• 제목/요약/키워드: Gene repression

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Characterization of the $\alpha$-Galactosidase Gene from Leuconostoc mesenteroides SY1

  • KIM JONG HWAN;PARK JAE-YONG;JEONG SEON-JU;CHUN JIYEON;LEE JONG HOON;CHUNGZ DAE KYUN;KIM JEONG HWAN
    • Journal of Microbiology and Biotechnology
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    • 제15권4호
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    • pp.800-808
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    • 2005
  • Leuconostoc mesenteroides SY1, an isolate from kimchi, was able to ferment $\alpha$-galactosides, such as melibiose and raffinose. $\alpha$-Galactosidase ($\alpha$-Gal) activity was higher in cells grown on melibiose and raffinose than cells grown on galactose, sucrose, and fructose. $\alpha$-Gal activity was not detected in cells grown on glucose, indicating the operation of carbon catabolite repression (CCR). A 6 kb DNA fragment was PCR amplified using a primer set based on the nucleotide sequence of a putative $\alpha$-galactosidase gene (aga) from L. mesenteroides ATCC 8293. Nucleotide sequencing of the 6 kb fragment confirmed the presence of aga and other genes involved in the galactosides utilization, and the gene order was galR (transcriptional regulator)-aga-gaIK (galactokinase)-gaIT (galactose-1-phosphate uridylyltransferase). Northern blotting experiment showed that aga, gaIK, and gaIT constituted the same operon, that the transcription was induced by galactosides, such as melibiose and raffinose, whereas gaIR was independently transcribed as a monocistronic gene, and that the level of transcription was fairly constant. The aga was overexpressed in E. coli BL21 (DE3) using pET26b(+) vector, and $\alpha$-Gal was accumulated in E. coli as an inclusion body.

Regulation of Gene Expression for Amino Acid Biosynthesis in the Yeast, Sacchromyces cerevisiae

  • Lea, Ho Zoo
    • 한국동물학회:학술대회논문집
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    • 한국동물학회 1995년도 한국생물과학협회 학술발표대회
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    • pp.82-82
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    • 1995
  • Regulation of enzyme synthesis by transcriptional and translational control systems provides rather stable adaptation to change of amino acid level in the growth medium, while manipulation of enzyme activity through endproduct feedback inhibition represents rather short-term and reversible ways of adjusting metabolic fluctuation of amino acid level. Various control mechanisms interplay to regulate genes encoding enzymes for amino acid biosynthesis in the yeast, Sacchromyces cerevisiae. When amino acids are in short supply, genes under a cross-pathway regulatory mechanism Or general amino acid control (general control) increase their action, in which Gcn4p is the major positive regulator of gene expression. When cells are cultured in minimal medium, basal level expression is also regulated by supplementary control elements, where inorganic phosphate level is additionally involved. Most of amino acid biosynthetic genes are also regulated by the level of endproduct of the pathway. This pathway-specific regulatory mechanism is called specific amino acid control (specific controD, under which gene expression is reduced when endproduct is present in the medium. Derepression of a gene through general control can be usually overridden by repression through specific control, where the endproduct level of that particular pathway is high and not limiting. In this presentation, regulatory factors for basal level expression and general control of yeast amino acid biosynthesis will be discussed, m addition to pathway-specific repression patterns and interaction between CrOSS- and specific-control mechanisms. Preliminary results are also presented from the investigation of the cloned genes in the threonine biosynthetic pathway of the yeast. yeast.

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Role of Chromatin Structure in HMRE Mediated Transcriptional Repression of the HSP82 Heat Shock Gene

  • Lee, See-Woo;Gross, David S.
    • Journal of Microbiology
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    • 제34권1호
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    • pp.40-48
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    • 1996
  • We have examined the chromatin structure of the HMRE/HSP82 and HMRa/HSP82 allels using three complementary approaches : DNase I chromating footprinting, micrococcal nuclease (MNase) nucleosome-protected ladder assay, and an in vivo E. coli dam methylase accessibility assay. The footprinting results indicate that the promoter and silencer sequences are assembled into nucleoprotein complexes which exhibit no detectable change in structure, despite a 70-fold range in expression levels. In addition, the promoter region of the HMRa/HSP82 allele is cleaved randomly by MNase in all cases, indicating the absence of anonical nucleosomes over this region irrespective of SIR4 or heat-shock. Finally, no discernible difference in the accessibility of the HMRE/HSP82 locus to dam methylase in SIR4 vs. sir4 cells was seenm which again suggests that the chromatin structure of HMRE/HSP82 allele is identical regardless of SIR4. Altogether, our results indicate that in contrast to other observations of the silent mating-type loci, no discernible structural alteration is detected at either HMR/HSP82 allele regardless of SIR genetic background or transcriptional state of the gene.

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Expression of the Promoter for the Maltogenic Amylase Gene in Bacillus subtilis 168

  • Kim Do-Yeon;Cha Choon-Hwan;Oh Wan-Seok;Yoon Young-Jun;Kim Jung-Wan
    • Journal of Microbiology
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    • 제42권4호
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    • pp.319-327
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    • 2004
  • An additional amylase, besides the typical $\alpha-amylase,$ was detected for the first time in the cytoplasm of B. subtilis SUH4-2, an isolate from Korean soil. The corresponding gene (bbmA) encoded a malto­genic amylase (MAase) and its sequence was almost identical to the yvdF gene of B. subtilis 168, whose function was unknown. Southern blot analysis using bbmA as the probe indicated that this gene was ubiquitous among various B. subtilis strains. In an effort to understand the physiological function of the bbmA gene in B. subtilis, the expression pattern of the gene was monitored by measuring the $\beta-galactosidase$ activity produced from the bbmA promoter fused to the amino terminus of the lacZ struc­tural gene, which was then integrated into the amyE locus on the B. subtilis 168 chromosome. The pro­moter was induced during the mid-log phase and fully expressed at the early stationary phase in defined media containing $\beta--cyclodextrin\;(\beta-CD),$ maltose, or starch. On the other hand, it was kept repressed in the presence of glucose, fructose, sucrose, or glycerol, suggesting that catabolite repression might be involved in the expression of the gene. Production of the $\beta-CD$ hydrolyzing activity was impaired by the spo0A mutation in B. subtilis 168, indicating the involvement of an additional regu­latory system exerting control on the promoter. Inactivation of yvdF resulted in a significant decrease of the $\beta-CD$ hydrolyzing activity, if not all. This result implied the presence of an additional enzyme(s) that is capable of hydrolyzing $\beta-CD$ in B. subtilis 168. Based on the results, MAase encoded by bbmA is likely to be involved in maltose and $\beta-CD$ utilization when other sugars, which are readily usable as an energy source, are not available during the stationary phase.

Epigenetics by DNA Methylation for Normal and Cloned Animal Development

  • Shiota, Kunio
    • 한국발생생물학회:학술대회논문집
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    • 한국발생생물학회 2003년도 제3회 국제심포지움 및 학술대회
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    • pp.26-28
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    • 2003
  • "Epigenetics" means the study of heritable changes in gene-activity without changes in DNA sequences. Methylation of the cytosine residue in a CpG dinucleotide sequence is a characteristic of the vertebrate genome. In vertebrates, methylation of DNA mainly occurs at the 5′-position of cytosine in a CpG dinucleotide forming 5-methylcytosine. Methylation of DNA plays a profound role in transcriptional repression of gene expression through several mechanisms. Generally, DNA of inactive genes is more heavily methylated than that of active ones; conversely demethylation of DNA reactivates gene expression in vivo and in vitro.

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Identification of the DNA Binding Element of the Human ZNF333 Protein

  • Jing, Zhe;Liu, Yaping;Dong, Min;Hu, Shaoyi;Huang, Shangzhi
    • BMB Reports
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    • 제37권6호
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    • pp.663-670
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    • 2004
  • ZNF 333 is a new and sole gene containing two KRAB domains which has been identified currently. It is a member of subfamilies of zinc finger gene complex which had been localized on chromosome 19p13.1. The ZNF333 gene mainly encodes a 75.5 kDa protein which contains 10 zinc finger domains. Using the methods of random oligonucleotide selection assay, electromobility gel shift assay and luciferase activity assay, we found that ZNF333 recognized the specific DNA core binding sequence ATAAT. Moreover, these data indicated that the KRAB domain of ZNF333 really has the ability of transcriptional repression.

Serratia marcescens의 Polyphosphate Kinase 유전자 특성 (Characterization of Polyphosphate Kinase Gene in Serratia marcescens)

  • Yang Lark Choi;Seung Jin Lee;Ok Ryul Song;Soo Yeol Chung;Young Choon Lee
    • 생명과학회지
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    • 제10권4호
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    • pp.397-402
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    • 2000
  • 본 연구는 인산 축적능이 뛰어난 균주를 분자 육종하여 생물학적 폐수처리 및 토양의 인산 집적을 해결시키는 산업적 유용한 재료로 이용하기 위한 기초연구를 목표로 하고 있다. Polyphosphate kinase의 ATP의 phosphate를 단리하여 한분자씩 결합시키는 형태로 polyphosphate의 합성반응을 촉매한다. 인산 축적에 관한 대사과정의 분자적 이해를 위하여 Serratia marcescens균주로부터 Southern hybridization방법으로 ppk를 암호하는 유전자를 찾아내어 새조합시킨 pDH3를 구축하였다. pDH3으로부터 ppk를 암호하는 유전자 영역의 4.0 kb 단편을 가진 subclone을 작성하였다.Serratia marcescens의 polyphosphate kinase의 활성은 catabolite repression에 의한 조절을 받았다. 발현멕타에 삽입시킨 재조합 플라스미드를 대장균에 도입시킨 결과, polyphosphate kinase의 효소활성이 크게 증가됨을 확인 하였다. 또한 대량 발현시킨 결과를 SDS-PAGE를 통하여 75 KDa의 발현산물을 확인할 수 있었다.

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대두 저장단백질 유전자의 발현 조절 메카니즘 (Regulation Mechanism of Soybean Storage Protein Gene Expression)

  • 최양도;김정호
    • 한국식물학회:학술대회논문집
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    • 한국식물학회 1987년도 식물생명공학 심포지움 논문집 Proceedings of Symposia on Plant Biotechnology
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    • pp.283-307
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    • 1987
  • Glycinin and $\beta$-conglycinin are the most abundant storage protein in soybean. These proteins are known to be synthesized predominantly during germination and cell expansion phase of seed development for short period, and synthesized not in other tissues. Genes encoding these storage proteins are useful system to study the mechanism of development stage and tissue specific gene expression in eukaryotes, especially plants, at the molecular level. The cDNA and genomic clones coding for glycinin have been isolated and regulation mechanism of the gene expression has been studied. Initially, development and tissue-specific expression of the glycinin gene is regulated at the level of transcription. Post-transcriptional processing is also responsible for delayed accumulation of the mRNA. Translational control of the storage protein gene has not been reported. Post-translational modification is another strategic point to regulate the expression of the gene. It is possible to identify positive and/or negative reguratory clements in vivo by producing transgenic plants agter gene manipulation. Elucidation of activation and repression mechanism of soybean storage protein genes will contribute to the understanding of the other plant and eukaryotic genes at molecular level.

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Characterization of PpsR, a Transcriptional Repressor of the Expression of Photosysem Gene, from Rhodobacter sphaeroides

  • Cho, Seung-Hyun;Kang, Sa-Ouk
    • 한국생물물리학회:학술대회논문집
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    • 한국생물물리학회 2002년도 제9회 학술 발표회 프로그램과 논문초록
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    • pp.51-51
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    • 2002
  • PpsR from the facultative photohetrotroph Rhodobacter sphaeroides is involved in repression of photo system gene expression. SDS-PAGE analysis showed that some portion of PpsR is oxidized so that intra- or inter-disulfide bond is formed between the two cysteins in each subunit. The disulfide bond was reduced by dithiothreitol and the binding activity to puc promoter region was increased.(omitted)

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