• Title/Summary/Keyword: Cellular carbohydrates

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Analyses of cellular carbohydrates in Leucosporidium scottii and its related texa of basidiomycetous yeasts by the high performance liquid chromatography (담자균 효모(酵母) Leucosporidium scottii와 관련 분류군(分類群) 균주(菌珠)의 HPLC에 의한 세포당질(細胞糖質) 분석(分析))

  • Joo, Woo-Hong
    • The Korean Journal of Mycology
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    • v.19 no.4
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    • pp.253-257
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    • 1991
  • Cellular carbohydrates were hydrolysed and analyzed in the strains of Leucosporidium scottii and its related species of basidiomycetous yeasts by HPLC methods without any derivatization. Xylose was detected from the hydrolyses of the cellular carbohydrates of L. lari-marini, but not from those of three strains of L. antarcticum, L. fellii, and Rhodosporidium fluviales. not also from those of six strains of L. scottii contrary to other data reported. L. antarcticum and L. lari-marini were considered to be placed on the different genus of Cystofilobasidium or Mrakia, as based on the numerical analyses.

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Studies on the cellular metabolism in microorganisms as influenced by gamma-irradiation.(V) "On the membrane permeability changes and leakage of celluar constituents of irradiated yeast cell" (미생물의 세포생리에 미치는 전이방사선의 영향에 관한 연구 (제 5 ) "-의 과성에 대한 $\gamma$-의 영향에 대하여")

  • 김종협;전세열;김희자
    • Korean Journal of Microbiology
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    • v.6 no.2
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    • pp.54-62
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    • 1968
  • The effect of gamma-ray on yeast cells Sacch. cerevisiae, and the leakage of cellular constituents such as carbohydrates, ribose, amino acids, inorganic phosphates and organic phosphates have been studied. The samples of yeast cells washed throughly and starved intensively, radiation effects were compared with those of control (un-starved), the irradiation dose rates are in the range from 24 Kr. up. to 480, Kr. The loss of 260m$\mu$. absorbing material, are also observed. Mechanisms of membrane damage by gamma-irradiation are discussed corelating to permeability changes and loss of substances, then active and passive transport process are also under considerations in discussion. The experimental results are as follows, 1. Carbohydrates of yeast cell leak out by gamma-irradiation, and amounts of loss increase proportionally as the increasing of radiation dose, curve of carbohydrates loss in starved cells is parallel with those of non-starved cells. 2. Ribose leak out less than that of carbohydrate from irradiated cell, the dose response curve of loss is straight and proportional to the increasing of radiation doses, slope of the curve is much lower than of carbohydrates. 3. Amino acids also leak out and the curve of losses to radiation is not proportional, it is revealed that there are little losses from yeast at lower doses of irradiation. 4. The losses of inorganic phosphates increase unproportionally to the increasing of irradiation doses, there are little leakage at the lower doses of irradiation. The losses of organic phosphates increase proportionally to the increasing of irradiation doses, and the amount of losses are much more than that of inorganic phosphate at lower doses of irradiation. 5. Leakage from irradiated yeast cells was shown to be due to passive transport process not an energy requiring process of ion transport. 6. Loss of 260 m$\mu$. absorbing material is little more than that of control yeast by the gamma-irradiation dose of 120K.r. and 240K.r.

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Studies on Carbohydrate Accumulation in Aspergillus niger During the Differentiation (검정곰팡이의 분화(分化)에 따른 총탄수화물(總炭水化物) 및 트레하로즈량(量)의 변동(變勳)에 대한 연구(硏究))

  • Kim, Shin-Sook;Kim, Jong-Hyup
    • The Korean Journal of Mycology
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    • v.10 no.4
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    • pp.193-202
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    • 1982
  • The changes of total carbohydrates and trehalose levels during differentiation of A. niger were studied. Aspergillus niger was cultivated in Czapeck-Dox medium by the method of surface culture and shake culture. Total carbohydrates and trehalose were fractionated and determined by the method of Trevelyan and Harrison (1956). Total carbohydrates and trehalose accumulated in A. niger during sporulation. The influences of nutritional starvation on the levels of cellular carbohydrates in A. niger, which was cultivated in each nitrogen, phosphate and glucose limited Czapeck-Dox medium, were studied. The levels of total carbohydrates and trehalose in A. niger cultivated in nitrogen limited medium increased much than those cultured in full medium. The total carborates and trehalose levels in A. niger cultivated in phosphate limited medium increased, but the increases were less than those cultured in nitrogen limitted medium. In glucose limited medium, any changes of total carbohydrates and trehalose levels were not found. It is considered that the biochemical mechanisms responsible for the changes of total carbohydrates and trehalose levels may be related with differentiation of Aspergillus niger.

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Lectin-binding properties of chicken primordial germ cells during embryonic development

  • Kim, Duk-Kyung;Seo, Sam-Youl;Lee, Eun-Young;Lee, Seul-Ki;Han, Jae-Yong
    • Proceedings of the Korea Society of Poultry Science Conference
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    • 2001.11a
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    • pp.69-70
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    • 2001
  • Lectins have great potential as to determine the alternation of the distribution of cell surface carbohydrates during cellular development and differentiation. Here, we investigated the presence and distribution of cell surface carbohydrates on chicken primordial germ cells (PGCs) during the migration and gonadal stages using a variety of lectins. A total of six FITC-labelled lectins from several specificity classes were used: ConA (glucose/mannose), WGA (N-acetylglucosamine), STA (N-acetylglucosamine), DBA (N-acetylgalactosamine/galactose), UEA-I (fucose) and PHA-E (oilgosaccharide). As a results, PGC-specific binding was observed in STA. PGCs of migration stage (2.5- and 5.5-day embyos) were STA-positive whereas PGCs of 10-day embryonic gonad were not. The results suggest that N-acetylglucosamine residuse are present specifically in migrating chicken PGCs and changes during development.

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Composition and Partial Structure Characterization of Tremella Polysaccharides

  • Khondkar, Proma
    • Mycobiology
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    • v.37 no.4
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    • pp.286-294
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    • 2009
  • Heteropolysaccharides isolated from liquid cultures of nine Tremella species contained 0.3 to 1.2% protein, 2.7 to 5% ash, 0.9 to 3.4% acetyl groups, 76.5 to 84.2% carbohydrates and trace amounts of starch. The polysaccharides in aqueous solution were slightly acidic (pH 5.1 to 5.6). They consisted of the following monomeric sugars: fucose, ribose, xylose, arabinose, mannose, galactose, glucose and glucuronic acid. The backbones of the polysaccharide structures consisted of $\alpha$-(1$\rightarrow$3)-links while the side chains were $\beta$-linked.

The synthesis of aminocarbocyclics from glucose

  • Shin, Dong-Hyouk;Jeong, Jin-Hyun
    • Proceedings of the PSK Conference
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    • 2003.04a
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    • pp.235.1-235.1
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    • 2003
  • The abundance of carbohydrates in nature with diverse roles in biological systems makes them a subject of considerable interest. They exhibit biological effects. ranging from cellular regulation to the selective inhibition of enzymes with key roles in living organisms. A wide range of carbocyclic polyhydroxyls has significant therapeutic effects, examples of which include cyclohexane hexitols, such as inositols, and pseudo-sugars, such as cyclophellitol and valienamine. (omitted)

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Exercise and obesity-induced insulin resistance in skeletal muscle

  • Kwak, Hyo-Bum
    • Integrative Medicine Research
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    • v.2 no.4
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    • pp.131-138
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    • 2013
  • The skeletal muscle in our body is a major site for bioenergetics and metabolism during exercise. Carbohydrates and fats are the primary nutrients that provide the necessary energy required to maintain cellular activities during exercise. The metabolic responses to exercise in glucose and lipid regulation depend on the intensity and duration of exercise. Because of the increasing prevalence of obesity, recent studies have focused on the cellular and molecular mechanisms of obesity-induced insulin resistance in skeletal muscle. Accumulation of intramyocellular lipid may lead to insulin resistance in skeletal muscle. In addition, lipid intermediates (e.g., fatty acyl-coenzyme A, diacylglycerol, and ceramide) impair insulin signaling in skeletal muscle. Recently, emerging evidence linking obesity-induced insulin resistance to excessive lipid oxidation, mitochondrial overload, and mitochondrial oxidative stress have been provided with mitochondrial function. This review will provide a brief comprehensive summary on exercise and skeletal muscle metabolism, and discuss the potential mechanisms of obesity-induced insulin resistance in skeletal muscle.

Application of Nanotechnology to Korean Black-Red Ginseng: Solubility Enhancement by Particle Size Reduction

  • Park, Seul-Ki;Kim, Yoon-Kyung;Youn, Hyung-Sun;Lee, Mi-Young
    • Molecular & Cellular Toxicology
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    • v.4 no.1
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    • pp.52-60
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    • 2008
  • In order to investigate whether the particles reduced to almost nano grade might affect the chemical and physical properties of organic materials, whole Korean Black-Red Ginseng was pulverized into almost nano size and then ginsenosides, minerals, carbohydrates, lipids and proteins in the ultrafine particles were compared with those in the regular particles as control. The mean size of the ultrafine particles was in the 350 nm range, while that of the regular particles was $127{\mu}m$. More ginsenosides, minerals, carbohydrates, lipids and proteins were detected in the ultrafine particles than in the regular particles. Interestingly, more lipids from the ultrafine particles dissolved in the water than those from the regular particles in the ethanol. Absorption and transport of carbohydrate, lipid or antioxidant activity across the intestinal wall using everted intestine sacks of mice was also enhanced by particle size reduction at the almost nano scale. More cytotoxic effect against hepatoma cell growth by ultrafine particles was also found. These results could be used as the basic data for the understanding and evaluation of the effects of organic nanomaterials on the human health.

Bioconversion of Lignocellulosic Materials with the Contribution of a Multifunctional GH78 Glycoside Hydrolase from Xylaria polymorpha to Release Aromatic Fragments and Carbohydrates

  • Liers, Christiane;Ullrich, Rene;Kellner, Harald;Chi, Do Huu;Quynh, Dang Thu;Luyen, Nguyen Dinh;Huong, Le Mai;Hofrichter, Martin;Nghi, Do Huu
    • Journal of Microbiology and Biotechnology
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    • v.31 no.10
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    • pp.1438-1445
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    • 2021
  • A bifunctional glycoside hydrolase GH78 from the ascomycete Xylaria polymorpha (XpoGH78) possesses catalytic versatility towards both glycosides and esters, which may be advantageous for the efficient degradation of the plant cell-wall complex that contains both diverse sugar residues and esterified structures. The contribution of XpoGH78 to the conversion of lignocellulosic materials without any chemical pretreatment to release the water-soluble aromatic fragments, carbohydrates, and methanol was studied. The disintegrating effect of enzymatic lignocellulose treatment can be significantly improved by using different kinds of hydrolases and phenoloxidases. The considerable changes in low (3 kDa), medium (30 kDa), and high (> 200 kDa) aromatic fragments were observed after the treatment with XpoGH78 alone or with this potent cocktail. Synergistic conversion of rape straw also resulted in a release of 17.3 mg of total carbohydrates (e.g., arabinose, galactose, glucose, mannose, xylose) per gram of substrate after incubating for 72 h. Moreover, the treatment of rape straw with XpoGH78 led to a marginal methanol release of approximately 17 ㎍/g and improved to 270 ㎍/g by cooperation with the above accessory enzymes. In the case of beech wood conversion, the combined catalysis by XpoGH78 and laccase caused an effect comparable with that of fungal strain X. polymorpha in woody cultures concerning the liberation of aromatic lignocellulose fragments.

Glycoscience aids in biomarker discovery

  • Hua, Serenus;An, Hyun-Joo
    • BMB Reports
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    • v.45 no.6
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    • pp.323-330
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    • 2012
  • The glycome consists of all glycans (or carbohydrates) within a biological system, and modulates a wide range of important biological activities, from protein folding to cellular communications. The mining of the glycome for disease markers represents a new paradigm for biomarker discovery; however, this effort is severely complicated by the vast complexity and structural diversity of glycans. This review summarizes recent developments in analytical technology and methodology as applied to the fields of glycomics and glycoproteomics. Mass spectrometric strategies for glycan compositional profiling are described, as are potential refinements which allow structure-specific profiling. Analytical methods that can discern protein glycosylation at a specific site of modification are also discussed in detail. Biomarker discovery applications are shown at each level of analysis, highlighting the key role that glycoscience can play in helping scientists understand disease biology.