• Title/Summary/Keyword: Protein glycosylation

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Glycosylation of Flavonoids with E. coli Expressing Glycosyltransferase from Xanthomonas campestris

  • Kim, Jeong-Ho;Kim, Bong-Gyu;Kim, Jae-Ah;Park, Young-Hee;Lee, Yoon-Jung;Lim, Yoong-Ho;Ahn, Joong-Hoon
    • Journal of Microbiology and Biotechnology
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    • v.17 no.3
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    • pp.539-542
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    • 2007
  • Glycosyltransferase family 1 (UOT) uses small chemicals including phenolics, antibiotics, and alkaloids as substrates to have an influence in biological activities. A glycosyltransferase (XcGT-2) from Xanthomonas campestris was cloned and consisted of a 1,257 bp open reading frame encoding a 45.5 kDa protein. In order to use this for the modification of phenolic compounds, XcGT-2 was expressed in Escherichia coli as a glutathione S-transferase fusion protein. With the E. coli transformant expressing XcGT-2, biotransformation of flavonoids was carried out. Flavonoids having a double bond between carbons 2 and 3, and hydroxyl groups at both C-3' and C-4', were glycosylated and the glycosylation position was determined to be at the hydroxyl group of C-3', using nuclear magnetic resonance spectroscopy. These results showed that XcGT-2 regiospecifically transferred a glucose molecule to the 3'-hydroxyl group of flavonoids containing both 3' and 4'-hydroxyl groups.

Ginseng total saponin modulates podocyte p130Cas in diabetic condition

  • Ha, Tae-Sun;Lee, Jin-Seok;Choi, Ji-Young;Park, Hye-Young
    • Journal of Ginseng Research
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    • v.37 no.1
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    • pp.94-99
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    • 2013
  • Proteinuric conditions demonstrate structural and compositional changes of the foot processes and slit diaphragms between podocytes. p130Cas in podocytes serves as an adapter protein anchoring glomerular basement membrane to actin filaments of podocyte cytoskeleton. To investigate the effect of ginseng total saponin (GTS) on the pathologic changes of podocyte p130Cas induced by diabetic conditions, we cultured mouse podocytes under: 1) normal glucose (5 mM, control); 2) high glucose (HG, 30 mM); 3) advanced glycosylation endproducts (AGE)-added; or 4) HG plus AGE-added conditions and treated with GTS. In confocal imaging, p130Cas colocalized with zonula occludens-1 and synaptopodin connecting to F-actin. However, diabetic conditions relocalized p130Cas molecules at perinuclear cytoplasmic area and reduced the intensity of p130Cas. In Western blotting, diabetic conditions, especially HG plus AGE-added condition, decreased cellular p130Cas protein levels at 24 and 48 h. GTS improved such quantitative and qualitative changes. These findings imply that HG and AGE have an influence on the redistribution and amount of p130Cas of podocytes, which can be reversed by GTS.

Structural Analysis of Oligosaccharides of a Plant Glycoprotein (식물 유래 당단백질의 당질 구조 분석)

  • Bae, Jae-Woo;Park, Byung-Tae;Yoon, Doo-Chun;Kim, Joo-Young;Hwang, Hye-Sung;Park, Hyun-Joo;Na, Jong-Chun;Kim, Ha-Hyung
    • YAKHAK HOEJI
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    • v.54 no.6
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    • pp.449-454
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    • 2010
  • The glycosylation of glycoproteins from mammalian or plants can affect their efficacy, stability, solubility, and half-life. In the present study, we investigated plant glycosylation and their relative intensity (%) in a plant carbohydratebinding protein with the hemagglutination and antiproliferative activities. The hemagglutination activity on the deglycosylated protein was decreased as a 16-fold than that of intact glycoprotein. Using the HPLC with fluorescence detector and mass spectrometer, the major eight bi- or triantennary oligosaccharides containing xylose, fucose, mannose, galactose, and N-acetylglucosamine were identified and structurally characterized. The present results indicate that the oligosaccharides on this plant glycoprotein is necessary for their own property.

Characterization of Cell Wall Proteins from the soo1-1/ret1-1 Mutant of Saccharomyces cerevisiae

  • Lee, Dong-Won;Kim, Ki-Hyun;Chun, Se-Chul;Park, Hee-Moon
    • Journal of Microbiology
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    • v.40 no.3
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    • pp.219-223
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    • 2002
  • In order to investigate the function of Soo1p/${\alpha}$-COP during post-translational modification and intra-cellular transport of cell wall proteins in Saccharomyces cerevisiae, cell wall proteins from the soo1-1/ret1-1 mutant cells were analyzed. SDS-PAGE analysis of biotin labeled cell wall proteins suggested that the soo1-1 mutation impairs post-translational modification of cell wall proteins, such as N- and/ or Ο-glycosylation. Analysis of cell wall proteins with antibodies against ${\beta}$-1,3-glucan and ${\beta}$-1,6-glucan revealed alteration of the linkage between cell wall proteins and ${\beta}$-glucans in the soo1-1 mutant cells. Compositional sugar analysis of the cell wall proteins also suggested that the soo1-1 mutation impairs glycosylation of cell wall protein in the ER, which is crucial for the maintenance of cell wall integrity.

Effects of Vitamin E Supplementation on Renal Glycosylation Products in Diabetic KK Mice (당뇨 KK마우스에서 비타민 E 보강식이가 신장 당화단백질 생성에 미치는 영향)

  • 안현숙;박성연;김해리
    • Journal of Nutrition and Health
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    • v.31 no.6
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    • pp.1024-1030
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    • 1998
  • We investigated the effects of vitamin E supplementation on protein glycosylation in early and end stage product, and light microscopic studies were done on the renal glomeruli of KK-mice of various ages and various duration of diabetes. Weaned KK-mice were fed high fat diets containing 20% corn oil(wt/wt), and sacrificed at 4,6, and 9 months of age. The high vitamin E diet was a high fit diet supplemented with an excess amount of d1-$\alpha$-tocopheryl acetate (2080IU/kg diet). We measured Hemoglobin $A_{IC}$ (Hb $A_{IC}$) as a glycosylation early product, and renal collagen-linked fluorescence as a glycosylation end product. In the diabetic group, levels of Hb $A_{IC}$ were increased within 2 months after onset of diabetes and remained at a constant level for the duration of experiment. 5 months after onset of diabetes, renal collagen linked fluorescence(CLF) was markedly increased. A quantative, morphologically demonstratable, progressive thickening of the basement membrane and calcification occured in the diabetic KK-mice. There is a statiscally positive correlation between CLF and histologic grade of diabetic nephropathy. Hepatic vitamin E levels correlated with those of Hb $A_{IC}$, renal CLF, and renal calcification. Treatment with vitamin I did not modify the level of blood glucose. However, we observered a significant lowering of CLF and Hb $A_{IC}$ in diabetic mice. Supplementation of vitamin E was found to delay the progression of diabetic nephropathy. (forean J Nutrition 31(6) : 1024-1030, 1998)0, 1998)

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Yeast Surface Display of Capsid Protein VP7 of Grass Carp Reovirus: Fundamental Investigation for the Development of Vaccine Against Hemorrhagic Disease

  • Luo, Shaoxiang;Yan, Liming;Zhang, Xiaohua;Yuan, Li;Fang, Qin;Zhang, Yong-An;Dai, Heping
    • Journal of Microbiology and Biotechnology
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    • v.25 no.12
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    • pp.2135-2145
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    • 2015
  • VP7, an outer capsid protein of grass carp reovirus (GCRV), was expressed and displayed on the surface of Saccharomyces cerevisiae for developing an efficient vaccine against hemorrhagic disease of grass carp. The result of flow cytometry analysis indicated that protein VP7 could be displayed on the surface of yeast cells after inducing with galactose. The expression of VP7 was confirmed by western blot analysis and further visualized with confocal microscopy. The specific antibodies against VP7 generated from mice were detectable from all immune groups except the control group, which was immunized with untransformed yeast cells. The displaying VP7 on glycosylation-deficient strain EBYΔMnn9 was detected to induce a relatively low level of specific antibody amongst the three strains. However, the antiserum of EBYΔM9-VP7 showed relative high capacity to neutralize GCRV. Further neutralization testing assays indicated that the neutralizing ability of antiserum of the EBYΔM9-VP7 group appeared concentration dependent, and could be up to 66.7% when the antiserum was diluted to 1:50. This result indicates that appropriate gene modification of glycosylation in a yeast strain has essential effect on the immunogenicity of a yeast-based vaccine.

Observation of Cellodextrin Accumulation Resulted from Non-Conventional Secretion of Intracellular β-Glucosidase by Engineered Saccharomyces cerevisiae Fermenting Cellobiose

  • Lee, Won-Heong;Jin, Yong-Su
    • Journal of Microbiology and Biotechnology
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    • v.31 no.7
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    • pp.1035-1043
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    • 2021
  • Although engineered Saccharomyces cerevisiae fermenting cellobiose is useful for the production of biofuels from cellulosic biomass, cellodextrin accumulation is one of the main problems reducing ethanol yield and productivity in cellobiose fermentation with S. cerevisiae expressing cellodextrin transporter (CDT) and intracellular β-glucosidase (GH1-1). In this study, we investigated the reason for the cellodextrin accumulation and how to alleviate its formation during cellobiose fermentation using engineered S. cerevisiae fermenting cellobiose. From the series of cellobiose fermentation using S. cerevisiae expressing only GH1-1 under several culture conditions, it was discovered that small amounts of GH1-1 were secreted and cellodextrin was generated through trans-glycosylation activity of the secreted GH1-1. As GH1-1 does not have a secretion signal peptide, non-conventional protein secretion might facilitate the secretion of GH1-1. In cellobiose fermentations with S. cerevisiae expressing only GH1-1, knockout of TLG2 gene involved in non-conventional protein secretion pathway significantly delayed cellodextrin formation by reducing the secretion of GH1-1 by more than 50%. However, in cellobiose fermentations with S. cerevisiae expressing both GH1-1 and CDT-1, TLG2 knockout did not show a significant effect on cellodextrin formation, although secretion of GH1-1 was reduced by more than 40%. These results suggest that the development of new intracellular β-glucosidase, not influenced by non-conventional protein secretion, is required for better cellobiose fermentation performances of engineered S. cerevisiae fermenting cellobiose.

Allergenicity and toxicity evaluation of the PAT protein expressed in herbicide-tolerant genetically modified Zoysia japonica (제초제저항성 GM 잔디에서 발현된 PAT 단백질의 알레르겐 유발 가능성 및 독성 평가)

  • Jeong, Hye-Rin;Sun, Hyeon-Jin;Kang, Ji-Nam;Kang, Hong-Gyu;Lee, Hyo-Yeon
    • Journal of Plant Biotechnology
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    • v.47 no.4
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    • pp.316-323
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    • 2020
  • This study aimed to evaluate the potential allergenicity and oral toxicity of the phosphinothricin acetyltransferase (PAT) protein expressed in Zoysia japonica, a herbicide-tolerant genetically modified (GM) zoysiagrass. In silico analysis of PAT showed no similarities with any known allergenic or toxic proteins, with <35% amino acid sequence homology with known allergens across a length of 80 amino acids and no continuous eight amino acid identity with known allergens. The PAT protein expressed in Z. japonica degraded very rapidly in the simulated gastric fluid in the presence of pepsin, and, no glycosylation of PAT was observed. The oral toxicity test revealed no mortality or toxic effect in mice following PAT administration at 4,000 mg/kg body weight. Our findings indicate that the PAT protein expressed in Zoysia japonica does not exhibit allergenic or toxic properties.

Cloning and Characterization of Ribosome-associated Membrane Protein 4 (RAMP4) gene in silkworm Bombyx mori

  • Yao Qin;Hu Zhigang;Xu Jiaping;Chen Keping
    • International Journal of Industrial Entomology and Biomaterials
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    • v.10 no.2
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    • pp.125-129
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    • 2005
  • Ribosome-associated membrane protein 4 (RAMP4) is a membrane protein that exposes its N-terminal hydrophilic portion on the cytoplasmic side and spans the membrane close to the C-terminal end. RAMP4 has previously been reported to belong to the set of proteins that remains associated with membrane-bound ribosomes, and controls the glycosylation of major histocompatbility complex class II-associated invariant chain. RAMP4 also may be relative to the stabilization of membrane proteins in response to stress, with other components of translocon, and molecular chaperons in ER. Application of 5'-RACE technique with specially designed primer, we cloned a 715 bp cDNA fragment which contains a 195 bp ORF, termed RAMP4. The deduced protein has 64 amino acid residues and contains a putative transmembrane-spanning domain at the COOH terminus.

Expression and Purification of Mutated Porcine Growth Hormone Binding Protein by Using Site-Directed Mutagenesis in E. coli (Site-Directed Mutagenesis를 이용하여 변이된 돼지 성장 호르몬 결합 단백질의 대장균 내 발현과 정제)

  • Choi, K.H.;Chung, K. S.;Lee, H.T.
    • Korean Journal of Animal Reproduction
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    • v.25 no.4
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    • pp.381-388
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    • 2001
  • The present study was designed to obtain porcine growth hormone binding protein (pGHBP) improved biological activation as derived mutation in binding site with growth horlnone (GH). A 756 bp of fragment encoding the extracellular domain of pGHBP gene was cloned from the total RNA of porcine fat tissue by reverse transcriptase polymerase chain reaction (RT-PCR) and created mutation in positions 26 and 122 using site-directed mutagenesis method. Position 26 is one and it is near to get on five potential N-linked glycosylation sites located in the extracellular domain of porcine growth hormone receptor known to have a direct influence on combination with GH. Position 122 is known as one of conformational epitope in bovine. It was over-expressed in E. coli using pET-32(c) expression vector and precisely purified by S-protein agarose and enterokinase. In our results, we was obtained pmGHBP of 30 kDa. It suggests to study the effects of the pmGHBP on cell proliferation in vitro and growth rate in vivo after administration.

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