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1.
Specifically designed PCR primers were applied to amplify a segment of dTDP-glucose synthase gene from six actinomycete strains. About 300-bp or 580-bp DNA fragments were obtained from all the organisms tested. By DNA sequence analysis, seven amplified fragments showed high homology with dTDP-glucose synthase genes that participate in the biosynthesis of secondary metabolites or in deoxy-sugar moieties in lipopolysaccharides. In addition, we have cloned a 45-kb region of DNA from Streptomyces spectabilis ATCC27741, a spectinomycin producer which contained the dTDP-glucose synthase and dTDP-glucose 4,6-dehydratase genes named spcD and spcE, respectively. The spcE gene was expressed in Escherichia coli and the activity was assayed in cell extracts. The enzyme showed substrate specificity only to dTDP-glucose.  相似文献   

2.
Räty K  Kantola J  Hautala A  Hakala J  Ylihonko K  Mäntsälä P 《Gene》2002,293(1-2):115-122
We have cloned and sequenced polyketide synthase (PKS) genes from the aclacinomycin producer Streptomyces galilaeus ATCC 31,615. The sequenced 13.5-kb region contained 13 complete genes. Their organization as well as their protein sequences showed high similarity to those of other type II PKS genes. The continuous region included the genes for the minimal PKS, consisting of ketosynthase I (aknB), ketosynthase II (aknC), and acyl carrier protein (aknD). These were followed by the daunomycin dpsC and dpsD homologues (aknE2 and F, respectively), which are rare in type II PKS clusters. They are associated with the unusual starter unit, propionate, used in the biosynthesis of aklavinone, a common precursor of aclacinomycin and daunomycin. Accordingly, when aclacinomycins minimal PKS genes were substituted for those of nogalamycin in the plasmid carrying genes for auramycinone biosynthesis, aklavinone was produced in the heterologous hosts. In addition to the minimal PKS, the cloned region included the PKS genes for polyketide ketoreductase (aknA), aromatase (aknE1) and oxygenase (aknX), as well as genes putatively encoding an aklanonic acid methyl transferase (aknG) and an aklanonic acid methyl ester cyclase (aknH) for post-polyketide steps were found. Moreover, the region carried genes for an activator (aknI), a glycosyl transferase (aknK) and an epimerase (aknL) taking part in deoxysugar biosynthesis.  相似文献   

3.
A 65-kb region of DNA from Streptomyces viridochromogenes Tü57, containing genes encoding proteins involved in the biosynthesis of avilamycins, was isolated. The DNA sequence of a 6.4-kb fragment from this region revealed four open reading frames (ORF1 to ORF4), three of which are fully contained within the sequenced fragment. The deduced amino acid sequence of AviM, encoded by ORF2, shows 37% identity to a 6-methylsalicylic acid synthase from Penicillium patulum. Cultures of S. lividans TK24 and S. coelicolor CH999 containing plasmids with ORF2 on a 5.5-kb PstI fragment were able to produce orsellinic acid, an unreduced version of 6-methylsalicylic acid. The amino acid sequence encoded by ORF3 (AviD) is 62% identical to that of StrD, a dTDP-glucose synthase from S. griseus. The deduced amino acid sequence of AviE, encoded by ORF4, shows 55% identity to a dTDP-glucose dehydratase (StrE) from S. griseus. Gene insertional inactivation experiments of aviE abolished avilamycin production, indicating the involvement of aviE in the biosynthesis of avilamycins.  相似文献   

4.
We have analyzed an anthracycline biosynthesis gene cluster fromStreptomyces nogalater. Based on sequence analysis, a contiguous region of 11 kb is deduced to include genes for the early steps in anthracycline biosynthesis, a regulatory gene (snoA) promoting the expression of the biosynthetic genes, and at least one gene whose product might have a role in modification of the glycoside moiety. The three ORFs encoding a minimal polyketide synthase (PKS) are separated from the regulatory gene (snoA) by a comparatively AT-rich region (GC content 60%). Subfragments of the DNA region were transferred toStreptomyces galilaeus mutants blocked in aclacinomycin biosynthesis, and to a regulatory mutant ofS. nogalater. TheS. galilaeus mutants carrying theS. nogalater minimal PKS genes produced auramycinone glycosides, demonstrating replacement of the starter unit for polyketide biosynthesis. The product ofsnoA seems to be needed for expression of at least the genes for the minimal PKS.  相似文献   

5.
利用PCR技术将本室克隆到的强启动功能片段取代麦迪霉素丙酰化酶基因(mpt)的启动子或与mpt基因自身启动子串连,获得含mPt重组质粒pCHFPE3和pCHFPE2。用含有这两个质粒的Streptomyces lividans TK24对螺旋霉素进行微生物转化,结果表明,与含有原启动子的mpt.S.lividans TK24(p.WFPE)相比,丙酰螺旋霉素的组分比例分别提高了89.02%和58.53%。含重组质粒pCHFPE2的螺旋霉素产生菌S.spiramyceticus发酵产物中丙酰螺旋霉素的组分也有较大辐度的提高。说明利用该强启动功能片段可以提高麦迪霉素丙酰化酶基因的表达。  相似文献   

6.
An efficient plasmid transformation system forS. mycarofaciens 1748 has been established. In order to determine the function of MKR gene in S.mycarofaciens 1748, the gene disruption experiment was carried out. For this purpose the plasmid pKC1139 was used. A recombinant strain with white spore appeared, in contrast to the grey-colour spore of S.myarofaciens 1748. This suggested that homologous recombination between plasmidborne MKR gene sequence and the chromosome of S.mycarofaciens 1748 had occurred. A Southern hybridization experiment using a-32P-labelled MKR gene as probe indicated that the desired integration event had occurred in the recombinant. The result of gene disruption showed that the alteration of this gene in the chromosome of S.mycarofaciens 1748 made sporulating colonies remain white instead of taking on the typical grey colour of sporulating wild type colonies, suggesting that MKR gene is involved in the biosynthesis of a spore pigment. The recombinant strain was incubated with fermentation medium optimised for midecamycin production. A TLC assay showed that the recombinant strain produced midecamycin in quantities comparable to that ofS. mycarofaciens 1748. A pCN8B12 was a clone from genomic library of midecamycin producing strain which contained a 28-kb DNA insert. The 28-kb DNA fragment contained act I-homologous and act III-homologous regions. he PKS (act I-homologous) and MKR (act III-homologous) genes that define spore pigment of midecamycin producing strain were Jocalized by restriction endonuclease digestion with pCN8B12, indicating that they are separated by about 10 kb DNA. The polyketide synthase gene cluster of simila; organization has not been reported yet. Project supported by the National Natural Science Foundation of China.  相似文献   

7.
麦迪霉素产生菌酮基还原酶基因的研究   总被引:3,自引:0,他引:3  
将麦迪霉素产生菌基因文库中与放线紫红索酮基还原酶基因actⅢ有同源性的4·0kb DNA片段克隆到质粒载体pWHM3中,构成重组质粒pCB4。将质粒pCB4转入酮基还原酶基因缺陷菌株——加利利链霉菌ATCC3167l中,得到转化子。转化子发酵产物经TLC和HPLC分析证明是阿克拉菌酮,与加利利链霉菌原株ATCC31133的产物相同,说明麦迪霉素产生菌酮基还原酶基因互补了加利利链霉菌ATCC31671中缺陷的酮基还原酶基因,使其恢复了产生阿克拉菌酮的能力。4.Okb DNA片段插入方向相反的重组质粒pCBR4在加利利链霉菌ATCC31671中发酵产物经TLC分析证明也是阿克拉菌酮,这说明4.0kbDNA片段中麦迪霉素产生菌酮基还原酶基因具有自身的启动子。对4.0kb DNA片段进行了限制酶酶切分析,建立了其酶切图谱。以actⅢ基因为探针,经分子杂交以及亚克隆和DNA转化实验,将麦迪霉索产生菌酮基还原酶基因定位于BssH Ⅱ—BamH Ⅰ 1.3kb DNA片段上。对1.3kb DNA片段核苷酸序列分析结果表明:此1.3kbDNA片段中含有一个独立的ORF,起始密码ATG,终止密码TAG,含783bp;在起始密码上游有GGAGG5个核苷酸SD序列;此ORF编码260个氨基酸,与actⅢ基因编码的261个氨基酸相似性为77.4%,相同性为66.7%,对麦迪霉素产生苗酮基还原酶基因的可能作用进行了讨论。  相似文献   

8.
A contiguous region of about 30 kbp of DNA putatively encoding reactions in daunomycin biosynthesis was isolated from Streptomyces sp. strain C5 DNA. The DNA sequence of an 8.1-kbp EcoRI fragment, which hybridized with actI polyketide synthase (PKS) and actIII polyketide reductase (PKR) gene probes, was determined, revealing seven complete open reading frames (ORFs), two in one cluster and five in a divergently transcribed cluster. The former two genes are likely to encode PKR and a bifunctional cyclase/dehydrase. The five latter genes encode: (i) a homolog of TcmH, an oxygenase of the tetracenomycin biosynthesis pathway; (ii) a PKS Orf1 homolog; (iii) a PKS Orf2 homolog (chain length factor); (iv) a product having moderate sequence identity with Escherichia coli beta-ketoacyl acyl carrier protein synthase III but lacking the conserved active site; and (v) a protein highly similar to several acyltransferases. The DNA within the 8.1-kbp EcoRI fragment restored daunomycin production to two dauA non-daunomycin-producing mutants of Streptomyces sp. strain C5 and restored wild-type antibiotic production to Streptomyces coelicolor B40 (act VII; nonfunctional cyclase/dehydrase), and to S. coelicolor B41 (actIII) and Streptomyces galilaeus ATCC 31671, strains defective in PKR activity.  相似文献   

9.
Summary Cloned DNA encoding polyketide synthase (PKS) genes from one Streptomyces species was previously shown to serve as a useful hybridisation probe for the isolation of other PKS gene clusters from the same or different species. In this work, the actI and actIII genes, encoding components of the actinorhodin PKS of Streptomyces coelicolor, were used to identify and clone a region of homologous DNA from the monensin-producing organism S. cinnamonensis. A 4799 by fragment containing the S. cinnamonensis act-homologous DNA was sequenced. Five open reading frames (ORFs 1–5) were identified on one strand of this DNA. The five ORFs show high sequence similarities to ORFs that were previously identified in the granaticin, actinorhodin, tetracenomycin and whiE PKS gene clusters. This allowed the assignment of the following putative functions to these five ORFS : a heterodimeric -ketoacyl synthase (ORF1 and ORF2), an acyl carrier protein (ORF3), a -ketoacyl reductase (ORF5), and a bifunctional cyclase/dehydrase (ORF4). The ORFs are encoded in the order ORFl-ORF2-ORF3-ORF5-ORF4, and ORFs-1 and -2 show evidence for translational coupling. This act-homologous region therefore appears to encode a PKS gene cluster. A gene disruption experiment using the vector pGM 160, and other evidence, suggests that this cluster is not essential for monensin biosynthesis but rather is involved in the biosynthesis of a cryptic aromatic polyketide in S. cinnamonensis. An efficient plasmid transformation system for S. cinnamonensis has been established, using the multicopy plasmids pWOR120 and pWOR125.  相似文献   

10.
The biosynthesis of the aromatic polyene macrolide antibiotic candicidin, produced by Streptomyces griseus IMRU 3570, begins with a p-aminobenzoic acid (PABA) molecule which is activated to PABA-CoA and used as starter for the head-to-tail condensation of four propionate and 14 acetate units to produce a polyketide molecule to which the deoxysugar mycosamine is attached. Using the gene coding for the PABA synthase ( pabAB) from S. griseusIMRU 3570 as the probe, a 205-kb region of continuous DNA from the S. griseus chromosome was isolated and partially sequenced. Some of the genes possibly involved in the biosynthesis of candicidin were identified including part of the modular polyketide synthase (PKS), genes for thioesterase, deoxysugar biosynthesis, modification, transport, and regulatory proteins. The regulatory mechanisms involved in the production of candicidin, such as phosphate regulation, were studied using internal probes for some of the genes involved in the biosynthesis of the three moieties of candicidin (PKS, aromatic moiety and amino sugar). mRNAs specific for these genes were detected only in the production medium (SPG) but not in the SPG medium supplemented with phosphate or in the inoculum medium, indicating that phosphate represses the expression of genes involved in candicidin biosynthesis. The modular architecture of the candicidin PKS and the availability of the PKSs involved in the biosynthesis of three polyene antibiotics (pimaricin, nystatin, and amphotericin B) shall make possible the creation of new, less toxic and more active polyene antibiotics through combinatorial biosynthesis and targeted mutagenesis.  相似文献   

11.
Nonactin is the parent compound of a group of highly atypical polyketide metabolites produced by Streptomyces griseus subsp. griseus ETH A7796. In this paper we describe the isolation, sequencing, and analysis of 15? omitted?559 bp of chromosomal DNA, containing the potential nonactin biosynthesis gene cluster, from S. griseus subsp. griseus ETH A7796. Fourteen open reading frames were observed in the DNA sequence. Significantly, type II polyketide synthase (PKS) homologues were discovered in an apparent operon structure, which also contained the nonactate synthase gene (nonS), clustered with the tetranactin resistance gene. The deduced products of two of the genes (nonK and nonJ) are quite unusual ketoacyl synthase (KAS) alpha and KASbeta homologues. We speculate that nonactic acid, the polyketide precursor of nonactin, is synthesized by a type II PKS system.  相似文献   

12.
麦迪霉素产生菌生米卡链霉菌1748变株68的特性研究   总被引:3,自引:1,他引:2  
A stable mutant No. 68 was obtained by treatment of S. mycarofaciens 1748 spores at high temperature. The electromicroscopic examination has shown that the mutant No. 68 and parent strain 1748 both have the spore chains of the spiratype. The spores of both strain are cylindrical in shape. The only difference is that the spores of the mutant No. 68 are of smooth surface, but the 1748 are of thorny. The physiological characteristics of both strains are also very similar with slight differences in utilization of few carbon sources and in cultural characters in few medium. Feeding experiment has shown that the mutant No. 68 was blocked in the formation of the macrolide lactone in the midecamycin biosynthetic pathway. This suggested that the mutant No. 68 might be a polyketide synthase genes deficient mutant. The ability of the mutant No. 68 to convert spiramycin into 4"-propionylspiramycin indicated that the mutant No. 68 contained the midecamycin 4"-propionyltransferase and could be used for microbial bioconversion of spiramycin into 4"-propionylspiramycin.  相似文献   

13.
An efficient plasmid transformation system forS. mycarofaciens 1748 has been established. In order to determine the function of MKR gene in S.mycarofaciens 1748, the gene disruption experiment was carried out. For this purpose the plasmid pKC1139 was used. A recombinant strain with white spore appeared, in contrast to the grey-colour spore of S.myarofaciens 1748. This suggested that homologous recombination between plasmidborne MKR gene sequence and the chromosome of S.mycarofaciens 1748 had occurred. A Southern hybridization experiment using a-32P-labelled MKR gene as probe indicated that the desired integration event had occurred in the recombinant. The result of gene disruption showed that the alteration of this gene in the chromosome of S.mycarofaciens 1748 made sporulating colonies remain white instead of taking on the typical grey colour of sporulating wild type colonies, suggesting that MKR gene is involved in the biosynthesis of a spore pigment. The recombinant strain was incubated with fermentation medium optimised for midecamycin production. A TLC assay showed that the recombinant strain produced midecamycin in quantities comparable to that ofS. mycarofaciens 1748. A pCN8B12 was a clone from genomic library of midecamycin producing strain which contained a 28-kb DNA insert. The 28-kb DNA fragment contained act I-homologous and act III-homologous regions. he PKS (act I-homologous) and MKR (act III-homologous) genes that define spore pigment of midecamycin producing strain were Jocalized by restriction endonuclease digestion with pCN8B12, indicating that they are separated by about 10 kb DNA. The polyketide synthase gene cluster of simila; organization has not been reported yet.  相似文献   

14.
The biosynthetic gene cluster for the 26-membered ring of the polyene macrolide pimaricin extends for about 110 kilobase pairs of contiguous DNA in the genome of Streptomyces natalensis. Two sets of polyketide synthase (PKS) genes are separated by a group of small polyketide-functionalizing genes. Two of the polyketide synthase genes, pimS0 and pimS1, have been fully sequenced and disrupted proving the involvement of each of these genes in pimaricin biosynthesis. The pimS0 gene encodes a relatively small acetate-activating PKS (approximately 193 kDa) that appears to work as a loading protein which "presents" the starter unit to the second PKS subunit. The pimS1 gene encodes a giant multienzyme (approximately 710 kDa) harboring 15 activities responsible for the first four cycles of chain elongation in pimaricin biosynthesis, resulting in formation of the polyene chromophore.  相似文献   

15.
16.
Wu K  Chung L  Revill WP  Katz L  Reeves CD 《Gene》2000,251(1):81-90
FK520 (ascomycin) is a macrolide produced by Streptomyces hygroscopicus var. ascomyceticus (ATCC 14891) that has immunosuppressive, neurotrophic and antifungal activities. To further elucidate the biosynthesis of this and related macrolides, we cloned and sequenced an 80kb region encompassing the FK520 gene cluster. Genes encoding the three polyketide synthase (PKS) subunits (fkbB, fkbC and fkbA), the peptide synthetase (fkbP), the 31-O-methyltransferase (fkbM), the C-9 hydroxylase (fkbD) and the 9-hydroxyl oxidase (fkbO) had the same organization as the genes reported in the FK506 gene cluster of Streptomyces sp. MA6548 (Motamedi, H., Shafiee, A., 1998. The biosynthetic gene cluster for the macrolactone ring of the immunosuppressant FK506. Eur. J. Biochem. 256, 528-534). Disruption of a PKS gene in the cluster using the φC31 phage vector, KC515, led to antibiotic non-producing strains, proving the identity of the cluster. Previous labeling data have indicated that FK520 biosynthesis uses novel polyketide extender units (Byrne, K.M., Shafiee, A., Nielson, J., Arison, B., Monaghan, R.L., Kaplan, L., 1993. The biosynthesis and enzymology of an immunosuppressant, immunomycin, produced by Streptomyces hygroscopicus var, ascomyceticus. Dev. Ind. Microbiol. 32, 29-45). Genes in the flanking regions of the FK520 cluster were identified that appear to be involved in synthesis of these extender units. All but two of these genes were homologous to genes with known function. In addition to a crotonyl-CoA reductase gene (fkbS), at least two other genes are proposed to be involved in biosynthesis of the atypical PKS extender unit ethylmalonyl-CoA, which accounts for the ethyl side chain on C-21 of FK520. A set of five contiguous genes (fkbGHIJK) is proposed to be involved in biosynthesis of an unusual PKS extender unit bearing an oxygen on the alpha-carbon, and leading to the 13- and 15-methoxy side chains. These putative precursor synthesis genes in the flanking regions of the FK520 cluster are not found in the flanking regions of the rapamycin cluster (Molnár, I., Aparicio, J.F., Haydock, S.F., Khaw, L.E., Schwecke, T., K?nig, A., Staunton, J., Leadlay, P.F., 1996. Organisation of the biosynthetic gene cluster for rapamycin in Streptomyces hygroscopicus: analysis of genes flanking the polyketide synthase. Gene 169, 1-7), consistent with labeling data showing that rapamycin biosynthesis uses only malonyl and methylmalonyl extender units.  相似文献   

17.
本研究利用基因挖掘技术从球孢白僵菌(Beauveria bassiana)基因组中获得聚酮合酶(PKS)基因,并对这些基因序列进行生物信息学分析预测其功能,同时检测这些基因在不同培养基培养条件下的表达情况。结果显示:球孢白僵菌中含有13个PKS(Bdass1~13)基因,结构域分析显示球孢白僵菌中有还原型PKS 8个,非还原型PKS 2个,杂合型NRPS/PKS 3个;聚类分析显示Bdass8参与卵孢白僵菌素生物合成,Bdass5可能参与洛伐他汀九酮体的生物合成、Bdass4可能参与伏马菌素的生物合成、Bdass11可能参与phenolthiocerol的生物合成;非还原型PKS中Bdass7和Bdass10可能参与分生孢子色素的合成,Bdass1、Bdass2、Bdass3、Bdass6、Bdass9、Bdass12、Bdass13分别与其他未知聚酮合酶形成独立的分支;不同的PKS基因在不同培养基培养条件下其表达情况差异非常显著,如Bdass8、Bdass10和Bdass11在5种培养基上均强烈表达,Bdass4、Bdass6在5种培养基上微弱表达,Bdass1、Bdass5、Bdass11、Bdass12、Bdass13仅在几种培养基上表达,Bdass2仅在INO培养上微弱表达,Bdass3、Bdass7在5种培养基上均不表达。该研究为球孢白僵菌中PKS基因的功能鉴定奠定基础。  相似文献   

18.
Development of host microorganisms for heterologous expression of polyketide synthases (PKS) that possess the intrinsic capacity to overproduce polyketides with a broad spectrum of precursors supports the current demand for new tools to create novel chemical structures by combinatorial engineering of modular and other classes of PKS. Streptomyces fradiae is an ideal host for development of generic polyketide-overproducing strains because it contains three of the most common precursors—malonyl-CoA, methylmalonyl-CoA and ethylmalonyl-CoA—used by modular PKS, and is a host that is amenable to genetic manipulation. We have expanded the utility of an overproducing S. fradiae strain for engineered biosynthesis of polyketides by engineering a biosynthetic pathway for methoxymalonyl-ACP, a fourth precursor used by many 16-membered macrolide PKS. This was achieved by introducing a set of five genes, fkbG–K from Streptomyces hygroscopicus, putatively encoding the methoxymalonyl-ACP biosynthetic pathway, into the S. fradiae chromosome. Heterologous expression of the midecamycin PKS genes in this strain resulted in 1 g/l production of a midecamycin analog. These results confirm the ability to engineer unusual precursor pathways to support high levels of polyketide production, and validate the use of S. fradiae for overproduction of 16-membered macrolides derived from heterologous PKS that require a broad range of precursors.  相似文献   

19.
The tallysomycins (TLMs) belong to the bleomycin (BLM) family of antitumor antibiotics. The BLM biosynthetic gene cluster has been cloned and characterized previously from Streptomyces verticillus ATCC 15003, but engineering BLM biosynthesis for novel analogs has been hampered by the lack of a genetic system for S. verticillus. We now report the cloning and sequencing of the TLM biosynthetic gene cluster from Streptoalloteichus hindustanus E465-94 ATCC 31158 and the development of a genetic system for S. hindustanus, demonstrating the feasibility to manipulate TLM biosynthesis in S. hindustanus by gene inactivation and mutant complementation. Sequence analysis of the cloned 80.2 kb region revealed 40 open reading frames (ORFs), 30 of which were assigned to the TLM biosynthetic gene cluster. The TLM gene cluster consists of nonribosomal peptide synthetase (NRPS) genes encoding nine NRPS modules, a polyketide synthase (PKS) gene encoding one PKS module, genes encoding seven enzymes for deoxysugar biosynthesis and attachment, as well as genes encoding other biosynthesis, resistance, and regulatory proteins. The involvement of the cloned gene cluster in TLM biosynthesis was confirmed by inactivating the tlmE glycosyltransferase gene to generate a TLM non-producing mutant and by restoring TLM production to the DeltatlmE::ermE mutant strain upon expressing a functional copy of tlmE. The TLM gene cluster is highly homologous to the BLM cluster, with 25 of the 30 ORFs identified within the two clusters exhibiting striking similarities. The structural similarities and differences between TLM and BLM were reflected remarkably well by the genes and their organization in their respective biosynthetic gene clusters.  相似文献   

20.
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