• 제목/요약/키워드: metabolic pathway

검색결과 495건 처리시간 0.031초

1,2-Dichloropropane (1,2-DCP)-Induced Angiogenesis in Dermatitis

  • Jin, Meiying;Hong, Youngeun;Lee, Hyunji;Tran, Quangdon;Cho, Hyeonjeong;Kim, Minhee;Kwon, So Hee;Kang, Nak Heon;Park, Jisoo;Park, Jongsun
    • Toxicological Research
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    • 제35권4호
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    • pp.361-369
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    • 2019
  • 1,2-Dichloropropane (1,2-DCP) has been used as an industrial solvent and a chemical intermediate, as well as in soil fumigants. Human exposure may occur during its production and industrial use. The target organs of 1,2-DCP are the eyes, respiratory system, liver, kidneys, central nervous system, and skin. Repeated or prolonged contact may cause skin sensitization. In this study, 1,2-DCP was dissolved in corn oil at 0, 2.73, 5.75, and 8.75 mL/kg. The skin of mice treated with 1,2-DCP was investigated using western blotting, hematoxylin and eosin staining, and immunohistochemistry. 1,2-DCP was applied to the dorsal skin and both ears of C57BL/6J mice. The thickness of ears and the epidermis increased significantly following treatment, and the appearance of blood vessels was observed in the dorsal skin. Additionally, the expression of vascular endothelial growth factor, which is tightly associated with neovascularization, increased significantly. The levels of protein kinase-B (PKB), phosphorylated PKB, mammalian target of rapamycin (mTOR), and phosphorylated mTOR, all of which are key components of the phosphoinositide 3-kinase/PKB/mTOR signaling pathway, were also enhanced. Taken together, 1,2-DCP induced angiogenesis in dermatitis through the PI3K/PKB/mTOR pathway in the skin.

동일한 속 원핵생물들의 보존 유전자와 대사경로 (Conserved Genes and Metabolic Pathways in Prokaryotes of the Same Genus)

  • 이동근;이상현
    • 생명과학회지
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    • 제29권1호
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    • pp.123-128
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    • 2019
  • 원핵생물 분류의 기본단위인 종(species)의 동정에 16S rDNA가 사용되지만 한계가 있고 원핵생물의 속(genus)에 대한 연구가 많지 않다. 본 연구에서는 보존 유전자를 확보한 COG database와 대사경로를 확보한 MetaCyc database에 공통적인 원핵생물 중 속이 같고 종이 다른 13개 속 28개의 원핵생물을 대상으로 속 수준에서 연구하였다. 전체 유전자에서 core-genome인 속 보존 유전자의 비율은 최저 27.62%(Nostoc 속)에서 71.76%(Spiribacter 속)의 범위로 평균 46.72%였다. 각 원핵생물에서 core-genome의 비율이 낮으면 특이한 생명현상을 보이거나 서식지가 다양할 수 있을 것이다. 속 수준의 공통 대사경로의 비율은 최저 58.79%(Clostridium 속)에서 최대 96.31%(Mycoplasma 속), 평균 75.86%로 core-genome의 비율보다 높았다. 비교대상을 확장하면 속 특이 보존 유전자와 대사경로는 확인할 수 없었다. 보존 유전자와 대사경로 보유 계통수에서는 대체로 같은 속의 구성원들이 가장 인접하였으며, Bacillus속과 Clostridium 속이 그룹을 형성하였고, 고세균끼리 그룹을 형성하였다. 보존 유전자 보유계통수에서는 Acidobacteria, Cyanobacteria, Proteobacteria 문(phylum)의 Granulicella, Nostoc, Bradyrhizobium의 3개 속이 하나의 그룹을 형성하였다. 본 연구 결과는 (i) 각 계통 단계에서 보존유전자와 대사경로의 확인, (ii) 수평적 유전자 전달 또는 부위 지정 돌연변이를 통한 균주의 개선 등의 분야에 기초자료로 활용될 수 있을 것이다.

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.

Could Organic Solvents Be Used for the Alteration of Flux of Hydrophobic Intermediates through a Metabolic Pathway in Microorganisms\ulcorner

  • Zucchi, Gioia;Khan, Jeffrey-A.;Vulfson, Evgeny-N.
    • Journal of Microbiology and Biotechnology
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    • 제8권6호
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    • pp.719-722
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    • 1998
  • The addition of decane to biotransfonnation media containing Yarrowia lipolytica led to the accumulation of intennediate L-phenylacetaldehyde and L-phenethyl acetate during bioconversion of L-phenylalanine, whilst none of these products were obtained in conventional aqueous fennentations. The results obtained support an earlier hypothesis (Spinnler et al. 1996. Proc. Natl. A cad. Sci. USA 93: 3373-3376) that organic solvents, acting as "thermodynamic traps" for hydrophobic intermediates, can substantially alter metabolic fluxes.

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Control of Acetate Production Rate in Escherichia coli by Regulating Expression of Single-Copy pta Using $lacI^Q$ in Multicopy Plasmid

  • Lee, Sun-Gu;Liao, James C
    • Journal of Microbiology and Biotechnology
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    • 제18권2호
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    • pp.334-337
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    • 2008
  • A tightly regulated gene expression system composed of a single-copy target gene under the control of a lac promoter derivative and lacI gene in a multicopy plasmid is proposed, and its ability to control the flux of a metabolic pathway is demonstrated. A model system to control the flux of acetyl-CoA to acetyl phosphate was constructed by integrating pta, a gene encoding phosphotransacetylase, under a tac promoter into the chromosome of E. coli with a pta-negative background and transforming a multicopy plasmid containing the $lacI^Q$ gene into the strain. The production rate of acetate was shown to be tightly controlled when varying the concentration of the inducer (IPTG) in he model system.

Is Acetylation a Metabolic Rheostat that Regulates Skeletal Muscle Insulin Action?

  • LaBarge, Samuel;Migdal, Christopher;Schenk, Simon
    • Molecules and Cells
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    • 제38권4호
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    • pp.297-303
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    • 2015
  • Skeletal muscle insulin resistance, which increases the risk for developing various metabolic diseases, including type 2 diabetes, is a common metabolic disorder in obesity and aging. If potential treatments are to be developed to treat insulin resistance, then it is important to fully understand insulin signaling and glucose metabolism. While recent large-scale "omics" studies have revealed the acetylome to be comparable in size to the phosphorylome, the acetylation of insulin signaling proteins and its functional relevance to insulin-stimulated glucose transport and glucose metabolism is not fully understood. In this Mini Review we discuss the acetylation status of proteins involved in the insulin signaling pathway and review their potential effect on, and relevance to, insulin action in skeletal muscle.

비만증 -내과적 이해 및 치료- (Obesty - Medical Approach and Treatment -)

  • 오연상
    • 정신신체의학
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    • 제3권2호
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    • pp.197-206
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    • 1995
  • Obesity is a major nutritional problem in the developed countries. The prevalence of obesity may range from 10 to 50 per rent or mort of adult population and it may be increasing tendency. Many efforts have been made to understand the pathogenesis of obesity, but except a few metabolic obesities in the most of obese patients, the mechanisms are not understood. The treatment modalities of obesity, ranging from dietary and pubilc health intervention through the pharmacological and surgical therapy, have been developed and tested. In the obese patients mortalities and mobilities are significantly increased than non obese subjects due to hypertension, diabetics, and other problems. There are four possible mechanisms by which energy balance might be altered to enhance metabolic efficiency. futile metabolic pathway, alteration of protein rum over, alteration in sodium-potassium ATPase and alteration in uncoupled oxidation in brown adipose tissue are considered as possible mechanisms. Low calory and very low calory diets are recommended as a dietary program. Several pharmacological agent such as benzphetamine, fenfluramine, mazindol and fluoxetin are currently popular drugs for the treatment of obesity.

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Metabolic Engineering for Improved Fermentation of L-Arabinose

  • Ye, Suji;Kim, Jeong-won;Kim, Soo Rin
    • Journal of Microbiology and Biotechnology
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    • 제29권3호
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    • pp.339-346
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    • 2019
  • L-Arabinose, a five carbon sugar, has not been considered as an important bioresource because most studies have focused on D-xylose, another type of five-carbon sugar that is prevalent as a monomeric structure of hemicellulose. In fact, L-arabinose is also an important monomer of hemicellulose, but its content is much more significant in pectin (3-22%, g/g pectin), which is considered an alternative biomass due to its low lignin content and mass production as juice-processing waste. This review presents native and engineered microorganisms that can ferment L-arabinose. Saccharomyces cerevisiae is highlighted as the most preferred engineering host for expressing a heterologous arabinose pathway for producing ethanol. Because metabolic engineering efforts have been limited so far, with this review as momentum, more attention to research is needed on the fermentation of L-arabinose as well as the utilization of pectin-rich biomass.

새로운 유형을 포함한 갈락토스혈증의 이해 (The Narrative Review of Galactosemia Including a New Subtype)

  • 박가영;홍용희
    • 대한유전성대사질환학회지
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    • 제23권2호
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    • pp.15-20
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    • 2023
  • Galactosemia is an inborn error disorder of carbohydrate metabolism, caused by metabolic disturbances at various stages of the Leloir pathway. In patients with galactosemia, accurate diagnosis and appropriate care are essential to avoid complications and unnecessary treatments. And a careful differential diagnosis of the type of galactosemia is crucial. Even with an appropriate galactose-restricted diet, long-term complications may occur, especially in patients with classic galactosemia. So new treatment options are being developed. In this review, we will review the new symptoms of each subtype that have been reported recently and GALM (Galactose mutarotase) deficiency, a new form of galactosemia, and treatment policies according to recent guidelines.

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The Protein Kinase A Pathway Regulates Zearalenone Production by Modulating Alternative ZEB2 Transcription

  • Park, Ae Ran;Fu, Minmin;Shin, Ji Young;Son, Hokyoung;Lee, Yin-Won
    • Journal of Microbiology and Biotechnology
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    • 제26권5호
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    • pp.967-974
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    • 2016
  • Zearalenone (ZEA) is an estrogenic mycotoxin that is produced by several Fusarium species, including Fusarium graminearum. One of the ZEA biosynthetic genes, ZEB2, encodes two isoforms of Zeb2 by alternative transcription, forming an activator (Zeb2L-Zeb2L homooligomer) and an inhibitor (Zeb2L-Zeb2S heterodimer) that directly regulate the ZEA biosynthetic genes in F. graminearum. Cyclic AMP-dependent protein kinase A (PKA) signaling regulates secondary metabolic processes in several filamentous fungi. In this study, we investigated the effects of the PKA signaling pathway on ZEA biosynthesis. Through functional analyses of PKA catalytic and regulatory subunits (CPKs and PKR), we found that the PKA pathway negatively regulates ZEA production. Genetic and biochemical evidence further demonstrated that the PKA pathway specifically represses ZEB2L transcription and also takes part in posttranscriptional regulation of ZEB2L during ZEA production. Our findings reveal the intriguing mechanism that the PKA pathway regulates secondary metabolite production by reprograming alternative transcription.