• 제목/요약/키워드: stress related gene expression

검색결과 269건 처리시간 0.028초

Effect of High glucose on JNK/ERK signaling pathway in UMR106 cells

  • Jung, In-Ok;Jin, Mei-Hua;Kim, Sung-Jin
    • 한국응용약물학회:학술대회논문집
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    • 한국응용약물학회 2003년도 Annual Meeting of KSAP : International Symposium on Pharmaceutical and Biomedical Sciences on Obesity
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    • pp.79-79
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    • 2003
  • Recently diabetes has been found to be associated with metabolic bone diseases such as osteoporosis. In the present study, attempts have been made-to explore the effect of high glucose in bone formation. Osteoblast-like UMR 106 cells were treated with high glucose (22mM, 33mM, 44mM) for 1 or 2 days. High glucose significantly inhibited proliferation of UMR106 cells in a time- and dose- dependent manner as evidenced by MTT assay. For the evaluation of collagen synthesis, UMR 106 cells were cultured in high glucose media (44mM) for 24 h and the ratio of collagen content to total protein was measured. In addition, gene expression pattern of type I collagen was assessed by RT-PCR. The high concentration of glucose inhibited a collagen synthesis, a marker of bone formation activity. JNK, c- Jun N-terminal Kinase, is known to play an important role in stress-associated cell death. In this regard, we tested to determine whether high glucose has any effect on JNK activity. It has been found that treatment of high glucose induced phosphorylation of JNK. On the other hand, ERK phosphorylation was inhibited by high glucose in a dose-dependent manner. Taken together, Therefore these results indicate that inhibition of proliferation in UMR 106 cells following high glucose is related to JNK/ERK containing signal pathways. This study showed high glucose concentration could alter the bone metabolism leading to defective bone formation, suggesting that high glucose due to diabetes may playa significant role in the development of metabolic bone disease.

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Visual Analysis for Detection and Quantification of Pseudomonas cichorii Disease Severity in Tomato Plants

  • Rajendran, Dhinesh Kumar;Park, Eunsoo;Nagendran, Rajalingam;Hung, Nguyen Bao;Cho, Byoung-Kwan;Kim, Kyung-Hwan;Lee, Yong Hoon
    • The Plant Pathology Journal
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    • 제32권4호
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    • pp.300-310
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    • 2016
  • Pathogen infection in plants induces complex responses ranging from gene expression to metabolic processes in infected plants. In spite of many studies on biotic stress-related changes in host plants, little is known about the metabolic and phenotypic responses of the host plants to Pseudomonas cichorii infection based on image-based analysis. To investigate alterations in tomato plants according to disease severity, we inoculated plants with different cell densities of P. cichorii using dipping and syringe infiltration methods. High-dose inocula (${\geq}10^6cfu/ml$) induced evident necrotic lesions within one day that corresponded to bacterial growth in the infected tissues. Among the chlorophyll fluorescence parameters analyzed, changes in quantum yield of PSII (${\Phi}PSII$) and non-photochemical quenching (NPQ) preceded the appearance of visible symptoms, but maximum quantum efficiency of PSII ($F_v/F_m$) was altered well after symptom development. Visible/near infrared and chlorophyll fluorescence hyperspectral images detected changes before symptom appearance at low-density inoculation. The results of this study indicate that the P. cichorii infection severity can be detected by chlorophyll fluorescence assay and hyperspectral images prior to the onset of visible symptoms, indicating the feasibility of early detection of diseases. However, to detect disease development by hyperspectral imaging, more detailed protocols and analyses are necessary. Taken together, change in chlorophyll fluorescence is a good parameter for early detection of P. cichorii infection in tomato plants. In addition, image-based visualization of infection severity before visual damage appearance will contribute to effective management of plant diseases.

Profiling Metabolites Expressed Corn Root Under Waterlogging

  • Jae-Han Son;Young-Sam Go;Hwan-Hee Bae;Kyeong-Min Kang;Beom-Young Son;Seonghyu Shin;Tae-Wook Jung
    • 한국작물학회:학술대회논문집
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    • 한국작물학회 2022년도 추계학술대회
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    • pp.289-289
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    • 2022
  • Waterlogging tolerance of corn is one of the important factor for cultivate in paddy soil condition to increase cultivation area and self-sufficiency of corn in Korea. In order to develop elite waterlogging tolerance corn, the new corn lines bred by crossing wild corn, Teosinte, and cultivated corn inbred lines. Five accessions among the 2 species, Zea mays sub spp. mexicana and Zea mays spp. parviglumis, of 81 Teosinte were selected through the waterlogging treatment. The waterlogging treatments were implemented for 7 days at the seedling(V3) stage. The inbred lines were developed by crossing 5 teosinte accessions and cultivated corn lines and they were estimated waterlogging tolerance. It was screened and analyzed the metabolites extracted from roots of 19KT-32(KS141 × teosinte) that was treated waterlogging. We selected 8 of 180 metabolites like as γ-aminobutyric acid(GABA), putrescine, citrulline, Gly, and Ala that expression was remarkably changed over 2.5-times, 7 metabolites increased and 1 metabolite decreased in waterlogging, respectively. Glutamate decarboxylase(GAD) catalyzing GABA accumulation gene have 10 haplotypes, and exon1 was highly conserved, but identified to 135 SNPs after the first intron. Among the 135 SNPs, the number of transversion mutations (52) surpassed the number of transition mutations (38). Most of metabolites were related to abiotic stress in plant that it regulated to pH, osmotic pressure K+/Ca++ and ATPase activity. We are analyzing the association using these results for increase breeding efficiency.

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닭의 고밀도 사양체계가 스트레스 및 지방대사 연관 유전자 발현에 미치는 영향 (Effects of High Stocking Density on the Expressions of Stress and Lipid Metabolism Associated Genes in the Liver of Chicken)

  • 안영숙;박정근;장인석;손시환;문양수
    • 생명과학회지
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    • 제22권12호
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    • pp.1672-1679
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    • 2012
  • 본 연구는 육계에서 고밀도 사양체계가 간의 지놈 전사체, 특히 스트레스 및 지방대사 연관 유전자들의 발현에 어떤 영향을 미치는지 알아보기 위하여 실시하였다. 공시된 시험동물의 대조군 사육밀도는 $495cm^2$/수, 고밀도군은 $245cm^2$/수를 35일령까지 유지하였다. 대조구와 비교하여 고밀도 사양 육계에서 체중, 증체량, 사료섭취량이 유의적(p<0.05)으로 감소되는 것으로 나타났다. 폐사율은 고밀도군에서 15.7%로서 대조군(3.7%)에 비해 폐사율이 4.2배 높았다. 육계의 사육밀도에 따른 스트레스관련 유전자 HMGCR, $HSP90{\alpha}$, HSPA5 (GRP78/Bip), DNAJC3, ATF4 등의 발현이 증가하였으며, interferon-${\gamma}$, PDCD4 등의 발현은 감소하였다. Endoplasmic reticulum (ER) stress 관련 HSPA5 (GRP78/Bip), DNAJC3 그리고 ATF4은 유전자들은 고밀도 사양계에서 유전자의 발현이 2-3배 증가함을 보였다. 고밀도 사양은 지방산 합성에 관여하는 효소들(ACSL5, TMEM195, ELOVL6)의 유전자 발현증가와 지방산산화(${\beta}$-oxidatin)에 관여하는 효소들(ACAA1, ACOX1, EHHADH, LOC423347, CPT1A)의 RNA 발현 증가를 유도하였다. 본 연구는 밀사에 의한 스트레스가 닭의 간에서 지방을 합성하기 위한 유전자들의 발현을 증가시키고, 합성된 지방산을 분해하여 에너지를 생산하기 위한 지방산의 산화도 높게 유지하고 있음을 보여주었다. 닭의 주요 지방대사기관인 간에서 외부적 환경인자(사육환경)에 의한 스트레스와 생리적 대사(지방대사 및 소포체 스트레스)가 서로 밀접한 관계가 있음을 분자생물학적 수준에서 확인하였다. 따라서 스트레스저감 사육환경제공 및 친환경 사육방법 도입 등 동물복지를 고려한 가금사양체계가 필요한 것으로 사료된다.

하악골의 발육중인 생쥐에서 기능력의 변화가 특이-유전자 발현에 미치는 영향 (THE EFFECT OF ALTERED FUNCTIONAL FORCE ON THE EXPRESSION OF SPECIFIC MRNAS IN THE DEVELOPING MOUSE MANDIBLE)

  • 김형태;박주철;이창섭;박헌동
    • 대한소아치과학회지
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    • 제30권2호
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    • pp.308-319
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    • 2003
  • 기능력은 뼈의 형성, 유지 및 개조 이외에도 치아이동, 교정치료, 기능성 악교정장치의 사용 등과 관련한 치주인대세포의 특성 변화 등에 중요한 영향을 미친다. 또한, 하악과두에서도 기능력의 변화에 따라서 다양한 특성의 변화가 나타난다. 본 연구에서는 ICR 생쥐를 8주 동안 soft-diet와 hard-diet의 식이 조절을 통해 기능력의 변화를 유도하여, 기능력의 변화와 관련한 특이 유전자를 검출하기 위하여 subtractive hybridization, northern 분석 및 mRNA in-situ hybidization 등의 실험을 시행하여 다음과 같은 결과를 얻었다. 1. Soft-diet군과 hard-diet군의 subtractive hybridization을 통하여 총 39개의 clone을 얻었고 이중에서 11개의 서로 다른 hard-diet군 특이 후보 유전자들을 분리하였다. 2. 11개의 후보 유전자들 중에서 homology 검색과 northern 분석을 통하여 기능력과 관련이 있을 것으로 생각되거나 hard-diet군에서 mRNA가 선택적으로 발현되는 FS-s2, FS-s5, FS-s18 및 Fs-s22 유전자를 선택하였다. 3. Soft-diet군과 hard-diet군의 형태학적 분석에서 soft-diet군은 hard-diet군에 비하여 골모세포의 활성과 골개조의 특성은 저하된 것으로 관찰되었으나, 하악과두의 연골성골화 과정은 오랜 시간동안 지속되는 것으로 나타났다. 4. FS-s2, FS-s5, FS-s18 및 Fs-s22 유전자의 cRNA 탐침자를 이용한 in-situ hybridization에서 4개의 유전자의 mRNA들은 hard-diet군의 세포들에서는 강하게 발현되었으나 soft-diet군의 세포들에서는 그 발현이 미약하거나 나타나지 않았다. 이상의 결과를 종합하여 FS-s2, FS-s5, FS-s18 및 Fs-s22 유전자들은 대부분이 기능이 거의 알려져 있지 않는 것들로 기능력의 변화 과정에서 중요한 역할을 할 것으로 생각되나 앞으로 보완 연구를 통하여 각 각의 유전자들의 보다 정확한 기능을 이해하는 것이 필요 할 것으로 사료된다.

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Transduction of Familial Amyotrophic Lateral Sclerosis-related Mutant PEP-1-SOD Proteins into Neuronal Cells

  • An, Jae Jin;Lee, Yeom Pyo;Kim, So Young;Lee, Sun Hwa;Kim, Dae Won;Lee, Min Jung;Jeong, Min Seop;Jang, Sang Ho;Kang, Jung Hoon;Kwon, Hyeok Yil;Kang, Tae-Cheon;Won, Moo Ho;Cho, Sung-Woo;Kwon, Oh-Shin;Lee, Kil Soo;Park, Jinseu;Eum, Won Sik;Choi, Soo Young
    • Molecules and Cells
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    • 제25권1호
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    • pp.55-63
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    • 2008
  • Amyotrophic lateral sclerosis (ALS) is a progressive neurodegenerative disorder characterized by the selective death of motor neurons. Mutations in the SOD1 gene are responsible for a familial form of ALS (FALS). Although many studies suggest that mutant SOD1 proteins are cytotoxic, the mechanism is not fully understood. To investigate the role of mutant SOD1 in FALS, human SOD1 genes were fused with a PEP-1 peptide in a bacterial expression vector to produce in-frame PEP-1-SOD fusion proteins (wild type and mutants). The expressed and purified PEP-1-SOD fusion proteins were efficiently transduced into neuronal cells. Neurones harboring the A4V, G93A, G85R, and D90A mutants of PEP-1-SOD were more vulnerable to oxidative stress induced by paraquat than those harboring wild-type proteins. Moreover, neurones harboring the mutant SOD proteins had lower heat shock protein (Hsp) expression levels than those harboring wild-type SOD. The effects of the transduced SOD1 fusion proteins may provide an explanation for the association of SOD1 with FALS, and Hsps could be candidate agents for the treatment of ALS.

Enhanced fungal resistance in Arabidopsis expressing wild rice PR-3 (OgChitIVa) encoding chitinase class IV

  • Pak, Jung-Hun;Chung, Eun-Sook;Shin, Sang-Hyun;Jeon, Eun-Hee;Kim, Mi-Jin;Lee, Hye-Young;Jeung, Ji-Ung;Hyung, Nam-In;Lee, Jai-Heon;Chung, Young-Soo
    • Plant Biotechnology Reports
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    • 제3권2호
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    • pp.147-155
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    • 2009
  • Oryza grandiglumis Chitinase IVa (OgChitIVa) cDNA encoding a class IV chitinase was cloned from wild rice (Oryza grandiglumis). OgChitIVa cDNA contains an open reading frame of 867 nucleotides encoding 288 amino acid residues with a predicted molecular weight of 30.4 kDa and isoelectric point of 8.48. Deduced amino acid sequences of OgChitIVa include the signal peptide and chitin-binding domain in the N-terminal domain and conserved catalytic domain. OgChitIVa showed significant similarity at the amino acid level with related monocotyledonous rice and maize chitinase, but low similarity with dicotyledoneous chitinase. Southern blot analysis showed that OgChitIVa genes are present as two copies in the wild rice genome. It was shown that RNA expression of OgChitIVa was induced by defense/stress signaling chemicals, such as jasmonic acid, salicylic acid, and ethephon or cantharidin and endothall or wounding, and yeast extract. It was demonstrated that overexpression of OgChitIVa in Arabidopsis resulted in mild resistance against the fungal pathogen, Botrytis cinerea, by lowering disease rate and necrosis size. RT-PCR analysis showed that PR-1 and PR-2 RNA expression was induced in the transgenic lines. Here, we suggest that a novel OgChitIVa gene may play a role in signal transduction process in defense response against B. cinerea in plants.

Rosmarinic Acid Inhibits Ultraviolet B-Mediated Oxidative Damage via the AKT/ERK-NRF2-GSH Pathway In Vitro and In Vivo

  • Mei Jing Piao;Pattage Madushan Dilhara Jayatissa Fernando;Kyoung Ah Kang;Pincha Devage Sameera Madushan Fernando;Herath Mudiyanselage Udari Lakmini Herath;Young Ree Kim;Jin Won Hyun
    • Biomolecules & Therapeutics
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    • 제32권1호
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    • pp.84-93
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    • 2024
  • Rosmarinic acid (RA) is a phenolic ester that protects human keratinocytes against oxidative damage induced by ultraviolet B (UVB) exposure, however, the mechanisms underlying its effects remain unclear. This study aimed to elucidate the cell signaling mechanisms that regulate the antioxidant activity of RA and confirm its cyto-protective role. To explore the signaling mechanisms, we used the human keratinocyte cell line HaCaT and SKH1 hairless mouse skin. RA enhanced glutamate-cysteine ligase catalytic subunit (GCLC) and glutathione synthetase (GSS) expression in HaCaT cells in a dose- and time-dependent manner. Moreover, RA induced nuclear factor erythroid-2-related factor 2 (NRF2) nuclear translocation and activated the signaling kinases protein kinase B (AKT) and extracellular signal-regulated kinase (ERK). Treatment with the phosphatidylinositol 3-kinase (PI3K) inhibitor LY294002, the ERK inhibitor U0126, and small interfering RNA (siRNA) gene silencing suppressed RA-enhanced GCLC, GSS, and NRF2 expression, respectively. Cell viability tests showed that RA significantly prevented UVB-induced cell viability decrease, whereas the glutathione (GSH) inhibitors buthionine sulfoximine, LY294002, and U0126 significantly reduced this effect. Moreover, RA protected against DNA damage and protein carbonylation, lipid peroxidation, and apoptosis caused by UVB-induced oxidative stress in a concentration-dependent manner in SKH1 hairless mouse skin tissues. These results suggest that RA protects against UVB-induced oxidative damage by activating AKT and ERK signaling to regulate NRF2 signaling and enhance GSH biosynthesis. Thus, RA treatment may be a promising approach to protect the skin from UVB-induced oxidative damage.

온도변화에 따른 담배나방 유충 지방체의 유전자 발현 비교 분석 (Comparison of Gene Expression in Larval Fat Body of Helicoverpa assulta in Different Temperature Conditions)

  • 차욱현;김광호;이대원
    • 한국응용곤충학회지
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    • 제57권3호
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    • pp.165-175
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    • 2018
  • 곤충은 넓은 범위의 온도영역에 사는 것으로 알려져 있으나, $40^{\circ}C$가 넘는 고온이나 빙결온도 이하의 저온에서는 생존이 어렵다. 본 연구는 사육온도 조건이 다른 환경에서 대사중심 조직인 지방체의 유전자 발현을 분석하기 위해, 온도조건을 달리하여 담배나방을 저온 사육충 ($3{\sim}10^{\circ}C$), 고온 사육충 ($35^{\circ}C$)로 나누고 상온 사육충 ($25^{\circ}C$)을 대조구로 사용하여 전사체 분석을 수행하였다. 저온에서 특이적으로 높은 발현을 보인 유전자는 표피단백질, ${\Delta}9$ 불포화효소, 글리세롤 3-인산 탈수소효소이며, 저온에서 발현이 낮아진 유전자는 키틴 합성효소, catalase, UDP-당전이 효소이다. 고온에서 특이적으로 높은 발현을 보인 유전자는 과산화물제거효소, metallothionein 2, phosphenolpyruvate carboxykinase, 트레할로스 운반단백질이었다. 고온에서 높고 저온에서 낮은 대조적 발현을 보인 유전자는 열충격단백질, glutathione peroxidase이었다. 이들 온도 특이적이거나 대조적 발현을 보이는 유전자는 기후변화에 관련한 특이마커로 활용이 가능할 것으로 사료된다.