• 제목/요약/키워드: TCA cycle

검색결과 78건 처리시간 0.029초

Bis(2-ethylhexyl) phthalate가 in vitro에서 식물 토양병원성 세균 Pectobacterium carotovorum에 미치는 영향 (Effects of bis(2-ethylhexyl) phthalate(DEHP) on plant soil-borne pathogenic bacterium Pectobacterium carotovorum in vitro)

  • 김유리;김상태;상미경
    • 환경생물
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    • 제40권4호
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    • pp.398-404
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    • 2022
  • 본 연구는 플라스틱 가소제인 DEHP가 식물 병원균 중 하나인 P. carotovorum SCC1 균주에 미치는 영향을 조사하였다. DEHP가 균주 생장과 대사에 미치는 영향을 조사한 결과, 개체군 변화에 유의한 영향을 주지 않았으며, 세포막 투과성, ATPase 활성에 유의한 변화가 없었지만 TCA cycle 에서 DEHP 첨가에 따라 Succinyl-CoA synthase 활성이 유의적으로 감소하였다. 병원성 관련 유전자 발현량을 관찰한 결과 pectate lyase 유전자 발현량이 상대적으로 증가한 반면, pectinase 유전자는 상대적으로 발현량이 감소하였다. 따라서 DEHP는 P. carotovorum SCC1의 개체군 변화나 대사에는 유의미한 영향을 미치지 않지만 병원성 관련 유전자 발현에 영향을 미치므로 본 연구 결과는 향후 실제 식물 재배 조건에서 DEHP가 존재할 때 P. carotovorum의 특성에 관한 기초연구 자료로 활용할 수 있을 것이라 사료된다.

각종 인체 암조직의 당의 산화경로 분석 (Oxidative Pathway of $C^{14}-glucose$ in Various Human Cancer Tissues)

  • 이봉기;이상돈
    • The Korean Journal of Physiology
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    • 제2권1호
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    • pp.23-30
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    • 1968
  • Tissue homogenates of 12 kinds of human cancer tissues were incubated separately in medium containing $C^{14}-1-glucose$ and $C^{14}-6-glucose$ as a substrate in order to observe the oxidative pathway of glucose in the tumor tissues. At the end of 3 hours incubation in the Dubnuff metabolic shaking incubator, respiratory $CO_2$ samples trapped by alkaling which was placed in the center well of incubation flask were analysed for total $CO_2$ production rates and their radioactivities. The tissue homogenate samples after incubation were analyzed for their concentrations of glucose, lactate and pyruvate. Calculations were made on the glucose consumption rate and accumulation rates of lactate and pyruvate. Fractionation of oxidative pathway of glucose was carried out by calculating $C^{14}O_2 yields from C-1 and C-6 carbon of glucose. The following results were obtained. 1. In 12 kinds of human cancer, total $CO_2$ production rates were less than $8{\mu}M/gm$ except 2 cases. These lower values impressed that oxidative metabolism in the tumor tissues generally inhibited as compared with that in normal tissues. On the other hand, fractions of $CO_2$ derived from glucose to total $CO_2$ production rates (RSA) were less than 10% in every case. These facts showed that oxidation of glucose into $CO_2$ was remarkably inhibited in the tumor tissues. 2. Factions of glucose disappeared into $CO_2\;(RGD_{CO_2})$, lactate $(RGD_L)$, pyruvate $(RGD_P)$ to glucose consumption rates were as follows. $RGD_{CO_2}$ were less than 2% in cases of in this experiment and $RGD_L$ showed more than 5% except in 2 cases. These facts showed that anaerobic degradation of glucose into 3 carbon compounds was easily proceeded but further degradation into $CO_2$ via the TCA cycle was greatly inhibited resulting in accumulation of lactate. There are large variation in values of $RGD_P$ in different kinds of tumor tissue but relatively higher values in $RGD_{CO_2}$ were obtained in the tumor tissues as compared with those of normal tissues. 3. The oxidative pathway of glucose in tumor tissues were analyzed from the values of RSA which were obtained in $C^{14}-1\;and\;C^{14}-6-glucose$ incubation experiments. It was found that 3% of $CO_2$ derived from glucose were oxidized via the principal EMP-TCA cycle and the remainder were via alternate pathway such as HMP in the liver cancer and values in other cancer tissues were as follows; 4% in the tongue cancer, 6% in the colon cancer, 6% in the lung cancer, 9% in the stomach cancer, 11% in the ovarian cancer, 12% in the neck tumor, 22% in the uterine cancer, 22% in the bladder tumor, 32% in the spindle cell sarcoma and 65% in the brain tumor. These values except later 2 cases showed less than 30% which is the lowest value among the normal tissues. Even in the brain tumor in which showed highest value in the tumor group. It is reasonable to suppose that this fraction was remarkably decreased because values in normal brain tissue was more than 90%. From the above data, it was concluded that in tumor tissues, oxidation of glucose via TCA cycle was greatly inhibited but correlation between degree of inhibited oxidation of glucose via TCA cycle and malignancy of tumor were not clarified in this experiments.

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형질전환된 Escherichia coli변이주에서 Sodium citrate를 이용한 고농도 L-Threonine 생산 (Hyperproduction of L-Threonine by Adding Sodium Citrate as Carbon Source in Transformed Escherichia coli Mutant.)

  • 이만효;김병진;정월규;최선욱;박해룡;황용일
    • 생명과학회지
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    • 제14권5호
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    • pp.868-873
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    • 2004
  • 유용성이 확보된 L-threonine의 효율적인 발효생산을 위하여 생산균주 E. coli MT201를 유전자재조합을 통하여 개량하고 적절한 탄소원을 발굴하여 전체적인 생산량 증대를 도모하였다. 먼저, 5 liter발효조에서 유가식 배양을 통하여 생산균주 E. coli MT201이 균체량이 52($OD_{660}$)일때 57 g/1의 생산량을 보이는 것을 확인하였다. L-Threonine의 생산성 향상을 위하여 균체 내에서 생합성 전구물질인 oxaloacetate를 충분하게 공급하기 위해 C. glutamicum 유래의 pyruvate carboxylase의 유전자를 plasmid pPYC의 형태로 E. coli MT201에 도입하였다(E. coli MT/PYC). 그렇지만 E. coli MT/PYC을 배양한 결과로부터 E. coli MT201와 비교할 때 균체증식 및 생산량이 모두 감소하는 경향을 보였으며, 이를 해결하기 위하여 플라스크배양을 통하여 포도당과 sodium citrate를 1.5:3.5의 비율로 배지 중에 첨가하였을 때 이들 문제가 개선되는 것을 관찰하였다. 상기 비율의 탄소원 조건하에서 5liter 발효조를 이용한 유가식 배양에서 배양 75시간째에 L-threonine의 생산량 및 균체량($OD_{660}$)이 각각 75.7 g/l와 48로 효율적으로 향상되는 것을 알 수 있었다. 이는 과도한 anaplerosis에 의한 TCA 회로의 불균형을 중간산물인 citric acid를 sodium citrate의 형태로 공급함으로써 E. coli MT/PYC에서 균체증식이 정상화됨을 의미한다.

세포내 소기관과 물질대사의 관점에서 오이 떡잎의 발달 (Development of Cucumber Cotyledon in View of Metabolic Pathways and Organelle)

  • 김대재
    • 생명과학회지
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    • 제31권8호
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    • pp.778-785
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    • 2021
  • 오이 씨앗의 발아는 세포의 지방체내 저장지방의 분해 결과인 acyl-CoA의 글라이옥시좀으로 이동 후 베타 산화의 결과물인 acetyl-CoA의 글라이옥실산 회로로의 유입과 지방의 유동으로 촉발된다. Acetyl-CoA는 글라이옥실산 회로의 가동을 위한 탄소원을 제공하며 시트르산과 말산을 생성하며 글라이옥실산 회로의 작동을 유도한다. 지방 저장 종자의 발아에 있어서 글라이옥실산 회로는 필수적 요소이며, 그 결과물인 말산 및 숙신산의 미토콘드리아로의 이동은 TCA 회로의 가동과 옥살초산의 생성 및 세포질로의 유동으로 PEPCK에 의한 당신생을 가능하게 한다. 즉, 저장 지방을 원료로 여러 대사물질의 생산 및 이동과 다중의 대사경로를 통하여 발아 시 사용 가능한 에너지원인 포도당의 형태로 전환이 이루어진다. 이에 동반하여 많은 유전자의 발현 조절이 이루어지고, 세포내 소기관 특히 미소체로 대표되는 글라이옥시좀은 말산 합성효소(malate synthase)와 이소 시트르산 분해효소(isocitrate lyase)로 특화된다. 또 다른 acetyl-CoA의 유동은 carnitine을 매개로 하는 BOU (A BOUT DE SOUFFLE)의 작동이다. 이것은 카니틴의 대사와 관련하여 고등식물의 발달과 대사과정에서의 중요성이 확인된 것으로 사료된다.

Metabolic Characterization of the Corynebacterium glutamicum using DNA Microarray Technology

  • 조광명;장재우;김성준;박영훈
    • 한국생물공학회:학술대회논문집
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    • 한국생물공학회 2001년도 추계학술발표대회
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    • pp.739-740
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    • 2001
  • 37종의 주요 대사관련 유전자를 triplicate로 사용하여 DNA microarray를 제작하여 라이신 생산균주의 포도당과 원당을 탄소원으로 하여 배양시기에 따른 대사특성을 분석하였다. 포도당과 원당 사용시 C3, C4 대사산물의 변환에 관련된 anaplerosis에 관여하는 유전자의 발현변화가 매우 중요함을 파악할 수 있었다. 또한 배양시기에 따라 매우 특이적인 유선자 발현 양상을 보임을 학인할 수 있었다.

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Microaerophilies of campylobacters and related organisms

  • Han, Yeong-Hwan
    • 미생물과산업
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    • 제18권3호
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    • pp.23-33
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    • 1992
  • The general characteristics of campylobacters and related organisms (e.g., species of the genera Helicobacter and Wolinella, Bacteroides ureolyticus, and Bacteroides gracilis) are as follows: slender, non-sporeforming, gram-negative, vibroid bacteria (helical- or spiral- shpaed; except that B. ureolyticus and B. gracilis are straight-rod), 0.2-0.5 .mu.m in width and 0.5 .mu.m in length. (Smibert, 1984; Penner, 1988). The species of genus Campylobacter and related organisms are chemoorganotrophs; however, they neither oxidize nor ferment carbohydrates and instead obtain energy from amino acids, the salts of tricarboxylic acids (TCA) cycle intermediates, the salts of organic acids, or, in some species, H$\_$2/. With regard to their oxygen responses for growth, they all are microaeophilic i.e., they are capable of oxygen-dependent growth (respiring with oxygen as a terminal electron acceptor) but can not grow in the presence of a level of oxygen equivalent to that present in an air atmosphere (21% oxygen). This review will take interests in how these microorganisms response to oxygen for growth and what repiratory types they have.

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열자극에 따른 효모 ( Saccharomyces cerevisiae ) 의 Isocitrate Dehydrogenase 와 Glutamate Dehydrogenase 의 활성도 및 유리 아미노산의 변화 (Changes in the Activities of Isocitrate Dehydrogenase and Glutamate Dehydrogenase and in Free Amino Acid Pool by Heat Shock in Saccharomyces cerevisiae)

  • Kim, Hak-Hyeon;Nam-Kee Chang
    • The Korean Journal of Ecology
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    • 제14권1호
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    • pp.75-85
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    • 1991
  • Changes in the activities of isocitrate dehydrogenase (IDH) and glutamate dehydrogenase (GDH) and changes in free amino acids in the cytoplasm of Saccharomyces cerevisiae have been studied under heat shock condition. Heat shock conditions led to a significant decrease of NAD-IDH and NAD-GDH, It was shown appeared that the meaningful patterns of increase of NADP-IDH and NADP-GDH. It suggested that heat shock in yeast leads to a splitting of the TCA cycle and that glutamate synthesis takes place through the coupling of the NADP-linked isocirate and glutamate dehydrogenase. It was shown that about 14% of total free amino acids of yeast cells was decreased by heat shock. Especially heat shock condition resulted in the marked decreases of serine family amino acids such as serine, glycine and cysteine, and in the considerable increases of the rates of methionine, alanine, glutamin.

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Characterization of gltA::luxCDABE Fusion in Escherichia coli as a Toxicity Biosensor

  • Ahn, Joo-Myung;Kim, Byoung-Chan;Gu, Man-Bock
    • Biotechnology and Bioprocess Engineering:BBE
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    • 제11권6호
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    • pp.516-521
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    • 2006
  • The use of gltA gene, as a new biomarker for environmental stress biomonitoring, was investigated because of its key position as the first enzyme of the tricarboxylic acid (TCA) cycle. A recombinant bioluminescent Escherichia coli strain, EBJM2, was constructed using a plasmid carrying the citrate synthase (gltA) promoter transcribing the Photorhabdus luminescens IuxCDABE genes (gltA::luxCDABE). The responses from this strain were studied with five different classes of toxicants: DNA damage chemicals, phenolics, oxidative-stress chemicals, PAHs, and organic solvents. EBJM2 responded strongly to DNA damage chemicals, such as mitomycin C (MMC) and methyl-nitro-nitrosoguanidine (MNNG) and nalidixic acid with the strongest responses. In contrast, tests with several compounds from the other four classes of toxicants gave no significant response. Therefore, EBJM2 was found to be sensitive to DNA damage chemicals.

$^{13}C$ NMR Studies of Metabolic Pathways Regulated by HSP104 in Saccharomyces cerevisiae

  • 이경희;강수임;Susan Lindquist
    • Bulletin of the Korean Chemical Society
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    • 제19권3호
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    • pp.295-299
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    • 1998
  • HSP104 protein in Saccharomyces cerevisiae is known to provide thermotolerance when induced by various kinds of stresses, such as a mild heat shock, ethanol, and hypoxia. It helps cells survive at an otherwise lethal temperature. Mechanisms by which HSP104 protein works are yet to be elucidated. In order to understand a molecular basis of thermotolerance due to HSP104 protein induced by a mild heat shock, studies on respiratory pathways were carried out in the wild type as well as in the hsp104 deleted mutant. Especially the degree of 13C-acetate incorporation into glutamate-C4 was examined for both strains using 13C-13C homonuclear spin coupling measurements, since glutamate is in a rapid equilibrium with α-ketoglutarate in the TCA cycle. In addition, the temperature effects on the rate of 13C incorporation are compared with or without HSP104 protein expressed. Finally, the inhibitory effect of HSP104 on the respiration pathway was confirmed by the measurements of oxygen consumption rates for both strains.

Fatty acid uptake and oxidation in skeletal muscle

  • Yun, Hea-Yeon;Tamura, Tomohiro;Lim, Kiwon
    • 운동영양학회지
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    • 제16권1호
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    • pp.1-9
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    • 2012
  • Long chain fatty acids (LCFAs) are transported into cells via plasma transporters, are activated to fatty acyl-CoA by fatty acyl-CoA synthase (ACS), and enter mitochondria via the carnitine system (CPT1/CACT/CPT2). The mitochondrial carnitine system plays an obligatory role in β-oxidation of LCFAs by catalyzing their transport into the mitochondrial matrix. Fatty acyl-CoAs are oxidized via the β-oxidation pathway, which results in the production of acetyl-CoA. The acetyl-CoA can be imported into the tricarboxylic acid (TCA) cycle for oxidation in the mitochondrial matrix or can be used for malonyl-CoA synthesis by acetyl-CoA carboxylase 2 (ACC2) in the cytoplasm. In skeletal muscle, ACC2 catalyzes the carboxylation of acetyl-CoA to form malonyl-CoA, which is a potent endogenous inhibitor of carnitine palmitoyltransferase 1 (CPT1). Thus, ACC2 indirectly inhibits the influx of fatty acids into the mitochondria. Fatty acid metabolism can also be regulated by malonyl-CoA-mediated inhibition of CPT1.