• Title/Summary/Keyword: Catabolism

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Proteomic Analysis of Polycyclic Aromatic Hydrocarbons (PAHs) Degradation and Detoxification in Sphingobium chungbukense DJ77

  • Lee, Soo Youn;Sekhon, Simranjeet Singh;Ban, Yeon-Hee;Ahn, Ji-Young;Ko, Jung Ho;Lee, Lyon;Kim, Sang Yong;Kim, Young-Chang;Kim, Yang-Hoon
    • Journal of Microbiology and Biotechnology
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    • v.26 no.11
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    • pp.1943-1950
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    • 2016
  • Polycyclic aromatic hydrocarbons (PAHs) are commonly present xenobiotics in natural and contaminated soils. We studied three (phenanthrene, naphthalene, and biphenyl) xenobiotics, catabolism, and associated proteins in Sphingobium chungbukense DJ77 by two-dimensional gel electrophoresis (2-DE) analysis. Comparative analysis of the growth-dependent 2-DE results revealed that the intensity of 10 protein spots changed identically upon exposure to the three xenobiotics. Among the upregulated proteins, five protein spots, which were putative dehydrogenase, dioxygenase, and hydrolase and involved in the catabolic pathway of xenobiotic degradation, were induced. Identification of these major multifunctional proteins allowed us to map the multiple catabolic pathway for phenanthrene, naphthalene, and biphenyl degradation. A part of the initial diverse catabolism was converged into the catechol degradation branch. Detection of intermediates from 2,3-dihydroxy-biphenyl degradation to pyruvate and acetyl-CoA production by LC/MS analysis showed that ring-cleavage products of PAHs entered the tricarboxylic acid cycle, and were mineralized in S. chungbukense DJ77. These results suggest that S. chungbukense DJ77 completely degrades a broad range of PAHs via a multiple catabolic pathway.

A Theory Model for Explaining Human's Catabolism[異化作用] and Anabolism(同化作用) of Food and Drink[水穀] in Korean Traditional Medicine (수곡(水穀)의 인체내(人體內) 대사과정(代謝過程) 설명모델)

  • Lyu, Jung-Ah;Jang, Woo-Chang;Jeong, Chang-Hyun
    • Journal of Korean Medical classics
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    • v.21 no.1
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    • pp.63-78
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    • 2008
  • In Korean Traditional Medicine(K.T.M.)'s theory, there are some important constitutions which constitute the human being. They are Jeong(精), Gi(氣), Sin(神), and Hyeol(血). Jeong(精) is the essential substances which constituting human body and maintaining life's activities. Gi(氣) is the vital energyor functional activities of human body. Sin(神) is a kind of Gi(氣) which is related to mentality, consciousness and thinking. Hyeol(血) is the red fluid circulating through the blood vessels and nourishing the body tissues. When a man is born, he takes Jeong(精) from his father, and Hyeol(血) from his mother. So father' s Jeong(精) and mother' s Hyeol(血) became the source of their children's Jeong(精), Gi(氣), Sin(神), Hyeol(血). But after be borning, man need to make Jeong(精), Gi(氣), Sin(神), Hyeol(血) by himself from Foods and drinks[水穀]. This thesis was written to explain a process or a system how the Foods and drinks[水穀] change to human's Jeong(精), Gi( 氣), Sin(神), Hyeol(血). When the food and drink[水穀] put in human's mouth, Five Bu[五腑] primarily digest and change to food and drink[水穀]'s Essence and nutrients which is similar to chyme or chyle[乳廳]. Secondarily, Five Jang[五臟] make Gi(氣), Jinaek(津液) - the body fluid, Jeong(精), Wigi(衛氣) - the defensive Gi, and Yeonggi(營氣) - the nutrient Gi circulating the Meridians, and Hyeol(血) from that food and drink [水穀]'s Essence and nutrients. And the information of every processing is reflected in urine. 50 the digestion is accomplished at not only Five Bu[五腑] but also five Jang[五臟]. The concept of digestion in this thesis is including both catabolim[異化作用] and anabolism [同化作用]. Samcho(三焦) is the recognition to the process of this digestion - ctabolism and anabolism in three part.

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Effects of Ginseng Saponin on the Lysosomal Enzyme Activities in Streptozotocin-induced Diabetic Mice (인삼 Saponin이 Lysosome 효소 활성에 미치는 영향)

  • 문창규;김희수;김강석
    • Journal of Food Hygiene and Safety
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    • v.9 no.3
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    • pp.105-109
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    • 1994
  • Lysosomal enzymes might play a most important role in the pathogenesis od diabetic microangiopathy. Some glycosidases, which participate in the catabolism of glycoprotein, are significantly decreased in diabetic mice. In search of new potential lysosomal enzyme inducers, we examined the effects of crude red-ginseng saponin fraction on N-acetyl-$\beta$-D-glucosaminidase, $\beta$-D-galactosidase and $\alpha$-D-mannosidase activities in the liver and kidney of normal and streptozotocin induced diabetic mice. It was found that i.p. administration of ginseng saponin produced the induction of lysosomal enzymes in the kidney more intensively than in the liver. The obtained results suggest the possibility that ginseng saponin might prevent the diabetic microangiopathy.

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Antihyperlipidemic Effects of Methanol Extracts from Mulberry Leaves in Cholesterol-Induced Hyperlipidemia Rats (뽕잎추출물이 콜레스테롤 투여 흰쥐의 혈청지질에 미치는 영향)

  • 김선여;이완주;김현복;김애정;김순경
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.27 no.6
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    • pp.1217-1222
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    • 1998
  • This study was conducted to investigate the effect of mulberry leaves on lipid metabolism in cho lesterol induced hypercholesterolemia rats. The mulberry treatment group showed decreases of serum lipid concentration compared with hyperlipidemic group. Also, Mulberry leaves inhibited the activity of HMG Co A reductase, increased lipase activity. In histopathological examination, abdominal aorta showed no critical lesions with mulberry leaves treatment. These results suggest that hypolipidemic effects of mulberry leaves on rats were the inhibition of cholesterol synthesis and acceleration of cholesterol catabolism in the liver. For human, serum triglyceride contents were more significantly decreased with treatment of mulberry leaves powder.

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Catechol-O-Methyltransferase Activity in Cholestatic Rat's Liver Induced by Bile Duct Ligation

  • Mun, Kyo-Cheol
    • BMB Reports
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    • v.29 no.2
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    • pp.142-145
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    • 1996
  • To investigate the cause of increased plasma catecholamine levels in liver disease, catechol-O-methyltransferase (COMT), which provides a major route of catabolism for circulating catecholamines, was studied under the cholestasis induced by mechanical biliary obstruction in rats. Monoamine oxidase (MAO) activity and the $K_m$ and $V_{max}$ values for both enzymes were also measured. Cytosolic, microsomal, and mitochondrial COMT activities in the cholestatic liver were significantly decreased throughout the experiment. Microsomal, and mitochondrial MAO activity in the cholestatic liver were also significantly decreased. Vmax values of COMT and MAO were lower. Serum COMT and MAO activities were detected after CBD ligation. These results indicate that plasma catecholamine levels are increased in liver disease due to decreased hepatic degradation of catecholamines by decreased activities of COMT and MAO. The decreased activity of these enzymes is caused by decreased biosynthesis and by flowage into the blood from the damaged hepatocyte.

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Asymptomatic maternal 3-methylcrotonylglycinuria detected by her unaffected baby's neonatal screening test

  • Lee, Sun Hee;Hong, Yong Hee
    • Clinical and Experimental Pediatrics
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    • v.57 no.7
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    • pp.329-332
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    • 2014
  • 3-methylcrotonyl-coenzyme A carboxylase (3MCC) deficiency is an autosomal recessive disorder in which leucine catabolism is hampered, leading to increased urinary excretion of 3-methylcrotonylglycine. In addition, 3-hydroxyisovalerylcarnitine levels increase in the blood, and the elevated levels form the basis of neonatal screening. 3MCC deficiency symptoms are variable, ranging from neonatal onset with severe neurological abnormality to a normal, asymptomatic phenotype. Although 3MCC deficiency was previously considered to be rare, it has been found to be one of the most common metabolic disorders in newborns after the neonatal screening test using tandem mass spectrometry was introduced. Additionally, asymptomatic 3MCC deficient mothers have been identified due to abnormal results of unaffected baby's neonatal screening test. Some of the 3MCC-deficient mothers show symptoms such as fatigue, myopathy, or metabolic crisis with febrile illnesses. In the current study, we identified an asymptomatic 3MCC deficient mother when she showed abnormal results during a neonatal screening test of a healthy infant.

Dietary Fatty Acids and Blood Cholesterol

  • Hayes, K.C.;Khosla, Pramod;Pronczuk, Andrzej;Lindsey, Saralyn
    • Journal of Nutrition and Health
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    • v.24 no.4
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    • pp.378-392
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    • 1991
  • A series of studies in monkeys and hamsters, and reevaluation of published human data, indicate that dietary saturated fatty acids exert a dissimilar metabolic impact on cholesterol metabolism. Myristic acid(14 : 0) appears to have a major cholesterol-raising effect by means of decreasing LDL receptor activity and by increasing the direct production of LDL (from sources other than VLDL-catabolism) Palmitic acid (16 : 0) appears neutral in most cases (plasma cholesterol<200mg/dl) or until the LDL receptor is down-regulated, as with high cholesterol intake or obesity. In such cases. the down-regulated LDL receptors coupled with an increased VLDL production (induced by 16 : 0 and 18 : 1) can divert VLDL remnants to LDL and expand the LDL pool. Furthermore. the cholesterolemic impact of any saturated fatty acid can be countered up to a saturable 'threshold' level by dietary linoleic acid (18 : 2) which up-regulates the LDL receptor. Once above this 'threshold' the major fatty acids (16 : 0, 18 : 0, 18 : 1, 18 : 2, 18 : 3) appear to exert an equal impact on the circulating cholesterol concentration.

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Asymmetric Total Synthesis of the Glycosidase Inhibitor, 1,4-dideoxy-l,4-imino-D-arabinitol(DAB1)

  • Kim, In-Su;Hoon, Jung-Young
    • Proceedings of the Korean Society of Applied Pharmacology
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    • 2003.11a
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    • pp.115-115
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    • 2003
  • Naturally occurring sugar mimics with a nitrogen in the ring are classified into five structural classes: polyhydroxylated pyrrolidines, piperidines, indolizidines. pyrrolizidine, and nortropanes. Glycosidase are involved in a wide range of important biological processes, such as intestinal digestion, post-translational processing of glycoproteins and the lysosomal catabolism of glycoconjugate. The realization that alkaloidal sugar mimics might have enormous therapeutic potential in many diseases such as viral infection, cancer and diabetes has led to increasing interest and demand for these compounds. Most of these effects can be shown to result from the direct or indrect inhibition of glycosidases.

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Preventive Mechanisma of ${\beta}$-Glucan on the Experimental Atherosclerosis in Rats (실험적으로 동맥경화증을 유발시킨 랫드에서 ${\beta}$-Glucan의 동맥경화 방어기전에 대한 연구)

  • 김형욱;이영순
    • Biomolecules & Therapeutics
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    • v.1 no.1
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    • pp.109-120
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    • 1993
  • Mechanisms for the hypocholesterolemic effetcs of $\beta$-glucan remain unclear. Rats were divided into 3 groups; normal control group, atherogenic group(oral administration of cholesterol 40 mg/kg/day and vitamin $D_2$320,000 IU/kg/day),${\beta}$-glucan treatment group(oral administration of atherogenic treatment and ${\beta}$-glucan 0.135 g/kg/day). The ${\beta}$-glucan treatment group showed moderate increases of serum lipids concentration compared with atherogenic group. In histopathological examination, aortas showed no critical lesions. The total fecal neutral sterols and bile acids excreted for 6 days was increased compared with both normal and atherogenic group. These result\ulcorner suggest that mechanisms for the hypocholesterolemic effect of ${\beta}$-glucan on rats were due to the inhibition of cholesterol absorption in the intestinal lumen and acceleration of cholesterol catabolism in the liver.

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RNAi-mediated reduction of xanthine dehydrogenase results in increased biomass of Arabidopsis seedlings

  • Nakagawa, Ayami;Sakamoto, Atsushi;Takahashi, Misa;Morikawa, Hiromichi
    • Proceedings of the Korean Society of Plant Biotechnology Conference
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    • 2005.11a
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    • pp.356-360
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    • 2005
  • Xanthine dehydrogenase (XDH), a classic enzyme involved in purine catabolism, can catalyze the formation of redox-signaling reactive oxygen and nitrogen species such as superoxide and nitric oxide. We generated transgenic plants of Arabidopsis in which XDH was knocked out by introduction of hairpin RNA-expression vector. Expression analysis by reverse transcription-PCR and in-gel staining of XDH activity revealed that transgenic lines efficiently suppressedXDH expression at the transcriptional level, demonstrating that RNA interference was successfully induced. XDH-suppressed transgenic lines exhibitedincreased biomass production during the growth of seedlings.

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