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We have recently constructed a physical map of the Streptomyces griseus 2247 genome using the restriction enzymes AseI and DraI, which revealed that this strain carries a 7.8 Mb linear chromosome. Based on this map, precise macrorestriction fragment and cosmid maps were constructed for both ends of the chromosome, which localized the afsA gene 150 Kb from the left end. Two afsA mutants were found to have suffered chromosomal deletions that removed the afsA locus. The sizes of the deletions were 20 and 130 Kb at the right end and 180 and 350 kb at the left end, respectively. Hybridization experiments using cosmids carrying a deletion endpoint indicated that the ends of the chromosome in the mutants were fused to form a circular chromosome. Received: 29 July 1996 / Accepted: 27 August 1996  相似文献   

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细菌基因组中存在大量的转录调控家族,这些转录调控家族在细菌的生长、代谢、外界信号感知与传递等方面发挥着至关重要的作用.DeoR家族是一类广泛分布于原核生物中的转录调控因子,主要参与调控细胞中多个生理过程,包括核苷酸类代谢、糖类代谢、致病菌的毒力以及链霉菌的次级代谢等.DeoR蛋白C末端的配体结合结构域,通常能够以相关代...  相似文献   

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The glucose kinase gene (glkA-ORF3) of Streptomyces coelicolor A3(2) plays an essential role in glucose utilisation and in glucose repression of a variety of genes involved in the utilisation of alternative carbon sources. These genes include dagA, which encodes an extracellular agarase that permits agar utilisation. Suppressor mutants of glkA-ORF3 deletion strains capable of utilising glucose (Glc+) arise at a frequency of about 10–5 on prolonged incubation. The Glc+ phenotype of the mutants is reversible (at a frequency of about 10–3) and reflects either the activation of a normally silent glucose kinase gene or the modification of an existing sugar kinase. Although the level of glucose kinase activity in the Glc+ supressor mutants is similar to that in the glkA + parental strain, glucose repression of dagA remains defective. Expression of the glucose kinase gene of Zymomonas mobilis in glkA-ORF3 mutants restored glucose utilisation, but not glucose repression of dagA. Over-expression of glkA-ORF3 on a high-copy-number plasmid failed to restore glucose repression of dagA in glkA-ORF3 mutants and led to loss of glucose repression of dagA in a glkA + strain. These results suggest that glucose phosphorylation itself is not sufficient for glucose repression and that glkA-ORF3 plays a specific regulatory role in triggering glucose repression in S. coelicolor A3(2).  相似文献   

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Three different two-dimensional polyacrylamide gel electrophoretic systems were employed for identification of individual ribosomal proteins of Streptomyces aureofaciens. Proteins of small subunits were resolved into 21 spots. Larger ribosomal subunits contained 35 proteins. The separated ribosomal proteins from 50 S subunits were transferred on nitrocellulose membranes for immunochemical estimations. Antibodies developed against 50 S proteins of S. aureofaciens and Escherichia coli were used for identification of structural homologies between 50 S proteins of the two species. Results of the experiments indicate that about one half of the 50 S proteins of S. aureofaciens share common immunochemical determinants with corresponding proteins of 50 S subunits of E. coli. Evidence is presented that acidic ribosomal protein SL5 of large ribosomal subunits of S. aureofaciens can be assembled to E. coli P0 cores lacking proteins L7/L12. Reconstitution of the P0 cores with proteins SL5 or L7/L12 led to restoration of 78% activity in polyphenylalanine synthesis.  相似文献   

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In many species of actinomycetes, carotenogenesis can be photoinduced. The capacity to respond to photoinduction is, however unstable and, in various strains of Streptomyces, is lost at a relatively high frequency. In Streptomyces setonii ISP5395, which normally produces no carotenoids, carotenoid-producing mutants can be obtained following protoplast regeneration. We report here the characterization of a gene, crtS, which was isolated from one such mutant and can confer on wild-type S. setonii ISP5395 cells the capacity to synthesize carotenoids. Sequence analysis of crtS reveals an open reading frame, which shows homology to genes that encode alternative sigma factors in Bacillus subtilis. We propose that crtS encodes a sigma factor which is necessary for the expression of a cryptic gene(s) for carotenoid biosynthesis in S. setonii ISP5395.  相似文献   

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谷氨酰胺转胺酶(TGase)的产量不足的问题一直限制其工业化生产规模,故采用基因组重排的方法,筛选高产谷氨酰胺转胺酶菌株。通过对不同制备条件下原生质体纯度和形成率的考量,获得制备原生质体的最优条件为以6mg/ml的溶菌酶浓度进行酶解,酶解时间2h。再优化融合条件,以2min紫外灭活和40min热灭活结合的方法挑选出融合子。通过两轮基因组重排,经过96孔板发酵高通量筛选和摇瓶发酵复筛验证,获得了一株产酶达7.12U/ml的茂源链霉菌,相比最初选用菌株的平均酶活提高65.5%。发酵结果显示,酶活提高的原因可能是在重组后原酶成熟更快、更彻底,且得到的菌株遗传稳定性良好。证明基因组重排能够有效提高菌株的产酶水平,同时为谷氨酰胺转胺酶产量提高提供理论依据。  相似文献   

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【目的】圈卷产色链霉菌全局性调控基因wblA阻断突变后,尼可霉素不再产生。RNA-seq和转录分析表明san7324基因在野生型菌株中可以正常转录,而在wblA阻断突变株(ΔwblA)中不能转录,为此本文旨在揭示san7324与尼可霉素产生的关系。【方法】利用同源双交换策略对san7324进行基因阻断,而后通过基因遗传回补及对尼可霉素生物合成相关基因的转录分析等方法研究san7324的功能。【结果】在相同培养条件下,阻断突变株Δsan7324与野生型菌株相比失去了合成尼可霉素的能力。我们通过同源比对发现圈卷产色链霉菌中还存在一个与san7324同源的基因san7324L,该基因的阻断导致尼可霉素产量降低。当san7324和san7324L两个基因同时被阻断后,得到的突变株Δsan7324-san7324L生长稀疏而且不能正常发育分化形成灰色表型的孢子或孢子链,只能形成白色表型的气生菌丝,同时也丧失了合成尼可霉素的能力。当这两个基因(san7324-san7324L)回补双突变株后,则恢复了野生型的表型(能形成孢子链并恢复尼可霉素的产生)。进一步的研究初步表明san7324和san7324L的阻断主要影响了尼可霉素生物合成基因簇中途径特异性调控基因sanG的转录水平,从而影响圈卷产色链霉菌的发育分化和尼可霉素的产生。【结论】该结果为链霉菌形态分化与生理代谢关系的研究提供了更多的证据,同时为多效调控基因wblA作用机制的阐明奠定了基础。  相似文献   

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