• 제목/요약/키워드: Peroxisomal ${\beta}$-oxidation

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Effect of Iron Deficiency on the Capacity for Peroxisomal and Mitochondrial $\beta$-oxidation

  • Swan Patricia B
    • Journal of Nutrition and Health
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    • 제26권7호
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    • pp.887-898
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    • 1993
  • In order to determine the effect of iron depletion and subsequent supplementation on the muscle capacity for peroxisomal (PO) and mitochondrial(MO) $\beta$-oxidation during high fat feeding, weanling rats were fed a 44% (HF) or 2.5% (LF) fat diet with (+Fe) or without (-Fe) iron for 6 or 9 weeks. After 1 week rats fed HF+Fe or HF-Fe had 50-100% more PO and MO in heart, soleus, psoas and gastrocnemius than did rats fed low fat, but after 3 weeks rats fed HF-Fe had lower muscle PO and MO. In muscles of iron depleted rats PO and MO were not increased by supplementation with iron for 3 weeks. After 6 weeks MO and PO in skeletal muscles of rats fed HF+Fe were lower than after 3 weeks. It is concluded that adequate iron is necessary for miaximum response of muscle PO and MO to high fat feeding. However, after 6 weeks both PO and MO have returned to levels similar to those of rats fed low fat diets, hence, the elevated catalase activities seen at this time do not reflect peroxisomal $\beta$-oxidation.

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Suppression of Hepatic Lipogenic Enzyme by Dietary Fish Oil In Rat Hepatocarcinogenesis

  • Kim, Hye-Kyeong;Choi, Hay-Mie;,
    • Toxicological Research
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    • 제14권3호
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    • pp.285-291
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    • 1998
  • This study was designed to examine the effects of polyundaturated fatty acid(PUFA) from different sourecs on hepatic lipogenic enzyme and peroxisomal ${\beta}$-oxidation in murine hepatocarcinogenesis initiated by diethylnitrodamine (DEN). Male Sprague-Dawley rats were fed one of three diets containing 10%(w/w)fat; fish oil-corn oil blended(FO), corn oil-beef tallow-fish oil blended(CF), or corn oil-beef tallow-perilla oil blended (CP), from the gestation period. At 10 weeks, animals were received a single inraperitoneal injection of DEN (200mg/kg body weight), were subjected to two-thirds partial hepatectomy 3 weeks later and were sacrificed 8 weeks after DEN initiation. The areas of placental glutathione S-transferase (GST-P) positive foci were significantly smaller in rats fed fish oil containing diets (FO and CF) than those fed CP diet. Fish oil feeding significantly decreased th activities of lipogenic enzyme. Rats fed fish oil containing diets (FO, CF) exhibited the lower fatty acid synthase (FAS) activity than those fed CP diet and FAS activity was positively correlated with areas of GSP-P positivie foci. Glucose-6-phophate dehydrogenase activity was the lowest and peroxisomal ${\beta}$-oxidation was stimulated in rats fed FO diet compared to other groups. It was also found that serum cholesterol was decreased in FO group. Therefore, the preventive effect against hepatocarcinogenesis and hypolipidemic effect of fish oil can be explained partly by suppression of the hepatic lipogenesis and by increase of peroxisomal ${\beta}$-oxidation.

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Troglitazone Regulates white Adipose Tissue Metabolism by Activating Genes Involved in Fatty Acid ${\beta}$-Oxidation in High Fat Diet-fed C57BL/6J Mice

  • Jeong, Sun-Hyo;Yoon, Mi-Chung
    • 대한의생명과학회지
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    • 제12권4호
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    • pp.319-327
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    • 2006
  • This study aimed to determine whether troglitazone stimulates genes related to fatty acid ${\beta}$-oxidation, leading to modulation of white adipose tissue (WAT) metabolism in high fat diet-fed mice. Female C57BL/6J mice were randomly divided into two groups (n=10/group). After they received either a high fat diet or the same high fat diet supplemented with troglitazone for 4 weeks, the effects of troglitazone on gene expression and physiology of WAT were measured using Northern, histological and serological analyses. Administration of troglitazone induced the expression of genes involved in mitochondrial and peroxisomal fatty acid ${\beta}$-oxidation in mesenteric WAT. Troglitazone also significantly increased uncoupling protein 2 mRNA levels. The changes in WAT gene expression were accompanied by reductions in circulating levels of free fatty acids and triglycerides as well as glucose and insulin. Histological studies showed that troglitazone treatment decreased the average size of adipocytes in mesenteric WAT. These results suggest that troglitazone-stimulated WAT expression of genes associated with fatty acid ${\beta}$-oxidation regulates WAT metabolism of high fat diet-fed mice, contributing to improvement of insulin sensitivity.

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Peroxisome Proliferators and Hepatocarcinogenesis

  • Hong, Jin-Tae
    • 한국환경성돌연변이발암원학회지
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    • 제17권2호
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    • pp.78-91
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    • 1997
  • Peroxisome is a single membrane-bounded organelle found in hepatic parenchymal cells and kidney tubular epithelial cells. A number of enzymes exist in peroxisome contributing to anabolic and catabolic peroxisomal functions. Extramitochontriai $\beta$-oxidation of fatty acid is a major function of peroxisome. Peroxisomes can be proliferated by many structually unrelated compounds such as hypolipidemic drugs, plasticizers, pesticides, some pharmaceutical agents and high fat diet. These chemicals, called peroxisome proliferators, act via the peroxisome proliferator activated receptor, to induce peroxisome proliferation, hepatomegaly and hepatocellular carcinoma in rodent. The clear mechanisms of peroxisome proliferator-induced hepatocarcinogenesis have been not demonstrated. Since they are not genotoxic, biochemical changes or changes in gene expressions may be involved. A free radical theory has been suggested based on the finding of oxidative damages of macromolecules by hydrogen peroxide released in the peroxisomal $\beta$-oxidation of fatty acid. Increased cell proliferation by a peroxisome proliferator has been also thought to be an important factor in the hepatocarcinogenesis as suggested in other cases of nongenotoxic carcinogenesis. The alternation of eicosanoid concentrations by peroxisome proliferators may be important in the peroxisome proliferator-induced hepatocarcinogenesis since peroxisome proliferators decrease the concentration of eicosanoids, and the peroxisome proliferator ciprofibrate-eicosanoid combination is comitogenic and costimulates some mitogenic signals in hepatocytes. All of proposed mechanisms should be considered in the peroxisome prolifrator-induced hepatocarcinogenesis.

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Effects of Prostaglandin E2 Analogue, Enprostil, on Lipid Metabolism in Mice

  • Kawamoto, N.;Murai, A.;Okumura, J.;Furuse, M.
    • Asian-Australasian Journal of Animal Sciences
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    • 제10권4호
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    • pp.402-407
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    • 1997
  • This study was conducted to investigate the effects of effects of enprostil, a prostaglandin $E_2$, analogue, on liver triacylglycerol content and factors that regulate liver lipid metabolism in mice. Mice received vehicle or $10{\mu}g$ enprostil/kg body weight intraperitoneally every 6 h, and were killed at 0, 6, 12, 18 and 24 h after the first injection. Enprostil significantly lowered liver triacylglycerol content after 12 h of the first injection. However, the peroxisomal ${\beta}$-oxidation activity was inconsistent with the result of liver triacylglycerol content, because its activity was lovered by enprosil. In another experiment, the effect of enprostil on lipid metabolism in mice was investigated in a short period. Mice received $10{\mu}g$ enprostil/kg body weight intraperitoneally, and were killed after 0, 5, 10, 30 and 60 min. After 30 min, malic enzyme activity was significantly increased by the administration of enprostil compared with the activity at 5 min after. No significant changes in liver carnitine palmitoyltransferase and peroxisomal ${\beta}$-oxidation activities were observed. Plasma free fatty acid concentrations were markedly reduced from 5 through 60 min after the administration of enprostil. Consequently, enprostil suppressive effect on liver triacylglycerol concentration might result from the decreased entry of free fatty acid into liver.

탄수화물과 N-3 지방산급원의 차이가 혈중중성지방함량이 높은 흰쥐의 지질대사에 미치는 영향 (Effect of Different Sources of Carbohydrate and N-3 Fatty Acid on Lipid Metabolism in Hypertriglyceridemic Rats)

  • 김우경
    • Journal of Nutrition and Health
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    • 제29권9호
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    • pp.925-933
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    • 1996
  • This study intended to compare the hypolipidemic effects among six experimental groups fed by three different dietary carbohydrates on hyperlipodemic rats. Sixty experimental animals were divided into 6 groups, SB, ST, SP and CB, CT, CP after production of hyperlipidemia fed by SB diet on Sprague-Dawley rats for 4 weeks. Rats were fed by six experimental diets for eight weeks. Hyjperlipidemic rats showed three times higher in plasma TG level not in cholesterol content compare to control group fed by stock diet. Two different dietary carbohydrates seem to be effective in body weight gain and fat cumulation as weight of epididymal fat pad. In comparison of S and C groups, C fed groups showed lowering effect in plasma TG and total lipid contents, but among S fed groups, ST and SP group showed lower than SB in this respects. Dietary carbohydrates seem to be more effective than fat in plasma lipid contents. When we compare among three different fat groups, only T groups with different carbohydrates increased in peroxisomal lipid oxidation and decreased in lipogenic enzyme activites. As same token, sucrose fed group with three fat sources seem to increase activiteies enzyme activities. In epididymal fat pad and Heart, SP and CP effect more in LPL activites than other groups. In conclusion, we can recommed to consume polysaccharides rather than disaccharide and n-3 fatty acids such as perilla and tuna oils to alleviate hypertringlycemic condition.

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새로운 ABCD1 유전자의 돌연변이를 가지는 소아 대뇌형 부신백질이영양증 1례 (A Case of Childhood Cerebral Form Adrenoleukodystrophy with Novel Mutation in the ABCD1 Gene)

  • 신영림
    • 대한유전성대사질환학회지
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    • 제12권1호
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    • pp.49-53
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    • 2012
  • X 연관 부신백질이영양증(adrenoleukodystrophy, ALD)은 과산화소체베타산화과정(peroxisomal ${\beta}$-oxidation)의 장애로 매우긴사슬지방산(very long chain fatty acids, VLCFA)이 신경계의 백질과 부신피질 및 고환에 축척된다. 이 질환은 과산화소체막단백질(peroxisomal membrane protein)을 형성하는 Xq28에 위치하는 ATP-binding cassette, subfamily D, member 1 (ABCD1) 유전자 돌연변이에 의해 주로 발생한다. X 연관 ALD는 다양한 임상양상을 보이는데 전형적인 소아대뇌형 부신백질이영양증은 10세 이전의 남아에서 대뇌백질에 빠르게 진행하는 탈수초현상을 보인다. 8세 된 남자 환아로 정상발달과정을 보이던 중 초등학교 입학 후에 집중장애와 산만한 모습으로 인해 주의력결핍과다활동장애로 진단받고 치료를 받았었다. 환아는 내원 8개월 전부터 말이 어눌해 지고 걸을 때 오른 발을 끌며 자주 넘어지는 모습을 보여 내원하였고 오른쪽 상, 하지의 근력이 떨어지는 양상이 관찰되었다. 검사상 부신기능저하증 소견을 보였으며 혈청 지방산 분석검사에서는 C26:0, C42:0/C22:0, C26:0/C22:0가 증가하였다. 뇌 자기공명영상에서는 T2와 FLAIR 강조영상에서 양측의 두정후두부의 백질과 소뇌의 백질에서 대칭적으로 고신호강도를 보였다. 환아는 부신백질이영양증로 진단하였고 ABCD1 유전자 분석 검사에서 새로운 c.983delT (p.Met329CysfsX7) 돌연변이가 확인되었다. X 연관 ALD는 유전자형과 표현형에 연관성이 없으며 다양한 임상양상을 보이기 때문에 환자들마다 임상증상을 잘 관찰해야 하며 향후 유전자 기능을 좀 더 파악하고 임상증상에 영향을 주는 다른 요소에 대한 연구가 필요할 것이라 사료된다.

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Crystal Structure of Acyl-CoA Oxidase 3 from Yarrowia lipolytica with Specificity for Short-Chain Acyl-CoA

  • Kim, Sangwoo;Kim, Kyung-Jin
    • Journal of Microbiology and Biotechnology
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    • 제28권4호
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    • pp.597-605
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    • 2018
  • Acyl-CoA oxidases (ACOXs) play important roles in lipid metabolism, including peroxisomal fatty acid ${\beta}$-oxidation by the conversion of acyl-CoAs to 2-trans-enoyl-CoAs. The yeast Yarrowia lipolytica can utilize fatty acids as a carbon source and thus has extensive biotechnological applications. The crystal structure of ACOX3 from Y. lipolytica (YlACOX3) was determined at a resolution of $2.5{\AA}$. It contained two molecules per asymmetric unit, and the monomeric structure was folded into four domains; $N{\alpha}$, $N{\beta}$, $C{\alpha}1$, and $C{\alpha}2$ domains. The cofactor flavin adenine dinucleotide was bound in the dimer interface. The substrate-binding pocket was located near the cofactor, and formed at the interface between the $N{\alpha}$, $N{\beta}$, and $C{\alpha}1$ domains. Comparisons with other ACOX structures provided structural insights into how YlACOX has a substrate preference for short-chain acyl-CoA. In addition, the structure of YlACOX3 was compared with those of medium- and long-chain ACOXs, and the structural basis for their differences in substrate specificity was discussed.

들기름과 참치유의 섭취가 흰쥐의 지방대사에 Eicosanoids 생성에 미치는 영향 (Effects of Perilla Oil and Tuna Oil on Lipid Metabolism and Eicosanoids Production in Rats)

  • 김우경
    • Journal of Nutrition and Health
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    • 제29권7호
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    • pp.703-712
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    • 1996
  • This study planned to compare the effects of source and amount of dietary n-3 fatty acid, tuna oil and perilla oil, on lipid metabolism and eicosanoids production in Spargue-Dawley strain male rats. Weaning rats were fed 5 different experimantal diets for 4 weeks. (S : beef tallow 50%+sesame oil 50%, T1 : beef tallow 50%+sesame oil 40%+tuna oil 10%, T2 : beef tallow 50%+sesame oil 25%+tuna oil 25%, P1 : beef tallow 50%+sesame oil 40%+perilla oil 10%, P2 : beef tallow 50%+sesame oil 25%+perilla oil 25%) Food intake was higher in T2 group than in other groups, but body weight gain and food efficiency tate were not different among groups. Plasma total lipid and triglyceride were significantly lower in groups fed perilla oil as much as groups fed tuna oil than in S. But tuna oil reduced plasma cholesterol level more than perilla oil. Liver total lipid per unit, cholesterol and triglyceride were not affected by dietary fat sources. Peroxisomal $\beta$-oxidation was higher in T1 and T2 than in P1 and P2. Activities of glucose 6 phosphate dehydrogenase and malic enzyme were lower in T1 and T2 than in group fed sesame oil only. Plasma TXB2 was affected by n-3 fatty acid consumption, and it was lower in perilla oil groups as much as tuna oil groups than in S. But 6-keto PGF1$\alpha$ was not different among experimental groups. The results of this study indicated that tuna oil and perilla oil both decreased plasma lipids, however, the mechanism may be different. And tuna oil and perilla oil had a similar effects on eicosanoids production.

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토마토의 성장과정에 따른 카탈리아제 (Catalase) 활성에 관한 연구 (Studies on the Catalase Activities of Tomato (Lycopersicum esculentum) as a Function of Age)

  • 박시원;김덕심
    • 대한화학회지
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    • 제37권12호
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    • pp.1068-1075
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    • 1993
  • 토마토(Lycopersicum esculentum)를 파종하여 1년간 성장시키면서 성장기간에 따른 잎과 뿌리의 catalase 활성 변화를 측정하였다. 뿌리에 있어서의 catalase 활성은 잎의 경우에 비해 전반적으로 매우 미약하였다. 반면에 잎의 catalase 활성은 매우 현저한 변화 양상을 나타냈는데 주로 peroxisomal 분획에 존재하였고 특히 발아 후 2주 이내의 발아초기에 76 ${\mu}mol$/ml/min의 최고 활성은 기점으로 하여 급격히 감소했다가 성장기 4 ∼ 5 개월에 즈음하여 상당히 증가된 활성을 보였으며 11 ∼ 12개월째 노화기에 가장 저조한 활성을 보였다. 이와 같이 성장시기에 따라서 변화하는 catalase 활성에 영향을 미치는 인자로서 첫째 발아기에는 glyoxylate cycle과 $\beta$-oxidation이 일어나는 glyoxisomal 반응 그리고 둘째 발아기 이후에는 광합성 반응이 각각 해당시기에 $H_2O_2$를 발생시키는 반응으로 작용할 것으로 간주된다. 이 외에도 NADPH는 불활성화된 catalase(compound II)를 다시 활성화시켜 해로운 기질인 $H_2O_2$로부터 catalase 보호제로서의 역할을 함으로써 토마토의 생장기간 전체에 걸쳐 작용하는 것으로 나타났다.

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