• Title/Summary/Keyword: LEU

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Lactic Acid Bacteria Isolated from Fermenting Kimchi and Their Fermentation of Chinese Cabbage Juice (김치에서 젖산균의 분리 및 이 세균들의 배추즙액 발효)

  • Shim, Sun-Taek;Kyung, Kyu-Hang;Yoo, Yang-Ja
    • Korean Journal of Food Science and Technology
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    • v.22 no.4
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    • pp.373-379
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    • 1990
  • Lactic acid bacteria(LAB) were isolated from fermenting Kimchi and were cultivated in filter-sterilized Chinese cabbage juice individually or in combination. LAB isolated were Lactobacillus leichimannii, Lac. fermentum, in addition to the already known Leuconostoc mesenteroides, Lac. plantarum, lac. brevis and pediococcus pentosaceus. Lac. leichimannii, Lac. fermentum and Lac. sake, the early lactobacilli, were high in number exceeding $10^4cells/ml$ at 0 time and multiplied up to $10^9cells/ml$ altogether at the 3rd day of kimchi fermentation. When the representative LAB were cultivated singly in Chinese cabbage juice with or without 3.0% NaCl, one strain of Leu. mesenteroides and La. leichmannii were not different in acid producing ability while the other strain of Leu. mesenteroides and Lac. fermentum Lac. plantarum, produced less acid when NaCl was present. When the bacteria in combination were cultivated in Chinese cabbage juice with 3.0% NaCl, the presence of Leu. mesenteroides was essential to eliminate the lag phase in acid production with higher amounts of acid produced than without. The total number of lactobacilli in the mixture of kimchi ingredients was about $2.9{\times}10^4 cells/ml$ while the number of Lac. plantarum was 7.3 cells/ml. The number of Lac. plantarum in individual ingredients were normally in the range between $0.0{\sim}240cells/g$ except garlic sold in ready-to-use form with $9.0{\times}10^3 cells/g$.

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Studies on the Changes of Taste Compounds during Soy Paste Fermentation (III) (된장 숙성 중 정미 성분의 변화에 관한 연구(III))

  • 김미정;이혜수
    • Korean journal of food and cookery science
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    • v.9 no.4
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    • pp.261-265
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    • 1993
  • For the purpose of supplying the information to improve the acceptability of soy paste as the condi-ment, the changes of peptide were determined. The results were as follows; Average peptide length were decreased. It was 102 at 0 day, 15 at 10 day and 4.1 at 180 day. Peptide fraction were the same as in 60 day and 180 day. Low molecular weight peptide were not changed greatly during fermention. Peptide identified in 180 day fermentation were Ala-Ser, Gly-Glu, Glu-Ser, Asp-Glu, Asp- Tyr, Asp-Ala-Ser, Ala-Ser-Glu, Glu-Ser-Ala, and Ala-Lys-Met. In the characteristics of bitter peptide in 180 day fermentation, soy paste itself didn't show bitter taste', solvent extration fraction I'showed bitter taste. After gel chromatography, fraction I, fraction II and fraction III were obtained and fraction II were bitter peptide of low molecular weight. After gel chromatography', solvent extration fraction 2'(water extration) were divided into fraction IV, V, VI,VII and VIII. Fraction IV, V and VI showed bitter taste. Amino acids composition of the fractions showing bitter taste were like that; fr. 1: Glu- (Asp, Pro, Val, lie or Leu)-Met fr. II Pro-(Glu, Val, Phe)-lle or Leu fr. IV: Glu-(Asp, Ala, Tyr, Leu of lie)-Phe fr. V: Ala-(Met, Glu, Pro)-lle or Leu fr. VI: Asp-(Phe, Ser, fly)-Val.

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Acute Toxicity of Leuconostoc kimchii GJ2, An Exopolysaccharide-Producing Lactic Acid Bacteria Isolated from Kimchi, in Mice (김치로부터 분리한 Exopolysaccharide생성 유산균 Leuconostoc kimchii GJ2의 마우스에 대한 급성독성)

  • Lee, Jae-Joon;Lee, Yu-Mi;Chang, Hae-Choon;Lee, Myung-Yul
    • Journal of Life Science
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    • v.17 no.4 s.84
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    • pp.561-567
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    • 2007
  • The present study was carried out to investigate the acute toxicity of Leuconostoc kimchii GJ2(Leu. kimchii GJ2), an exopolysaccharide-producing lactic acid bacteria isolated from kimchi, in ICR male and female mice. The test article was intraperitoneally or orally administered to both sexes of mice. Then followed a 14-day period of observation. In intraperitoneal acute toxicity test, mice were injected intraperitoneally with dosage of 0, 700, 900, 1,100, 1,300, 1,500, 1,700, 1,900, 2,100, 2,300 and 2,500 mg/kg. Intraperitoneal 50% lethal doses($LD_{50}$) of Leu. kimchii GJ2 was >2,500 mg/kg in male and female mice. In oral acute toxicity test, male and female mice were gavaged with Leu. kimchii GJ2 of five doses(0, 625, 1,500, 2,500 and 5,000 mg/kg). Oral $LD_{50}$ of Leu. kimchii GJ2 was consider to be higher than 5,000 mg/kg. Furthermore, no significant changes in general conditions, body weights, clinical signs and any gross lesions were observed in both sexes of mice administered intraperitoneally or orally with Leu. kimchii GJ2. In conclusion, our results suggest that no adverse effect level of Leu. kimchii GJ2 is estimated to be over 2,500 mg/kg in the intraperitoneal route and 5,000 mg/kg in the oral route, respectively.

Effect of Lactic Acid Bacteria and Temperature on Kimchi Fermentation (I) (젖산균과 온도가 김치발효에 미치는 영향(I))

  • Cho, Young;Rhee, Hei-Soo
    • Korean journal of food and cookery science
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    • v.7 no.1
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    • pp.15-25
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    • 1991
  • The effects of lactic acid bacteria on the chemical and microbial changes of fermented kimchi at various temperatures were studied. Kimchi was homogenized and was sterilized by ultra violet, then Lactobacillus plantarum, Leuconostoc mesenteroides, Pediococcus acidilactici, Lactobacillus brevis and the mixture of there bacteria inoculated on sterilized kimchi, respectively. The measurement of pH and total acidity, quantitative analysis of volatile organic acids and nonvolatile organic acids by gas chromatography were investigated while inoculated kimchi were fermented at $30^{\circ}C$, $21^{\circ}C$, $14^{\circ}C$ and $7^{\circ}C$. Sample I (original kimchi homogenate), Sample III (inoculated with Leuconostoc mesenteroides) and Sample Ⅵ (inoculated with mixed lactic acid bacteria) were alike in that changes of pH and total acidity and especially, these phenomena were prominent at $14^{\circ}C$. Formic, acetic and heptenoic acid as volatile organic acid were detected by GC, and these acids formed mainly by Leuconostoc mesenteroides and lactobacillus brevis. Sample III was more higher content than other samples at $14^{\circ}C$. As nonvolatile organic acid, lactic acid in all samples, citric acid in sample III at $21^{\circ}C$and $14^{\circ}C$, succinic acid in sample I at $30^{\circ}C$, $21^{\circ}C$, $14^{\circ}C$ and sample V at $30^{\circ}C$ were detected by GC.

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Chemical Structures and Physiological Activities of Plant Growth Substance, Malformin A's (식물생장조절물질 말포민 A동족체의 화학구조 및 생리활성)

  • Kim, K.W.
    • Korean Journal of Weed Science
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    • v.15 no.1
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    • pp.73-84
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    • 1995
  • Four malformin A's produced by Aspergillus niger van Tiegh. were separated by HPLC equipped with $C_{18}$ reversed-phase column and subjected to structural determination. Amino acid analyses and mass spectra data of the compounds indicate that they structurally resemble the cyclic pentapeptide malformin $A_1$. Their structures were deduced by two dimensional NMR and MS/MS experiments as cyclo-D-Cys-D-Cys-L-Val-D-Leu-L-Ile for $A_1$, cyclo-D-Cys-D-Cys-L-Val-D-Leu-L-Val for $A_2$, cyclo-D-Cys-D-Cys-L-Val-D-Leu-L-Leu for $A_3$, and cyclo-D-Cys-D-Cys-L-Val-D-Ile-L-Val for $A_4$. Among the mal-formin A's, the structure of $A_3$ was identical to that of malformin C, which was produced by A. niger strain AN-1. All the malformin A's caused severe curvatures of corn(Zea mays L.) roots and the activities of the malformin A's with molecular weight 529 were greater than those with molecular weight 515. Malformin $A_1$ caused the corn root curvature by 83% at a concentration of $0.25{\mu}M$. In the mung bean(Phaseolus aureus Roxb.) hypercotyl segment test, however, the molecular weight of malformin A's was not a factor influencing the physiological activities. Malformin $A_1$ stimulated the growth of mung bean hypercotyles by 165% at a $0.1{\mu}M$ concentration.

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Inhibition of Enzymatic Degradation of Leucine Enkephalin and $[D-Ala^2]$-Leucine Enkephalinamide in Various Rabbit Mucosal Extracts by Inhibitors (효소 억제제에 의한 토끼의 점막 추출액중 로이신엔케팔린 및 [D-알라$^2$-로이신엔케팔린아미드의 분해 억제)

  • Chun, In-Koo;Park, In-Sook;Hyun, Jeen
    • Journal of Pharmaceutical Investigation
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    • v.26 no.3
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    • pp.175-185
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    • 1996
  • To inhibit the enzymatic degradation of leucine enkephalin (Leu-Enk) and its synthetic analog. $[D-ala^2]$-leucine enkephalinamide (YAGFL), in the nasal, rectal and vaginal mucosal and serosal extracts of rabbits, effects of enzyme inhibitors such as amastatin (AM), puromycin (PM), thiorphan (TP), thimerosal (TM), EDTA, N-carboxymethyl-Phe-Leu (CPL), phenylethyl alcohol (PEA), phenylmercuric acetate (PMA), benzalkonium chloride (BC) and modified cyclodextrins, alone or in combination, were observed by assaying the pentapeptides staying intact during incubation. Mucosa extracts were prepared by exposing freshly-excised mucosal specimens mounted on Valia-Chien cells to isotonic phosphate buffer while stirring. The degradation of Leu-Enk and YAGFL followed the apparent first-order kinetics. The half-lives (mean) in the nasal, rectal and vaginal mucosal extracts were found to be 1.07, 0.33 and 1.14 hr for Leu-Enk, and 16.9, 6.2 and 6.8 hr for YAGFL, respectively. AM or PM, which is an aminopeptidase inhibitor, did not show a sufficient inhibition of Leu-Enk $(50\;{\mu}g/ml)$ degradation in all kinds of extracts. $Dimethyl-{\beta}-cyclodextrin\;(DM-{\beta}-CyD)$ decreased the degradation rate constants of Leu-Enk about 2 or 3 times, comparing with no additive. However, the use of mixed inhibitors of AM $(50\;{\mu}M)$/TM (0.25 mM)/EDTA (5 mM) resulted in a full stabilization of Leu-Enk by decreasing the degradation rate constants 67.3, 161.3 and 113.8 times far the nasal, rectal and vaginal mucosal extracts, respectively, comparing with no inhibitor. With mixed inhibitors, Leu-Enk remained intact more than 90% after 6 hr-incubation. In the stabilization of YAGFL, hM, TP or CPL alone showed little efffct, and some additives demonstrated a considerable inhibition of YAGFL degradation in the rank order of TM > BC > EDTA. However, the addition of mixed inhibitors such as TM (0.5 mM) and EDTA (5 mM) into the extracts protected YAGFL from the degradation by more than 85% even after 24 hr-incubation, suggesting almost complete inhibition of YAGFL degradation in the extract. On the other hand, $DM-{\beta}-CyD\;or\;hydroxypropyl-{\beta}-cyclodextrin$ (10%) were also found to retard enzymatic degradation rates of YAGFL markedly, and resulted in staying intact more than 80% of YAGFL in the nasal and vaginal mucosal extracts, and more than 60% in the rectal mucosal extract after 16 hr-incubation.

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Study on the Improvement of Quality in Jeung-pyun Prepared with Lactic Bacteria Having High Dextransucrase Activity as Starters (Dextransucrase 고활성 젖산균을 이용한 스타터 증편의 품질개선에 관한 연구)

  • Lee, A-Young;Park, Ju-Yeon;Hahn, Young-Sook
    • Korean Journal of Food Science and Technology
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    • v.38 no.3
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    • pp.400-407
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    • 2006
  • Twenty six strains of lactic acid bacteria were isolated from Jeung-pyun batter, among which Tetragenococcus halophilus 1-12 showed highest dextransucrase activity at 36.95 DSU/mg, followed by T. halophilus 5-8 (36.87 DSU/mg protein), T. halophilus 2-12 (32.66 DSU/mg protein), T. halophilus 3-3 (31.43 DSU/mg protein), T. halophilus 3-1 (30.73 DSU/mg protein), T. halophilus 5-12 (29.43 DSU/mg protein), and Leuconostoc mesenteroides subsp mesenteroides 2-9 (28.5 DSU/mg protein). L. mesenteroides subsp mesenteroides 2-9, T. halophilus 1-12, and L. mesenteroides subsp dextranicum 5-13, were selected as starters (0.1, 0.5, and 1.0%) for Jeung-pyun manufacturing. Specific volume of Jeung-pyun added with 1.0% L. mesenteroides subsp dextranicum 5-13 was highest at 2.00, and 1.0% T. halophilus 1-12-added Jeung-pyun was lowest at 033. Cross-sectional observation of Jeung-pyun showed Jeung-pyun added with 0.5% L. mesenteroides subsp mesenteroides 2-9 was uniformly formed. Number of air holes of Jeung-pyun increased with increasing amount of added T. halophilus 1-12. Increasing addition of L. mesenteroides subsp dextranicum 5-13 resulted in more uniform air holes and volumes. Hardness, gumminess, and chewiness of Jeung-pyun added with 0.5 and 2.0% L. mesenteroides subsp dextranicum 5-13 decreased significantly in compasion to control groups. Jeung-pyun added with 0.5% L. mesenteroides subsp dextranicum 5-13 showed excelIent overall sensory desirability ranking of 8.500.

Effect of Ethanol and/or Organic Acids on the Growth of Lactobacillus plantarum, Leuconostoc mesenteroides, Kluyveromyces marxianus Identified from Mul-kimchi (물김치 서식 미생물, Lactobacillus plantarum, Leuconostoc mesenteroides, Kluyveromyces marxianus 생육에 Ethanol과 유기산이 미치는 영향)

  • 한영숙
    • Journal of the East Asian Society of Dietary Life
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    • v.13 no.5
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    • pp.425-432
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    • 2003
  • Effects of ethanol and/or some organic acid on the growth of some microorganism grown in Kimchi, Lactobacillus plantarum, Leuconostoc mesenteroides. Kluyveromyces marxianus, were identified and the cell injury was observed by measuring optical density at 260nm. When 0.0∼5.0% ethanol was added in the growth medium, the cell growth was inhibited depending on the concentration. Organic acids involving acetic, adipic and citric acid inhibited the growth of L. plantarum and Leu. mesenteroides, but K. marxianus, the yeast, was not at 0.1% of organic acid. When 2.0% of ethanol and 0.1% of organic acid were used, adipic acid was more effective on the growth inhibition. This inhibition of microbial growth seemed to be caused by the leakage of internal contents from microbes which were observed by the optical density at 260nm in the buffer supernatant. 5.0% of ethanol accelerated the optical density increase at 260nm in L. plantarum, Leu. mesenteroides and K. marxianus, but 2.0% of ethanol did not. 0.1% organic acid increased the absorbance of the supernatant in lactic bacteria, but not in yeast, K. marxianus. The measurement of absorbance at 260nm revealed that the cell injury increased when 2.0% of ethanol and/or 0.1% of organic acid. especially adipic acid were added.

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Studies on the Improvements of Functional Properties of Sardine Protein by Plastein Reaction (Plastein반응을 이용한 정어리 단백질의 기능성 개선에 관한 연구 3. Plastein의 기능성 및 소화율)

  • Kim, Se-Kwon;Kwak, Dong-Chae;Cho, Duck-Jae;Lee, Eung-Ho
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.17 no.4
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    • pp.312-319
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    • 1988
  • The functional properties of plasteins have been compared with those of sardine protein concentrate and egg albumin. The solubility of plasteins was higher than that of FPG and the glu-plastein had 84% solubility in the range of pH 3-10. The dispersibility of plasteins was lower than that of egg albumin, however those of plasteins was higher than that of sardine protein concentrate. The water holding capacity of plasteins was higher than that of egg albumin. Lipid absorption of leu-papain plastein was the highest, holding 2.2m119, and that of the other plastein was higher than that of egg albumin. The emulsifying activity of leu-papain plastein was the highest, holding 66.4%, and that of glu-papain plastein was the lowest, holding 51.2%, The emulsifying stability of plasteins was similar to that of the emulsifying activity. The foaming capacitt of leu-papain plastein was the highest, holding 460%, and those of the other plasteins was higher than that of egg albumin. The foaming stability of plasteins was superior to that of egg albumin. The viscosity of plasteins was lower than that of see albumin. The in vitro digestibility of plasteins was 67.6-78.0% range. The digestibility by four pretense were somewhat lower in the glu-papain plastein than in the FPG. The digest of plasteins treated with the microbiol pretense such as molsin and pretense(from Streptomyces griceus), which had a storage broth taste.

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Effect of Starter and Salt-Fermented Anchovy Extracts on the Quality of Kimchi Sauce and Geotjeori Kimchi (Starter 및 멸치액젓 첨가가 김치양념 및 겉절이 김치의 품질에 미치는 영향)

  • Choi, Taek-Kwon;Park, So-Hee;Yoo, Jin-Hyun;Lim, Ho-Soo;Hwang, Sung-Yeon;Jo, Jae-Sun
    • Journal of the Korean Society of Food Culture
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    • v.18 no.2
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    • pp.96-104
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    • 2003
  • This study was performed in order to investigate the effect of Leuconostoc mesenteroides, Lactobacillus plantarum and salt fermented anchovy extracts on Kimchi sauce. The sauce was fermented more rapidly by addition of Leu. mesenteroids or salt fermented anchovy extracts on the early fermentation stage than the control, but it was fermented slowly on the late fermentation stage. When L. plantarum was added to the Kimchi on the early fermentation stage, the acidity of Kimchi didn't show a significant difference from the control, but acidity was remarkably increased on the late stage. Coliform group was disappeared when acidity of sauce was higher than 0.8% during fermentation. It was controlled by Leu. mesenteroides but not by L. plantarum. Total count and lactic acid bacterial count of the sauces with starter were $6.30{\times}10^6{\sim}1.0{\times}10^7\;CFU/mL$ and $1.04{\sim}2.04{\times}10^6\;CFU/mL$, respectively, but those of the control sauce were $10^6\;CFU/mL$ and $10^4\;CFU/mL$, respectively. Those count of the sauce with starter were higher than those of the control sauce on the later stage of fermentation. Organoleptic quality of the sauce with Leu. mesenteroides was superior to that with L. plantarum.