• 제목/요약/키워드: sucrose phosphorylase

검색결과 11건 처리시간 0.022초

Bifidobacterium longum 유래 재조합 Sucrose Phosphorylase에 의한 Phenolic Compound 배당체 생산 (Transglycosylation of Phenolic Compounds by the Recombinant Sucrose Phosphorylase Cloned from Bifidobacterium longum)

  • 권태연;이종훈
    • 한국미생물·생명공학회지
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    • 제32권3호
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    • pp.286-289
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    • 2004
  • Transglycosylation from sucrose to phenolic compounds by the recombinant sucrose phosphorylase from Bifidobacterium longum was studied. HPLC analysis revealed that the enzyme transferred glucosyl residue of sucrose to 1,2-dihydroxybenzene, 1,4-dihydroxybenzene, 1,2,3-trihydroxybenzene, and 2-hydroxybenzyl alcohol. The enzyme could transfer the glucosyl moiety of sucrose to phenolic compounds which have phenolic OH or alcoholic (hydroxymethyl) OH group.

Leuconostoc sp.에 의한 Sucrose로부터 Glucoes-1-phosphate의 생산 (The Production of Glucose-1-phosphate from Sucrose by Leuconostoc sp.)

  • 엄익춘;황기철;방원기
    • 한국미생물·생명공학회지
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    • 제21권6호
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    • pp.570-576
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    • 1993
  • For the production of glucose-1-phosphate from sucrose, bacteria having sucrose phosphorylase were isolated from Kimchi. Among them, JS-05, newly isolated strain having high activity of sucrose phosphorylase was selected and identified as Leuconostoc sp. The specific activity of sucrose phosphorylase of Leuconostoc sp. JS-05 was the highest when the strain was cultured at 25C for 20 hrs in the medium (pH 7.5) containing 10 g sucrose, 5g corn steep liquor, and 2.5g yeast extract per liter.

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Bifidobacterium longum의 Sucrose 대사 관련 scr 유전자군의 특성 규명 (Characterization of the scr Gene Cluster Involved! in Sucrose Utilization in Bifidobacterium longum)

  • 권태연;이종훈
    • 한국미생물·생명공학회지
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    • 제32권3호
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    • pp.199-205
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    • 2004
  • Bifidobacterium longum SJ32 균주로부터 cloning한 sucrose phosphorylase 유전자를 포함하는 8.6 kb의 EclRI 단편의 염기서열을 결정하였다. 5개의 open reading frame이 존재하였고, 상동성 검색의 결과, sucrose대사에 관여하는 sucrose phosphorylase (ScrP), sucrose transporter (ScrT), GalR-LacI-type transcriptional regulator (ScrR) 유전자의 존재를 확인하였다. SJ32 균주의 scrPTR 유전자군은 다른 B. longum균주의 scrPTR과 배열이 동일하고, 각 유전자 산물이 아미노산 수준에서 94%이상의 상동성을 가지고 있지만, 주변 유전자는 다르게 나타나 B. longum균주 간의 scrPTR 유전자군의 horizontal transfer를 추정하게 한다. 대장균에서의 scrP와 scrT의 동시 발현은 세포 내로의 sucrose 유입을 증가시켜 sucrose phosphorylase의 활성 증가에 영향을 주는 것으로 나타나, scrT가 sucrose transporter유전자임을 뒷받침한다. 기존에 보고된 B. longum NCC2705균주의 유전체로부터 scrPTR외에도 sucrose대사에 관여하는 다양한 sucrose multiple transport system에 관여하는 유전자의 존재가 확인되어, B. longum이 다양한 sucrose유입체계를 보유하고 있음이 추정된다.

올리고당을 생산하는 Leuconostoc lactis CCK940 균주의 유전체 염기서열 (Draft genome sequence of oligosaccharide producing Leuconostoc lactis CCK940 isolated from kimchi in Korea)

  • 이설희;박영서
    • 미생물학회지
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    • 제54권4호
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    • pp.445-447
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    • 2018
  • 한국의 전통시장에서 구입한 김치에서 분리된 Leuconostoc lactis CCK940은 sucrose와 maltose를 이용하여 중합도가 4이상인 올리고당을 생산하였다. L. lactis CCK940의 유전체는 1,741,511 bp의 2개 contig로 구성된 염색체로 조합되었으며 G + C의 비율은 43.33%로 나타났다. 염색체 DNA에서 1,698개의 코딩 유전자, 12개의 rRNA, 68개의 tRNA 유전자가 확인되었다. L. lactis CCK940은 올리고당을 생산할 수 있는 sucrose phosphorylase, maltose phosphorylase, ${\beta}$-galactosidase 등의 glucosyltransferase 생합성 유전자들을 지니고 있었다.

Starch Phosphorylase and its Inhibitor from Sweet Potato Root

  • Chang, Tsung-Chain;Su, Jong-Ching
    • 생약학회지
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    • 제17권2호
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    • pp.134-138
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    • 1986
  • Based on a tracer study, starch phosphorylase was implicated as an agent in the starch synthesis in sweet potato roots. The enzyme was purified from the tissue as a cluster of isozymes with an average mw of 205K (fresh roots) or 159K (roots stored for 3 mon.). On SDS polyacrylamide gel electrophoresis, one large subunit of 98K mw and several small ones of 47${\sim}57K mw were observed. From the mw data and the results of peptide mapping and immunoelectrophoretic blotting using mono- and polyclonal antibodies, it was deduced that a large part of the large subunit was cleaved at the middle part of the peptide chain to give rise to the small subunits, and on storage, the enzyme molecules were further modified by proteolysis. During the course of phosphorylase purification, a proteinaceous inhibitor of the enzyme was isolated. It had a mw of 250K and was composed of 5 identical subunits of 51K mw. In the direction of starch synthesis, the inhibitor showed a noncompetitive kinetics with a Ki of $1.3{\times}10^{-6}\;M$. By immunohistochemical methods, both the enzyme and the inhibitor were located on the cell wall and amyloplast. Crossreacting materials of the inhibitor were present in spinach leaf, potato tuber and rice grain. These findings indicate the wide occurrence of the inhibitor and also imply its possible participation in regulating starch phosphorylase activity in vivo.

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Leuconostoc mesenteroides NRRL B-1149의 Sucrose phosohorylase의 분리와 특성 연구 (Purification and Characterization Sucrose phosohorylase in Leuconostoc mesenteroides NRRL B-1149)

  • 이진하;박준성;박현정;조재영;최정식;김도만
    • KSBB Journal
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    • 제19권5호
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    • pp.363-367
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    • 2004
  • Leuconostoc mesenteroides NRRL B-1149 produces various glucoseyltransferases for the synthesis of dextran, levan and glucose-1-phosphate using sucrose as a substrate. A sucrose phosphorylase (1149SPase) was purified from L. mesenteroides NRRL B-1149 culture by using hollow fiber filtration (30 kDa cut off), Toyopearl DEAE 650 M column chromatography and following two times of DEAE-Sepharose column chromatographies. The specific activity of the purified 1149SPase was 25.7 (U/mg) with $16\%$ yield. The 1149SPase showed a molecular size of 56 kDa on denatured $10\%$ SDS-PAGE. The N-terminal amino acid sequence of the enzyme was MEIQNKAM. The optimum pH and temperature of this enzyme were 6.2~6.5 and 37^{circ}C, respectively. It had an apparent K_{m} of 6.0 mM and K_{cat} of 1.62/s for sucrose. 1149SPase crystal was formed by hanging drop diffusion technique using 20 mM calcium chloride dihydrate, 100 mM sodium acetate trihydrate pH 4.6 and $30\%$ 2-methyl-2,4-pentanediol as vaporizing and reservation solution. The 1149SPase catalyzes transferring of glucose from isomaltose or sucrose to salicin and salicyl alcohol by disproportionation reaction or acceptor reaction and synthesized two acceptor products, respectively.

A Study on Transcriptome Analysis Using de novo RNA-sequencing to Compare Ginseng Roots Cultivated in Different Environments

  • Yang, Byung Wook
    • 한국자원식물학회:학술대회논문집
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    • 한국자원식물학회 2018년도 춘계학술발표회
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    • pp.5-5
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    • 2018
  • Ginseng (Panax ginseng C.A. Meyer), one of the most widely used medicinal plants in traditional oriental medicine, is used for the treatment of various diseases. It has been classified according to its cultivation environment, such as field cultivated ginseng (FCG) and mountain cultivated ginseng (MCG). However, little is known about differences in gene expression in ginseng roots between field cultivated and mountain cultivated ginseng. In order to investigate the whole transcriptome landscape of ginseng, we employed High-Throughput sequencing technologies using the Illumina HiSeqTM2500 system, and generated a large amount of sequenced transcriptome from ginseng roots. Approximately 77 million and 87 million high-quality reads were produced in the FCG and MCG roots transcriptome analyses, respectively, and we obtained 256,032 assembled unigenes with an average length of 1,171 bp by de novo assembly methods. Functional annotations of the unigenes were performed using sequence similarity comparisons against the following databases: the non-redundant nucleotide database, the InterPro domains database, the Gene Ontology Consortium database, and the Kyoto Encyclopedia of Genes and Genomes pathway database. A total of 4,207 unigenes were assigned to specific metabolic pathways, and all of the known enzymes involved in starch and sucrose metabolism pathways were also identified in the KEGG library. This study indicated that alpha-glucan phosphorylase 1, putative pectinesterase/pectinesterase inhibitor 17, beta-amylase, and alpha-glucan phosphorylase isozyme H might be important factors involved in starch and sucrose metabolism between FCG and MCG in different environments.

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Phosphorolytic Pathway in Cellulose Degradation

  • Kitaoka, Motomitsu
    • 한국미생물생명공학회:학술대회논문집
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    • 한국미생물생명공학회 2001년도 Proceedings of 2001 International Symposium
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    • pp.179-182
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    • 2001
  • Two intracellular enzymes, cellobiose phosphorylase (CBP) and cellodextrin phosphorylase (CDP) are involved in the phosphorolytic pathway in cellulose degradation. Those enzymes are considered to be useful in syntheses of oligosaccharides because the reactions are reversible. CBP from Cellvibrio gilvus and CDP from Clostridium thermocellum YM-4 were cloned and over-expressed in Escharichia coli. Both the enzyme reactions showed ordered bi bi mechanism. Acceptor specificity of CBP in the reverse reaction was determined. Several $\beta$-l,4-glucosyl disaccharides were synthesized by using the reaction. A new substrate inhibition pattern, competitive substrate inhibition, was also found in the reverse reaction of CBP Cellobiose was produced from sucrose at a high yield by a combined action of three enzymes including CBP

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