• Title/Summary/Keyword: 젖산탈수소효소

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Effect of Mitochondrial Inhibitor on Lactate Dehydrogenase of Mesocricetus auratus and Bos taurus coreanae (햄스터와 소의 젖산탈수소효소에 대한 미토콘드리아 inhibitor의 영향)

  • Cho Sung Kyu;Lee Sang Hak;Yum Jung Joo
    • Journal of Life Science
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    • v.15 no.1 s.68
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    • pp.100-105
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    • 2005
  • The lactate dehydrogenase (EC 1.1.1.27, LDH) inhibitors were isolated from the LDH-free crude mitochondrial fraction of skeletal muscle in Syrian hamster (Mesocricetus auratus) and Korean native cattle (Bos taurus coreanae). The LDH inhibitor in skeletal muscle of M. auratus was successfully isolated by the treatment with 175 mM NaCl and ultrasonic. The LDH inhibitor in skeletal muscle of B. taurus coreanae was highly stable to heat and LDH fu isozyme was largely inhibited by the LDH inhibitor. The molecular weight of inhibitor was 22 kDa. Inhibitor played an important role in the binding of LDH with the mitochondria in tissues of skeletal muscle, kidney and liver except heart.

Subunit Interactions of Vertebrate Lactate Dehydrogenase: II. Molecular Hybridizationa

  • Yum, Jung-Joo;Kim, Sang-Yeop;Park, Sang-Yoon
    • The Korean Journal of Zoology
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    • v.24 no.4
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    • pp.201-215
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    • 1981
  • In vitro intra- and interspecific molecular hybridizations of lactate dehydrogenase isozymes from six species were performed by freezing and thawing the isozymes in sodium chloride, resulting each of the interspecific hybridization of Fluta alba $H_4 \\times$ Ophicephalus argus $M_4$ and that of O. argus $M_4 \\times$ Parasilurus asotus isozymes showed one hybrid isozyme considered to be an $M_2H_2$ isozyme. The results fit with the suggestion that the isozyme of lower vertebrates is a dimer of homodimer as far as te assemblies of subunit M and subunit H are concerned.

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Effect of Garlic Intake on the Antifatigue and Fatigue Recovery during Prolonged Exercise (장시간운동시 마늘섭취가 항피로 및 피로회복에 미치는 영향)

  • 백영호
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.24 no.6
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    • pp.970-977
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    • 1995
  • Effect of garlic intake on the antifatigue and fatigue recovery during prolonged exercise have been investigated. 16 male college students(8 persons of control group and the same numbers of garlic intake group), aged from 20 to 22 years, were subjected to the restricted experiment and maintained their same menu with exercise in life pattern during 14 days of program. In garlic intake group, 30g of garlic was given with every 3 meal per day to each person. A significant increase in HDL-cholesterol level was shown in the garlic intake group while total cholesterol, LDL-cholesterol and lactate level decreased by garlic intake. Lactate dehydrogenase activity in serum increased by garlic intake, however garlic intake was not significantly affected on Vo2, Vco2, ventilation, respiratory quotient. In conclusion, garlic intake seemed to be effective for antifatigue and tatigue recovery during prolonged exercise.

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Localization and characteristics of lactate and palate dehydrogenase in the sparganum and adult worm of Spirometra erinacei (만손열두조충에서 젖산탈수소효소와 말산탈수소효소의 분포와 특징)

  • Gwak, Gi-Hun;Jeon, Eun-U;Kim, Chang-Hwan
    • Parasites, Hosts and Diseases
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    • v.34 no.1
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    • pp.59-68
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    • 1996
  • This study investigated the enzyme histochemical localization and characteristics of lactate (LDH) and malate dehydrogenase (MDH) related with the oxidation-reduction metabolism in the sparganum and adult of 5. erinacei. By enzyme histochemical assay, activity of LDH was strong in the tegument and subtegumental muscle layers of the adult and sparganum. Activity of MDH was strong in the tegument of the sparganum and subtegumental muscle layers of the adult. However it was weak in the tegument of the adult. By electrophoresis, 45 kDa band was major and common in LDH of adults and spargana. The 150 kDa molecule was the major and common band in MDH of adults and r -spargana (from experimentally infected rats) . By isoelectrofocusing, isoelectric points (Pl) or 4 MDH isogyme from adult worm were 6.0.6.5, 6.7 and 7.1, respectively. Pl 6.0 was the major band. The active range of pH for MDH was about pH 6-8 and the optimum pH was pH 7 The effective temperature on the MDH was about $30^{\circ}C$$50^{\circ}C$ and the optimum temperature was about 40℃ in spargana md adult worm. In the stability against heat, when MDH was heated at 85℃ for 10 seconds, the activity was denatured perfectly. Maximum activity or MDH was 19.4 unit in the s-sparganum (from snakes), 24.5 unit in the r-sparganum (from rats) and 108.0 unit in the adult worm. The maximum activity was higher in adults than in spargana. The present result showed us that the nutrients absorbed through the tegument were transferred into inner tissues and were utilized as the source of metabolism. According to the habitat of the parasite, the isozymes of LDH and MDH are activated differently, and by this different activation the sparganum and adult can adapt themselves to parasitic circumstances.

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Kinetic Properties of Lactate Dehydrogenase in Tissues from Rana catesbeiana (황소개구리(Rana catesbeiana) 조직의 젖산탈수소효소의 역학적 특성)

  • Yum, Jung Joo;Ha, Eun Sung
    • Journal of Life Science
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    • v.24 no.2
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    • pp.118-127
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    • 2014
  • The kinetic properties and isozyme expression of lactate dehydrogenase (EC 1.1.1.27; LDH) in tissues from Rana catesbeiana I and II collected from February (I) and August (II) were studied. LDH activities, A4 isozyme, and LDH/citrate synthase (EC 4.1.3.7; CS) were high in skeletal muscle from R. catesbeiana I, and LDH $B_4$ isozyme increased in several tissues of R. catesbeiana II. In particular, LDH activities were high in heart and brain tissues from R. catesbeiana II. LDH eye-specific C isozyme, detected by native polyacrylamide gel electrophoresis after immunoprecipitation, was expressed in eye tissue and was more similar to the $B_4$ than $A_4$ isozyme. LDH $A_4$ isozyme was purified by oxamate-linked affinity chromatography, and the molecular weight of subunit A was 32.0 kDa. In R. catesbeiana II, levels of $Km^{PYU}$, $Vmax^{LAC}$, and tolerance to lactate of LDH were high in all tissues, and $Vmax^{PYU}$ of LDH in heart and brain tissue was highly detected. Purified $A_4$ isozyme and LDH in eye tissue were highly tolerate compared to others. The $Km^{LAC}$ value was highly measured compared to $Km^{PYU}$. The degree of inhibition by 10 mM of pyruvate on LDH activities in tissues from R. catesbeiana I and II was more pronounced as the ratio of subunit B increased. As a result, characteristic expression of LDH eye-specific C was found in R. catesbeiana. Anaerobic metabolism seemed to predominate as the LDH of skeletal muscle from I showed higher activity. It also appeared that R. catesbeiana II adapted well to incremental increases in LDH B, becoming tolerant to the lactate of LDH in tissues.

The Effect of Using the Functional Taping Applied Caffeine on Fatigue Substance during High-Intensity Training in Sprint Runners (단거리 육상선수들의 고강도 훈련 시 카페인을 도포한 기능성 테이핑이 피로물질에 미치는 영향)

  • Kim, Sang-Yeob
    • Journal of Digital Convergence
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    • v.12 no.5
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    • pp.491-500
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    • 2014
  • The purpose of this study was to suggest the basic information about functional taping applied caffeine which is to improve the fatigue and athletic performance during exercise by examining the effects of the functional taping applied caffeine on fatigue substance during high-intensity training. 10 male university students who are sprint runners were participated for this study and blood lipid components such as lactic acid, LDH, and phosphorous were analyzed. First, a group who used the functional taping applied caffeine showed lower rate of increase in lactic acid than other group who didn't use taping and also lactic acid showed lower rate of increase after the training than before the training. Second, a group who used the functional taping applied caffeine showed lower rate of increase in LDH than other group who didn't use taping and LDH also showed lower rate of increase after the training than before the training. Third, a group who used the functional taping applied caffeine showed lower rate of increase in phosphorous than other group who didn't use taping and phosphorous also showed lower rate of increase after the training than before the training. With this results, a group who used functional taping applied caffeine and perform high-intensity training can be a method which it can change the lactic acid, LDH, and phosphorous in positive way to sprint runners.

Effect of Intake L-Arginine on Athletic Performance, Lactate, Lactate Dehydrogenase and Ammonia in Male College Taekwondo Kyorugi Players during an 8-Week Intensive Winter Training (남자 대학 태권도 겨루기 선수의 8주간 고강도 동계 훈련 시 L-아르기닌 섭취가 경기수행능력, 젖산, 젖산탈수소효소 및 암모니아에 미치는 영향)

  • Kyung-Hyun Park;Su-Han Koh;Tae-Kyu Kim;Seon-Young Son;Soo-Min Ha;Do-Yeon Kim
    • Journal of the Korean Applied Science and Technology
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    • v.40 no.6
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    • pp.1309-1321
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    • 2023
  • This study was conducted by dividing L-arginine intake group (n=14) and placebo group (n=14) to investigate the effect of L-arginine intake on athletic performance, lactate, lactate dehydrogenase, and ammonia of men's college Taekwondo Kyorugi players during 8-week of intensive winter training. The L-arginine intake group consumed a total of 3 g, including 1 g for breakfast, 1 g for lunch, and 1 g for dinner, and the placebo group consumed maltodextrin in the same way. The 8-week winter training program was conducted at 70-90%HRR (heart rate reserve). Two-way repeated measures ANOVA was used for the interaction between the L-arginine intake group and the placebo group of the measured data, paired t-test was used for the difference between the periods within the group, and the difference between groups was analyzed using independent t-test. As a result, there was an interaction between groups in the average number of kicks among the performance ability through the TAAA (Taekwondo-specific aerobic anaerobic agility) test , and the main effect between groups was shown (p<.05). In addition, there was an interaction between groups and time in the kick fatigue index (p<.05). In lactate, the time-interaction were shown (p<.05) and interaction effects and inter-time main effects were observed in lactate dehydrogenase (LDH)(p<.05). In the case of ammonia, the interaction effect between the group and time was shown (p<.05). These results show that L-arginine intake can play a positive role in quickly synthesizing nitric oxide in blood vessels and expanding blood vessels to quickly remove fatigue-causing substances in the body for athletes who are easily exposed to fatigue after high-intensity training for male college Taekwondo Kyorugi players. Therefore, it is recommended to take L-arginine as a way to improve the performance of high-intensity elite Taekwondo Kyorugi players and recover from fatigue.

Distribution and Role of Mitochondrial Lactate Dehydrogenase Isozymes in Bird and Mammals (조류 및 포유류 내 미토콘드리아 젖산탈수소효소 동위효소들의 분포와 역할)

  • Cho, Sung Kyu;Yum, Jung Joo
    • Journal of Life Science
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    • v.27 no.5
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    • pp.530-535
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    • 2017
  • Mitochondria were isolated from bird and mammals. The activity of monoamine oxidase (EC 1.4.3.4) was then measured to identify mitochondrial isolation. Lactate dehydrogenase (EC 1.1.1.27, lactate dehydrogenase, LDH) isozymes in mitochondrial fractions were analyzed by biochemical and immunochemical methods. The activity of mitochondrial LDH was lower in mammals than in bird. Therefore, the role of mitochondrial LDH seems to be more important in bird than in mammals. The concentration of protein in all tissues of bird and mammals was less in the mitochondria than in the cytosol. In the cytosol of mice and golden hamsters, testis-specific LDH $C_4$ isozyme was expressed in testis in addition to the LDH $A_4$, $A_3B$, $A_2B_2$, $AB_3$, and $B_4$ isozymes. A single LDH AB hybrid isozyme was expressed in the chicken mitochondria. In mammals, mitochondrial LDH isozymes were differed according to tissues. LDH $A_4$ and testis-specific LDH $C_4$ isozymes were expressed in the mitochondria of mice. The mitochondrial testis-specific LDH $C_4$ isozyme was expressed only in the mice. In the golden hamster mitochondria, the LDH $B_4$ isozyme functioned as a lactate oxidase. As our results show, the mitochondrial LDH seemed to be playing the different role in the bird and mammals in relation with their metabolic conditions and habitats.

Changes of Activities and Isozymes of Lactate Dehydrogenase in Coreoperca herzi and Pseudogobio esocinus Acclimated to Rapid Increase of Dissolved Oxygen (급격한 용존산소량 증가에 순응한 꺽지(Coreoperca herzi)와 모래무지(Pseudogobioesocinus) 젖산탈수소효소 활성과 동위효소의 변화)

  • Cho Sung Kyu;Yum Jung Joo
    • Journal of Life Science
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    • v.15 no.1 s.68
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    • pp.71-79
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    • 2005
  • The metabolism of lactate dehydrogenase (EC 1.1.1.27, LDH) and $C_4$ isozyme were studied in tissues of Coreoperca herzi and Pseudogobio esocinus acclimated to rapid increase of dissolved oxygen (DO). In C. herzi the LDH activity was changed $35-39\%$ in brain and liver tissues, and within $20\%$ in other tissues. The $B_4$ isozyme was increased and isozyme containing subunit C was decreased in muscle tissue. The $B_4$ isozyme was increased in heart and kidney. In P. esocinus, the LDH activity in liver tissues was largely increased to $150\%$ for 30 minute and $70\%$ in other tissues. The $A_4$ isozyme was increased in muscle and $B_4$ isozyme was increased in other tissues. Especially, the metabolism of liver tissue in P. esocinus was regulated by increasing liver-specific $C_4$ and decreasing $A_4$ isozyme. But the metabolism of eye tissue in C. herzi was regulated by decreasing LDH activity and eye-specific $C_4$ isozyme. The LDH activity and LDH isozyme in P. esocinus were largely increased than C. herzi acclimated to rapid increase of DO. And eye-specific $C_4$ and liver-specific $C_4$ isozymes played role as lactate oxidase. Therefore, the response of species acclimated to rapid increase of DO seems to be variable, perhaps due to prior exposure to environmental conditions.

Characterization and Evolutionary Relationship of Lactate Dehydrogenase in Liver of Lampetra japonica and Liver-specific C4 Isozyme in Gadus macrocephdus. (칠성장어(Lampetra japnica) 간조직 젖산탈수소효소와 대구(Gadus macrocephalus) liver-Specific C4동위효소의 특성 및 진화적 관계)

  • 박선영;조성규;염정주
    • Journal of Life Science
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    • v.14 no.4
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    • pp.708-715
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    • 2004
  • The lactate dehydrogenase (EC 1.1.1.27, LDH) in liver of Lempetra japonica was purified in buffer of affinity chromatography. The liver-specific $C_4$ isozyme of Gadus macrocephalus was purified by heat treatment, affinity chromatography, and DEAE-Sephacel chromatography. The liver-specific $C_4$ isozyme was eluted in a buffer containing NAD+ and was coeluted with $B_4$isozyme in plain buffer of affinity chromagraphy. Liver-specific $C_4$ isozyme in G. macrocephalus was the most thermostable, and$B_4$isozyme was more stable than $A_4$. The LDH in the fraction of pH 7.45 purified from the liver of L. iaponica by chromatofocusing was more inhibited by pyruvate than purified LDH. The optimum pH of the LDH isozyme in the liver of L. japonica was 7.5 and that of liver-specific$C_4$ isozyme was 8.5. The LDH in liver of L. japonica made complexes more with antibody against Coreoperca herzi$A_4$ and liver-specific $C_4$ than with that against eye-specific $C_4$. Therefore, the structure of the LDH in liver of L. japonica might be similarly evolved to that of subunit A and liver-specific $C_4$ isozyme in liver tissue of G. macrocephalus. The evolution rate of subunit C is faster than that of subunit A. LDH in liver of L. japonica has not one isozyme but isozymes and it was also found out to have not only subunit A and B but also subunit C.