siderophore (28, 32, 36). The three main classes of siderophores contain catecholates, hydroxamates, or (α-hydroxy-)carboxylates as iron-coordinating ligands, but mixed siderophores and siderophores containing other functional groups, such as diphenolates, imidazoles, and thiazolines, have also been found (16, 38).Siderophores containing peptide moieties are synthesized by proteins belonging to the nonribosomal peptide synthetase (NRPS) family (16, 38). These multimodular enzymes function as enzymatic assembly lines in which the order of the modules usually determines the order of the amino acids incorporated into the peptide (19, 34). Each module contains the complete information for an elongation step combining the catalytic functions for the activation of the amino acid by the adenylation (A) domain, the tethering of the corresponding adenylate to the terminal thiol of the enzyme-bound 4′-phosphopantetheinyl (4′-PP) cofactor by the peptidyl carrier protein (PCP) domain, and the formation of the peptide bond by the condensation (C) domain (26, 34, 52). At the end, the product is released by the C-terminal thioesterase (TE) domain by hydrolysis or by cyclization via intramolecular condensation. Each adenylation domain recognizes a specific amino acid, and its substrate specificity can be predicted by its sequence. An NRPS specificity-conferring code consisting of 10 nonadjacent amino acid residues in the A domain has been proposed (49). Exceptions to the “colinearity-rule” (19) have been discovered. For example, in the biosynthesis of the siderophores enterobactin and bacillibactin, all the modules in the NRPS are used iteratively, and the TE domain stitches the chains together into a cyclic product (35, 45). Enterobactin is the trilactone of 2,3-dihydroxybenzoyl-serine, and bacillibactin is the lactone of 2,3-dihydroxybenzoyl-glycyl-threonine.The typical siderophores produced by streptomycetes are desferrioxamines (24), and the genes encoding the enzymes for their biosynthesis have been identified (5). Recently, structurally different siderophores have been reported to be coproduced with desferrioxamines in some species, e.g., coelichelin in Streptomyces coelicolor (9, 30) and enterobactin in Streptomyces tendae (18). The genes encoding the proteins for the biosynthesis of enterobactin in S. tendae remain unknown.Here we describe the gene cluster for the biosynthesis of a new siderophore, named griseobactin, produced by Streptomyces sp. strain ATCC 700974 and some strains of Streptomyces griseus. By sequencing two cosmids isolated from a Streptomyces sp. strain ATCC 700974 genomic library, we assigned the encoded proteins to enzymes that convert chorismate to 2,3-dihydroxybenzoate (DHBA), and to proteins involved in nonribosomal peptide biosynthesis and in the export, uptake, and utilization of siderophores. Knockout mutagenesis and heterologous expression confirmed the requirement of this gene cluster for the biosynthesis of griseobactin. This is the first report on the identification of the genes responsible for DHBA and catechol siderophore biosynthesis in Streptomyces.  相似文献   

18.
19.
EDTA is a chelating agent, widely used in many industries. Because of its ability to mobilize heavy metals and radionuclides, it can be an environmental pollutant. The EDTA monooxygenases that initiate EDTA degradation have been purified and characterized in bacterial strains BNC1 and DSM 9103. However, the genes encoding the enzymes have not been reported. The EDTA monooxygenase gene was cloned by probing a genomic library of strain BNC1 with a probe generated from the N-terminal amino acid sequence of the monooxygenase. Sequencing of the cloned DNA fragment revealed a gene cluster containing eight genes. Two of the genes, emoA and emoB, were expressed in Escherichia coli, and the gene products, EmoA and EmoB, were purified and characterized. Both experimental data and sequence analysis showed that EmoA is a reduced flavin mononucleotide-utilizing monooxygenase and that EmoB is an NADH:flavin mononucleotide oxidoreductase. The two-enzyme system oxidized EDTA to ethylenediaminediacetate (EDDA) and nitrilotriacetate (NTA) to iminodiacetate (IDA) with the production of glyoxylate. The emoA and emoB genes were cotranscribed when BNC1 cells were grown on EDTA. Other genes in the cluster encoded a hypothetical transport system, a putative regulatory protein, and IDA oxidase that oxidizes IDA and EDDA. We concluded that this gene cluster is responsible for the initial steps of EDTA and NTA degradation.  相似文献   

20.
S.tenebrarius H6主要产生安普霉素、氨甲酰妥布霉素和氨甲酰卡那霉素B,其中后两者仅在3′位有差异。为克隆相关基因,根据已报道的aprD3、livY、gentY基因设计兼并性PCR引物,并采用SON-PCR(singleoligonucleotide nested PCR)方法和LASP-PCR(linear amplification single primer PCR)方法,扩增获得部分SCD1基因,Blast分析为短链脱氢酶基因。采用基因阻断技术,使S.tenebrariusH6中SCD1基因失活。与野生菌株相比,变株的抗生素组分和含量几乎没有变化,但变株产孢子能力下降,且产孢子时间推迟,推测该基因与孢子的生成调节相关。  相似文献   

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