• Title/Summary/Keyword: Amino sugars

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The Characteristics of Bacteria Isolated from Ordinary Korean Soy Sauce and Soybean Paste (한국(韓國) 재래식(在來式) 간장 및 된장에서 분리(分離)한 세균(細菌)의 특성(特性))

  • Kwon, Oh-Jin;Kim, Jong-Kyu;Chung, Yung-Gun
    • Applied Biological Chemistry
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    • v.29 no.4
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    • pp.422-428
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    • 1986
  • The bacteria were isolated from ordinary Korean soy sauce and soybean Paste. After isolation, we investigated the bacteria which produces the characteristic flavor of ordinary Korean soy sauce and soybean paste, nothing the aroma, presence of amino acids, and free sugars. The results were obtained as follows. The bacteria isolated from ordinary Korean soy sauce and soybean paste were various Bacillus species. The isolated bacteria produced characteristic orders: 'Meju' order, the characteristic saline odor of ordinary Korean soy sauce or ordinary Korean soybean paste order, and enzymes: protease and amylase. The good characteristic saline odor of ordinary Korean soy sauce was produced by Bacillus licheniformis$(SSB_3)$. The good odor of ordinary Korean soybean paste was produced by Bacillus polymyxa$(SSB_4)$, Bacillus species$(SPB_1)$, Bacillus brevis$(SPC_2)$, and Bacillus lichniformis$(SPC_{2-1})$.

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Effects of Wheat Flour and Glutinous Rice on Quality of Kochujang (밀가루와 찹쌀이 고추장 품질에 미치는 영향)

  • Park, Chang-Hee;Lee, Suk-Kun;Shin, Bo-Kyu
    • Applied Biological Chemistry
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    • v.29 no.4
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    • pp.375-380
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    • 1986
  • The result of analysis of ingredient of Kochujang is as follows. The experiments were prepared with wheat flour (WF) and glutinous rice(GR) ; the experimental A type is made of full WF, B type, WF 75% and GR 25%, C type, WF 50% and GR 50% and D type, only full GR. The N content of crude protein and amino type N is higher in the order of A, B, C, and D types, ethyl alcohol is higher in the order of D, C, B, and A types in aging process. The pH is some what higher in A type but in moisture and NaCl, not much difference were shown in the experimental types. The isolated sugars of Kochujang ripened for 90 days analyzed out glucose, fructose, maltose and rhamnose with glucose being the largest in quantity. Glucose is higher in A type, fructose in B type. The alcohols of the ripened Kochujang analyzed out n-propyl, iso-butyl, and iso-amyl alcohol, the content of which is below 3.2mg% and did not show much difference in each experimental types.

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Changes in the Components during Alcohol Fermentation of Potatoes Using Pilot System (Pilot system을 이용한 감자의 알콜발효중 성분 변화)

  • Jeong, Yong-Jin;Seo, Ji-Hyung;Lee, Joo-Baek;Jang, Sang-Moon;Shin, Seung-Ryeul;Kim, Kwang-Soo
    • Food Science and Preservation
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    • v.7 no.2
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    • pp.233-239
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    • 2000
  • To proceed mass production and improve its quality, we fermented potatoes using pilot system and investigated the changes in components during fermentation. After liquefaction and saccharification of potatoes by Nuruk(group I), crude enzyme(group II) and glucoamylase(group III), sugar contents in all groups were 18brix equally. However sugar contents in group(II) and group(III) after 24hrs decreased deeply to 7.2 and 8.8 % respectively, after 24hrs. Alcohol content in group(I) increased slowly and was the highest such as 6.8% after 48hrs. Fusel oils in all groups were n-propanol, isobutanol and isoamylalcohol. The major fusel oil in all groups was isoamylalcohol. At the early stage of fermentation, free sugars were glucose, maltose and lactose. Glucose decreased deeply during fermentation and at latter of the fermentation, galactose was detected in all groups. The contents of total free amino acid were 516.57~569.98 mg% in group(I), 193.97~292.11 mg% in group (II) and 186.31~270.53 mg% in group(III). The contents of aspartic acid, serine, glutamic acid, alanine, arginine, and histidine were high in all groups.

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Acinetobacter Isolates Growing with Carbon Monoxide (일산화탄소를 이용하여 성장하는 acinetobacter의 분리 및 동정)

  • 조진원;임현숙;김영민
    • Korean Journal of Microbiology
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    • v.23 no.1
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    • pp.1-8
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    • 1985
  • Three strains (JC1, JC2, and HY1) of aerobic carbon monoxide (CO)-utilizing Acinetobacter were isolated from soil through CO-enrichment culture technique. All of them were Gram-negative, nonmotile, and rod-shated but they were changed to spherical form at the end of logarithmic phase. They were resistant to penicillin and able to frow at $42^{\circ}C$. The guanine plus cytosine contents of the DNAs ranged from 43 to 44.5 mol%. Oxidase was not present in all cells. The colonies were smooth and whitish yellow. Heterotrophic growth occurred on several sugars, organic acids, amino acids, and alcohols. The doubling times under and atmosphere of 30% CO and 70% air at $30^{\circ}C$ were 19h, 25h, and 35h, respectively, for JC1, JC2, and HY1, JC1 was studied in more detail. The cells were grown optimally in a mineral medium (pH 6.8) under a gas mixture of 30% CO and 70% air at $30^{\circ}C$. Growth of the cells with CO did not depend on molybdenum. It was able to grow with 100 ppm of CO in air as a sole source of carbon and energy.

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Effects of Red-Potato on the Physicochemical Properties of Kochujang (홍감자를 이용한 고추장의 제조)

  • Kim, Ok-Rye;Kim, Dong-Han
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.41 no.12
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    • pp.1805-1812
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    • 2012
  • The effects of red-potato on the physicochemical properties of kochujang were investigated during fermentation. The number of yeast and aerobic bacteria in kochujang increased up to 4 weeks of fermentation, then the yeast number slowly decreased. Amylase activities also increased after 2~4 weeks of fermentation with the addition of red-potato. The Hunter L-value of kochujang decreased sharply and the a-value increased through the addition of starch syrup, causing major changes in total color difference as the ratio of red-potato increased. There was a direct correlation between the amount of red-potato with water activity and titratable acidity. The oxidation-reduction potential of kochujang decreased sharply after 12 weeks of fermentation, and was lowered with the addition of red-potato. As the ratio of red-potato increased, reducing sugars and ethanol contents of kochujang increased in the later stage of fermentation, while the amino-type nitrogen content was lower. Sensory results showed that a final percentage of 2% red-potato in kochujang was optimal for taste and overall acceptability.

INHIBITION OF BROWNING REACTIONS OCCURRING IN THE STORAGE OF DRIED OYSTER 1. Inhibitors and Treating Conditions (건조굴 저장중의 갈변방지 1. 방지제의 효과와 처리조건)

  • LEE Kang-Ho;CHOI Jin-Ho
    • Korean Journal of Fisheries and Aquatic Sciences
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    • v.10 no.1
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    • pp.11-15
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    • 1977
  • Brownish discoloration develops very rapidly in the storage of dried oyster. This undesirable browning is mainly caused by the series of reactions of sugar-amino condensation, enzymatic oxidation of tyrosine and/or the oxidative rancidity of lipids in the tissue of oyster. Sulfites are commonly used as inhibitors for Maillard type browning reactions in agricultural products. The inhibitory effect of sulfite treatment on canned oysters was also confirmed in some investigations. The results suggested that sulfites not only work on blocking tile amadori rearrangement but also on the reduction of free tyrosine which retards the progress of enzymatic oxidation of tyrosine tyrosinase. In this paper, the effect of sodium sulfite treatment on the reduction of reducing sugar and free tyrosine as a function i)f browning inhibition in oyster was tested and other treatment with glucose-oxidase and yeast were also applied. In preparation of samples, fresh oysters were soaked in sodium sulfite solution by various concentration for different treating times, washed in running water to remove the sulfite residue, and finally dried in the shade. In the result, the treatment of sodium sulfite was certainly effective on the reduction of both free tyrosine and reducing sugars in fresh oyster. The best results were obtained by the treatment of 0.5M sodium sulfite solution for 60 minutes each for soaking and washing. Treatment with, glucose-oxidase and yeast solutions, however, did appear somewhat effective but it required so much time for a certain effect that it seemed not practically applicable.

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Identification of Sugar-Responsive Genes and Discovery of the New Functions in Plant Cell Wall

  • Lee, Eun-Jeong
    • Proceedings of the Korean Society of Crop Science Conference
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    • 2007.04a
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    • pp.65-73
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    • 2007
  • The objective of this study is to understand how regulatory mechanisms respond to sugar status for more efficient carbon utilization and source-sink regulation in plants. So, we need to identify and characterize many components of sugar-response pathways for a better understanding of sugar responses. For this end, genes responding change of sugar status were screened using Arabidpsis cDNA arrays, and confirmed thirty-six genes to be regulated by sucrose supply in detached leaves by RNA blot analysis. Eleven of them encoding proteins for amino acid metabolism and carbohydrate metabolism were repressed by sugars. The remaining genes induced by sugar supply were for protein synthesis including ribosomal proteins and elongation factors. Among them, I focused on three hydrolase genes encoding putative $\beta$-galactosidase, $\beta$-xylosidase, and $\beta$-glucosidase that were transcriptionally induced in sugar starvation. Homology search indicated that these enzymes were involved in hydrolysis of cell wall polysaccharides. In addition to my results, recent transcriptome analysis suggested multiple genes for cell wall degradation were induced by sugar starvation. Thus, I hypothesized that enzyme for cell wall degradation were synthesized and secreted to hydrolyze cell wall polysaccharides producing carbon source under sugar-starved conditions. In fact, the enzymatic activities of these three enzymes increased in culture medium of Arabidopsis suspension cells under sugar starvation. The $\beta$-galactosidase encoded by At5g56870 was identified as a secretory protein in culture medium of suspension cells by mass spectrometry analysis. This protein was specifically detected under sugar-starved condition with a specific antibody. Induction of these genes was repressed in suspension cells grown with galactose, xylose and glucose as well as with sucrose. In planta, expression of the genes and protein accumulation were detected when photosynthesis was inhibited. Glycosyl hydrolase activity against galactan also increased during sugar starvation. Further, contents of cell wall polysaccharides especially pectin and hemicellulose were markedly decreased associating with sugar starvation in detached leaves. The amount of monosaccharide in pectin and hemicellulose in detached leaves decreased in response to sugar starvation. These results supported my idea that cell wall has one of function to supply carbon source in addition to determination of cell shape and physical support of plant bodies.

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Associated Microorganisms and Chemical Composition of Persimmon Pickles (감장아찌의 성분특성 및 관련 미생물)

  • Chung, Dong-Ok;Chung, Hee-Jong
    • Journal of the Korean Society of Food Culture
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    • v.10 no.3
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    • pp.133-137
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    • 1995
  • The objectives of this study were to determine the chemical composition of persimmon pickles and microorganisms associated with the manufacture of persimmon pickles. Moisture content was 80.04% and sugar content was 13.72%, but crude ash content was 4.26% which meant some of sodium chloride in soaking solution were permeated into fresh persimmon. Soluble tannin and total vitamin C contents were decreased from 635.45 mg% and 34.53 mg% to 81.04 mg% and 23.76 mg%, respectively. Free sugars contained in persimmon pickles were glucose, fructose and sucrose, 17 kinds of free amino acids were detected including glutamic acid (24.97 mg%), aspartic acid (24.02 mg%) and leucine (22.33 mg%). Microorganisms asociated with the manufacture of persimmon pickles were identified as Bacillus subtilis, B. cereus, B. pumilus, B. thuringiensis, Candida glabrata, C. guilliermondi and Hansenula cnomala, especially C. glabrata was the strain which caused the swelling of vacuum packages of persimmon pickles in retail stores.

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Biological functions of histidine-dipeptides and metabolic syndrome

  • Song, Byeng Chun;Joo, Nam-Seok;Aldini, Giancarlo;Yeum, Kyung-Jin
    • Nutrition Research and Practice
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    • v.8 no.1
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    • pp.3-10
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    • 2014
  • The rapid increase in the prevalence of metabolic syndrome, which is associated with a state of elevated systemic oxidative stress and inflammation, is expected to cause future increases in the prevalence of diabetes and cardiovascular diseases. Oxidation of polyunsaturated fatty acids and sugars produces reactive carbonyl species, which, due to their electrophilic nature, react with the nucleophilic sites of certain amino acids. This leads to formation of protein adducts such as advanced glycoxidation/lipoxidation end products (AGEs/ALEs), resulting in cellular dysfunction. Therefore, an effective reactive carbonyl species and AGEs/ALEs sequestering agent may be able to prevent such cellular dysfunction. There is accumulating evidence that histidine containing dipeptides such as carnosine (${\beta}$-alanyl-L-histidine) and anserine (${\beta}$-alanyl-methyl-L-histidine) detoxify cytotoxic reactive carbonyls by forming unreactive adducts and are able to reverse glycated protein. In this review, 1) reaction mechanism of oxidative stress and certain chronic diseases, 2) interrelation between oxidative stress and inflammation, 3) effective reactive carbonyl species and AGEs/ALEs sequestering actions of histidine-dipeptides and their metabolism, 4) effects of carnosinase encoding gene on the effectiveness of histidine-dipeptides, and 5) protective effects of histidine-dipeptides against progression of metabolic syndrome are discussed. Overall, this review highlights the potential beneficial effects of histidine-dipeptides against metabolic syndrome. Randomized controlled human studies may provide essential information regarding whether histidine-dipeptides attenuate metabolic syndrome in humans.

Utilization of Soybean Curd Whey as a Medium for Lactobacillus acidophilus and Acid-and Bile-tolerance of Cultured Strains (순물의 Lactobacillus acidophilus 배지로서으 이용 및 생육균주의 내산성과 내담즙산성)

  • Chung, Soo-Hyun;Suh, Hyung-Joo;Lee, Ho
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.26 no.5
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    • pp.872-877
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    • 1997
  • Soybean curd whey(SCW) containing plenty of nutrients is the discarded by-product in soybean curd processing. To test the potential utilization of SCW as a medium for the cultivation of Lactobacilus acidophilus, the chemical composition of SCW, as well as the growth, acid production, acid-tolerance, and bile-tolerance of L. acidophilus in SCW-based media were investigated. Sucrose and stachyose, the main free sugars of SCW, were 0.42% and 0.41%, respectively. SCW contained 36.1mg/L of total free amino acids. L. acidophilus KFRI 150 showed lower cell growth and acid production in SCW than those in MRS broth. In optimized SCW-based medium supplemented with 1.0% glucose, 0.5% yeast extract, and 0.2% $K_{2}HPO_{4}$, the growth and acid production of L. acidophilus KFRI 150 increased by twice against those in SCW. In optimized SCW-based medium, the viable counts of four L. acidophilus strains were mostly at the level of $10^{9}$/ml, which is similar to those in MRS broth. Each acid-tolerance and biletolerance of four L. acidophilus strains cultured in optimized SCW-based medium and MRS broth showed no dist-inguishable difference.

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