• Title/Summary/Keyword: regulatory mutant

Search Result 157, Processing Time 0.027 seconds

Effect of deletion mutants in the regulatory region of transcriptional regulation of glpD and glpE genes (glpD와 glpE 유전자의 조절영역 결손변이주가 전사조절에 미치는 영향)

  • 정희태;최용악;정수열
    • Journal of Life Science
    • /
    • v.5 no.4
    • /
    • pp.162-169
    • /
    • 1995
  • The glpD genes encoding gly-3-p dehydrogenase is essential for the aerobic growth of E. coli on glycerol or gly-3-p. The glpE gene, the function of which is unknownm is transcribed divergently with respect to glpD gene. Expression of the adjacent but divergently transcribed glpD the glpE genes is positively regulated by the cAMP-CRP complex. In this study, for a precise investigation of the functional elements in the regulatory region for transcription activation by cAMP-CRP, deletion mutation have been introducted into the regulatory region. The effect of the deletion mutant on transcriptional regulation was tested in vivo by $\beta$-galctosidase activity. Deletion mutants in the regulatory region of glpD demonstrated that the presence of the CRP-binding site resulted in an sixfold increase in promoter activity. And also deletion mutants of glpE gene demonstrated that the presence of the CRP-binding site resulted in an eightfold increase in promoter activity. Insertion of 22 bp oligomer in the deletion mutants has shown that the CRP binding site is need for maximal expression of glpD and glpE genes. glpD and glpE gene, cAMP-CRP complex, deletion mutant, transcriptional regulation.

  • PDF

Proteomic Analysis of the GacA Response Regulator in Pseudomonas chlororaphis O6

  • Anderson, Anne J.;Kim, Young Cheol
    • Research in Plant Disease
    • /
    • v.24 no.2
    • /
    • pp.162-169
    • /
    • 2018
  • The GacS/GacA system in the root colonizer Pseudomonas chlororaphis O6 is a key regulatory system of many traits relevant to the plant probiotic nature of this bacterium. The work in this paper elucidates proteins using proteomics approach in P. chlororaphis O6 under the control of the cytoplasmic regulatory protein, GacA. A gacA mutant of P. chlororaphis O6 showed loss in production of phenazines, acyl homoserine lactones, hydrogen cyanide, and protease, changes that were associated with reduced in vitro antifungal activity against plant fungal pathogens. Production of iron-chelating siderophore was significantly enhanced in the gacA mutant, also paralleling changes in a gacS mutant. However, proteomic analysis revealed proteins (13 downregulated and 7 upregulated proteins in the mutant compared to parental strain) under GacA control that were not apparent by a proteomic study of a gacS mutant. The putative identity of the downregulated proteins suggested that a gacA mutant would have altered transport potentials. Notable would be a predicted loss of type-VI secretion and PEP-dependent transport. Study of mutants of these GacA-regulated proteins will indicate further the features required for probiotic potential in this rhizobacterium.

On a highly proteolytic mutant strain of Aspergillus flavus (Aspergillus flavus의 강력 protease생성 돌연변이의 유발)

  • 이영녹;박용근;고상균
    • Korean Journal of Microbiology
    • /
    • v.18 no.2
    • /
    • pp.51-58
    • /
    • 1980
  • Mutational experiments were performed to improved to improve the protease productivity of Aspergillus flavus KU 153, which is selected among the wild strains. A UV-induced mutant strain having high protease productivity was obtained by the use of the clear zone method as a simple criterion for a primary screening test. Neutral and alkaline protease activities of hte mutant strain were higher than 1.8 times, comopared with those of the parental strain, respectively, while in the case of acid protease, it was 2.7 times. The mutant strain selected was more powerful in the production of cellulase and amylase, as well s protease in wheat bran, compared with those of the parental strain. protease production of the parental strain has reached maximum level at 3 days culture, while alkaline nad neutral protease production of the mutantstrain has reached at 2 days culture. On the other hand, the mutant strain formed the spore slowly, compared with the parental strain. Column chromatography of the neutral protease on DEAE-Sephadex A-50 showed that the mutant strain was not induced the formation of another neutral protease isozyme, but induced the variation in the function of regulatory gene.

  • PDF

Lipase Inactive Mutant of PLC-γ1 Regulates NGF-induced Neurite Outgrowth Via Enzymatic Activity and Regulation of Cell Cycle Regulatory Proteins

  • Le Xuan Nguyen, Truong;Ahn, Jee-Yin
    • BMB Reports
    • /
    • v.40 no.6
    • /
    • pp.888-894
    • /
    • 2007
  • Src homology (SH) domains of phospholipase C-$\gamma1$ (PLC-$\gamma1$) impair NGF-mediated PC12 cells differentiation. However, whether the enzymatic activity is also implicated in this process remains elusive. Here, we report that the enzymatic activity of phospholipase C-$\gamma1$ (PLC-$\gamma1$) is at least partially involved to the blockage of neuronal differentiation via an abrogation of MAPK activation, as well as sustained Akt activation. By contrast, Overexpression of WT-PLC-$\gamma1$ exhibited sustained NGF-induced MAPK activation, and triggered transient Akt activation resulting in profound inhibition of neurite outgrowth. However, lipase-inactive mutant (LIM) PLC-$\gamma1$ cells fail to suppress neurite outgrowth, although it contains intact SH domains, specifically enhancing the expression of cyclin D1 and p21 proteins, which regulate the function of retinoblastoma Rb protein. These observations show that the lipase inactive mutant of PLC-$\gamma1$ does not alter NGF-induced neuronal differentiation via enzymatic inability and the modulation of cell cycle regulatory proteins independent on SH3 domain.

Investigation of Regulatory Mechanism of Flux of Acetyl-CoA in Alcaligenes eutrophus Using PHB-negative Mutant and Transformants Harboring Cloned phbCAB Genes

  • Jung, Young-Mi;Lee, Yong-Hyun
    • Journal of Microbiology and Biotechnology
    • /
    • v.7 no.4
    • /
    • pp.215-222
    • /
    • 1997
  • The regulatory mechanism of the flux of acetyl-CoA in Alcaligenes eutrophus in unbalanced growth conditions was investigated using a PHB-negative mutant and transformants reintroduced PHB-biosynthesis enzymes through the transformation of cloned phbCAB genes. The PHB-negative mutant was defected absolutly in PHB synthase but partially in ${\beta}$-ketothiolase and acetoacetyl-CoA reductase, and excreted substantial amount of pyruvate to culture broth at late growth phase. The excretion was due to the inhibitory effect of acetyl-CoA on the activity of pyruvate dehydrogenase. The cloned phbC and phbCAB genes were transformed to the PHB-negative mutant strain to reintroduce PHB biosythesis enzymes. Pyruvate excretion could be decreased substantially but not completely by transformation of PHB synthase alone, while pyruvate excretion was ceased by transformation of all three PHB biosynthesis enzymes. To identify the most critical PHB biosynthesis enzyme influencing on the flux of acetyl-CoA, the effect of the variation of PHB biosynthesis enzymes on pyruvate dehydrogenase was investigated. ${\beta}$-Ketothiolase influenced the activity of pyruvate dehydrogenase more sensitively than PHB synthase. ${\beta}$-Ketothiolase, the first step enzyme of PHB biosynthesis that condense acetyl-CoA to acetoacetyl-CoA, seems to be the major enzyme determining the flux of acetyl-CoA to PHB biosynthesis or TCA cycle, and the rate of PHB biosynthesis in A. eutrophus.

  • PDF

Enhancement of Clavulanic Acid Production by Expressing Regulatory Genes in gap Gene Deletion Mutant of Streptomyces clavuligerus NRRL3585

  • Jnawali, Hum Nath;Lee, Hei-Chan;Sohng, Jae-Kyung
    • Journal of Microbiology and Biotechnology
    • /
    • v.20 no.1
    • /
    • pp.146-152
    • /
    • 2010
  • Streptomyces clavuligerus NRRL3585 produces a clinically important $\beta$-lactamase inhibitor, clavulanic acid (CA). In order to increase the production of CA, the glyceraldehyde-3-phosphate dehydrogenase (GAPDH) gene (gap) was deleted in S. clavuligerus NRRL3585 to overcome the limited glyceraldehyde-3-phosphate pool; the replicative and integrative expressions of ccaR (specific regulator of the CA biosynthetic operon) and claR (Lys-type transcriptional activator) genes were transformed together into a deletion mutant to improve clavulanic acid production. We constructed two recombinant plasmids to enhance the production of CA in the gap1 deletion mutant of S. clavuligerus NRRL3585: pHN11 was constructed for overexpression of ccaR-claR, whereas pHN12 was constructed for their chromosomal integration. Both pHN11 and pHN12 transformants enhanced the production of CA by 2.59-fold and 5.85-fold, respectively, compared with the gap1 deletion mutant. For further enhancement of CA, we fed the pHN11 and pHN12 transformants ornithine and glycerol. Compared with the gap1 deletion mutant, ornithine increased CA production by 3.24- and 6.51-fold in the pHN11 and pHN12 transformants, respectively, glycerol increased CA by 2.96- and 6.21-fold, respectively, and ornithine and glycerol together increased CA by 3.72- and 7.02-fold, respectively.

Genetic Polymorphism of Cytochrome P450 2E1 in Korean Population (한국인 집단에서 Cytochrome P450 2E1의 유전적 다형성)

  • 정혜광;구희경;이상섭;양규환;정태천;변부형
    • Environmental Mutagens and Carcinogens
    • /
    • v.16 no.2
    • /
    • pp.97-102
    • /
    • 1996
  • In this study, we have quantified genotype frequency of the cytochrome P450 (P450) 2E1 which codes for the P450 enzyme primarily responsible for the metabolic activation of carcinogenic nitrosamines and low molecular organic solvents, in Korean population by using PCR and RFLP at two sites previously associated with some cancers; a PstI and RsaI RFLP in the transcriptional regulatory region of the human P450 2E1 gene. The genotype frequencies of homozygous wild type (PstI site-absent) and heterozygous mutant type (PstI site-present) in PstI RFLP were 0.70 and 030, respectively. The homozygous mutant type in Pstl RFLP was not observed in Korean population. The genotype frequencies of homozygous wild type (RsaI site-present), heterozygous mutant type (RsaI site-absent), and homozygous mutant type in RsaI RFLP were 0.71, 0.26, and 0.03, respectively.

  • PDF

Isolation and Characterization of Regulatory Mutant for Cellulase Production from Trichoderma reesei QM 9414 (Trichoderma reesei QM 9414의 섬유소 분해 호소 생산을 위한 조절변이주의 분리 및 특성에 관한 연구)

  • Choi, Kun-Ho;Koo, Youn-Mo;So, Jae-Seong
    • The Korean Journal of Mycology
    • /
    • v.26 no.1 s.84
    • /
    • pp.127-133
    • /
    • 1998
  • Two regulatory mutants of Trichoderma reesei QM 9414 were isolated by treatment with N-methyl-N'-nitro-N-nitrosoguanidine, and the effects of various inducers on the carboxymethyIcellulose (CMC) and filter paper (FP) production were investigated. Induction of CMCase and FPase production of mutants was shown higher level than wild type strain in 1% lactose minimal broth. When induced by glucose, wild type showed glucose-repression for CMCase and FPase production and mutants showed glucose-derepression. Mutant 1 showed 8.38 fold higher CMCase activity and 5.68 fold higher FPase activity than wild type stain. Mutant 2 showed about 8.42 fold higher CMCase activity and 5.41 fold higher FPase activity than wild type strain. Enzyme activities from the mutants and wild type had the same optimum pH of 4.8 and optimum temperature of $60^{\circ}C$.

  • PDF

Further induction of amylase producing mutants from a highly proteolytic mutant strain of asppergillus flavus (돌연변이에 의한 Aspergillus flavus의 아밀라아제 생성능의 개량)

  • 이영록;고상균;김봉수
    • Korean Journal of Microbiology
    • /
    • v.18 no.4
    • /
    • pp.161-171
    • /
    • 1980
  • A mutant strain having increased productivity of both enzymes, protease and amylase, was obtained from A. flavus KU 153, isolatd from South Korea for its high protease production by successive ultra-violet light irradiation, Two glucoamylases from the mutant strain selected were purified from wheat branculture by successive salting out, followed by dialysis and column chromatography, and their characteristics were compared with those of the wild strain. Glucoamylase production of the mutant selected was increased about 3.3 times compared with the wild strain, and 2.1 times compared with the parental strain, ${\alpha}-amylase$ activity of the mutant selected was about 2 times hugher than that of the wild strain or the parental strain. Protease and cellulase productivities of the muant selected were all alike compared with those of the highly proteolytic mutant, the parental strain. Therefore, it was considered that the back mutation on the protease production did not occurred in the formation process of the glucoamylase producing mutant. Total activities of glucoamylase I and II from the mutant selected were 2.86 and 3.65 times higher compared with those from the wild strain, respectively. Considering the optimal pH-thermal stability and Km-Vmax value of glucoamylase I and II from both strains, wild and mutant, it was deduced that the characteristics of glucoamylase I and II from the wild strain did not altered during the mutation process. Therefore, it was concluded that the selected mutant did not induce the formation of another glucoamylase isozyme, or the changes in the characteristics of the glucoamylase, but induce the productivity of the same glucoamylase I and II by the action of regulatory gene.

  • PDF

Sll0396 regulates transcription of the phycocyanin genes in Synechocystis sp. PCC 6803

  • Oh, In-Hye;Kim, Ho-San;Chung, Young-Ho;Kim, Young-Hye;Park, Young-Mok
    • Plant Biotechnology Reports
    • /
    • v.4 no.3
    • /
    • pp.193-199
    • /
    • 2010
  • An olive-green mutant was generated in Synechocystis sp. strain PCC 6803 by inactivation of the sll0396 gene. Whole-cell absorption spectra of the mutant revealed the missing of phycocyanin peak. An investigation of the low-temperature fluorescence emission spectra revealed that the $sll0396{\Omega}$ mutant has a reduced amount of phycocyanin. Western blot analysis showed that the mutant contained less phycocyanin ${\beta}$- and ${\alpha}$-subunits and lacked the 30- and 32-kDa linker polypeptides, and northern blot analysis revealed that the transcription of the 1.4-kb cpcBA gene encoding the phycocyanin ${\beta}$- and ${\alpha}$-subunits was lower in the mutant. The Sll0396 protein has a DNA-binding motif and shares homology with known response regulators. Our results indicate that Sll0396 plays a regulatory role in the transcription of the phycocyanin genes during phycobilisome synthesis.