• 제목/요약/키워드: stress gene

검색결과 1,283건 처리시간 0.026초

Dopamine Receptor Gene (DRD1-DRD5) Expression Changes as Stress Factors Associated with Breast Cancer

  • Pornour, Majid;Ahangari, Ghasem;Hejazi, Seyed Hesam;Ahmadkhaniha, Hamid Reza;Akbari, Mohamad Esmail
    • Asian Pacific Journal of Cancer Prevention
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    • 제15권23호
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    • pp.10339-10343
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    • 2015
  • Breast cancer is the most common cancer among females worldwide and a most prevalent malignancy in Iranian women. Chronic stress may make an important contribution to cancer, especially in the breast. Numerous studies showed roles of neurotransmitters in the occurrence and progression of cancers which are mediated by their various types of receptors. This study was conducted to evaluate alterations in the expression profile of dopamine receptor genes in peripheral blood mononuclear cells (PBMC) as stress factors in breast cancer patients and the human breast cancer cell line (MCF-7). Peripheral blood samples were obtained from 30 patients and 30 healthy individuals. Total mRNA was extracted from PBMC and MCF-7 cells and RT-PCR was performed to confirm the presence of five dopamine receptors (DRD1-DRD5). Expression changes of dopamine receptor genes were evaluated by real time PCR. We observed that DRD2-DRD4 in PBMCs of breast cancer patients were increased compared to healthy individuals. In addition, all dopamine receptor subtypes but DRD1 were expressed in MCF-7 cells. Therefore, alterations of these receptors as stress factors should be assessed for selecting appropriate drugs such as D2-like agonists for treatment of breast cancer after performing complimentary tests. Determining the expression profile of dopamine receptor genes thus seems promising.

AtHAP3b Plays a Crucial Role in the Regulation of Flowering Time in Arabidopsis during Osmotic Stress

  • Chen, Nai-Zhi;Zhang, Xiu-Qing;Wei, Peng-Cheng;Chen, Qi-Jun;Ren, Fei;Chen, Jia;Wang, Xue-Chen
    • BMB Reports
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    • 제40권6호
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    • pp.1083-1089
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    • 2007
  • The HAP complex has been found in many eukaryotic organisms. HAP recognizes the CCAAT box present in the promoters of 30% of all eukaryotic genes. The HAP complex consists of three subunits - HAP2, HAP3 and HAP5. In this paper, we report the biological function of the AtHAP3b gene that encodes one of the HAP3 subunits in Arabidopsis. Compared with wild-type plants, hap3b-1 and hap3b-2 mutants exhibited a delayed flowering time under long-day photoperiod conditions. Moreover, the transcription levels of FT were substantially lower in the mutants than in the wild-type plants. These results imply that AtHAP3b may function in the control of flowering time by regulating the expression of FT in Arabidopsis. In a subsequent study, AtHAP3b was found to be induced by osmotic stress. Under osmotic stress conditions, the hap3b- 1 and hap3b-2 mutants flowered considerably later than the wild-type plants. These results suggest that the AtHAP3b gene plays more important roles in the control of flowering under osmotic stress in Arabidopsis.

Transcriptional Regulation of the AP-1 and Nrf2 Target Gene Sulfiredoxin

  • Soriano, Francesc X.;Baxter, Paul;Murray, Lyndsay M.;Sporn, Michael B.;Gillingwater, Thomas H.;Hardingham, Giles E.
    • Molecules and Cells
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    • 제27권3호
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    • pp.279-282
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    • 2009
  • "Two-cysteine" peroxiredoxins are antioxidant enzymes that exert a cytoprotective effect in many models of oxidative stress. However, under highly oxidizing conditions they can be inactivated through hyperoxidation of their peroxidatic active site cysteine residue. Sulfiredoxin can reverse this hyperoxidation, thus reactivating peroxiredoxins. Here we review recent investigations that have shed further light on sulfiredoxin's role and regulation. Studies have revealed sulfiredoxin to be a dynamically regulated gene whose transcription is induced by a variety of signals and stimuli. Sulfiredoxin expression is regulated by the transcription factor AP-1, which mediates its up-regulation by synaptic activity in neurons, resulting in protection against oxidative stress. Furthermore, sulfiredoxin has been identified as a new member of the family of genes regulated by Nuclear factor erythroid 2-related factor (Nrf2) via a conserved cis-acting antioxidant response element (ARE). As such, sulfiredoxin is likely to contribute to the net antioxidative effect of small molecule activators of Nrf2. As discussed here, the proximal AP-1 site of the sulfiredoxin promoter is embedded within the ARE, as is common with Nrf2 target genes. Other recent studies have shown that sulfiredoxin induction via Nrf2 may form an important part of the protective response to oxidative stress in the lung, preventing peroxiredoxin hyperoxidation and, in certain cases, subsequent degradation. We illustrate here that sulfiredoxin can be rapidly induced in vivo by administration of CDDO-TFEA, a synthetic triterpenoid inducer of endogenous Nrf2, which may offer a way of reversing peroxiredoxin hyperoxidation in vivo following chronic or acute oxidative stress.

Transgenic Strategy to Improve Stress Resistance of Crop Plants

  • Horvath, Gabor V.;Oberschall, Attila;Deak, Maria;Sass, Laszlo;Vass, Imre;Barna, Balazs;Kiraly, Zoltan;Hideg, Eva;Feher, Attila
    • Journal of Plant Biotechnology
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    • 제1권1호
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    • pp.61-68
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    • 1999
  • Rapid accumulation of reactive oxygen species (ROS) and their toxic reaction products with lipids and proteins significantly contributes to the damage of crop plants under biotic and abiotic stresses. We have identified several stress activated alfalfa genes, including the gene of the alfalfa ferritin and a novel NADPH-dependent aldose/aldehyde reductase enzyme. Transgenic tobacco plants that synthesize alfalfa ferritin in vegetative tissues-either in its processed form in chloroplast or in the cytoplasmic non-processed form-retained photosynthetic function upon free radical toxicity generated by paraquat treatment and exhibited tolerance to necrotic damage caused by viral and fungal infections. We propose that by sequestering intracellular iron involved in generation of the very reactive hydroxyl radicals through a Fenton reaction, ferritin protects plant cells from oxidative damage. Our preliminary results with the other stress-inducable alfalfa gene (a NADPH-dependent aldo-keto reductase) indicate, that the encoded enzyme may play role in the stress response of the plant cells. These studies reveal new pathways in plants that can contribute to the increased stress resistance with a potential use in crop improvement.

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The Mechanism of t-Butylhydroperoxide-Induced Apoptosis in IMR-32 Human Neuroblastoma Cells

  • Kim, Jung-Ae;Lee, Yong-Soo;Huh, Keun
    • The Korean Journal of Physiology and Pharmacology
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    • 제3권1호
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    • pp.19-27
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    • 1999
  • Apoptosis has been implicated in the pathophysiological mechanisms of various neurodegenerative diseases. In a variety of cell types, oxidative stress has been demonstrated to play an important role in the apoptotic cell death. However, the exact mechanism of oxidative stress-induced apoptosis in neuronal cells is not known. In this study, we induced oxidative stress in IMR-32 human neuroblastoma cells with tert- butylhydroperoxide (TBHP), which was confirmed by significantly reduced glutathione content and glutathione reductase activity, and increased glutathione peroxidase activity. TBHP induced decrease in cell viability and increase in DNA fragmentation, a hallmark of apoptosis, in a dose-dependent manner. TBHP also induced a sustained increase in intracellular $Ca^{2+}$ concentration, which was completely prevented either by EGTA, an extracellular $Ca^{2+}$ chelator or by flufenamic acid (FA), a non-selective cation channel (NSCC) blocker. These results indicate that the TBHP-induced intracellular $Ca^{2+}$ increase may be due to $Ca^{2+}$ influx through the activation of NSCCs. In addition, treatment with either an intracellular $Ca^{2+}$ chelator (BAPTA/AM) or FA significantly suppressed the TBHP-induced apoptosis. Moreover, TBHP increased the expression of p53 gene but decreased c-myc gene expression. Taken together, these results suggest that the oxidative stress-induced apoptosis in neuronal cells may be mediated through the activation of intracellular $Ca^{2+}$ signals and altered expression of p53 and c-myc.

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The effect of light on follicular development in laying hens

  • Cheng, Shi Bin;Li, Xian Qiang;Wang, Jia Xiang;Wu, Yan;Li, Peng;Pi, Jin Song
    • Animal Bioscience
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    • 제34권11호
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    • pp.1766-1775
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    • 2021
  • Objective: The oxidative stress status and changes of chicken ovary tissue after shading were studied, to determine the mechanism of the effect of shading on follicular development. Methods: Twenty healthy laying hens (40 weeks old) with uniform body weight and the same laying rate were randomly divided into two groups (the shading group and normal light group). In the shading group, the cage was covered to reduce the light intensity inside the cage to 0 without affecting ventilation or food intake. The normal lighting group received no additional treatment. After 7 days of shading, oxidative stress related indicators and gene expression were detected. Results: Analysis of paraffin and ultrathin sections showed that apoptosis of ovarian granulosa cells (GCs) increased significantly after light shading. Enzyme linked immunosorbent assay results revealed that the levels of total antioxidant capacity, malondialdehyde, superoxide dismutase (SOD), glutathione, catalase (CAT), and other substances in the sera, livers, ovaries, and follicular GCs of laying hens increased significantly after shading for 7 days; and reactive oxygen species (ROS) levels in the livers of laying hens also increased significantly. ROS in the serum, ovarian and GCs also increased. After shading for 7 days, the levels of 8-hydroxy-2 deoxyguanosine in the sera and ovarian tissues of laying hens increased significantly. Cell counting kit-8 detection showed that the proliferation activity of GCs in layer follicles decreased after shading for 7 days; the expression level of the anti-apoptotic gene B-cell lymphoma-2 in ovarian tissue and follicular GCs was significantly reduced, and the expression levels of pro-apoptotic caspase 3 (casp3), and SOD, glutathione peroxidase 2 (GPX2), and CAT were all significantly increased. Conclusion: Oxidative stress induced by shading light has a serious inhibitory effect on follicular development during reproduction in laying hens.

Analysis of Gene-specific Molecular Markers for Biotic and Abiotic Stress Resistance in Tropically adapted Japonica Rice Varieties

  • Jung-Pil Suh;Sung-Ryul Kim;Sherry Lou Hechanova;Marianne Hagan;Graciana Clave;Myrish Pacleb
    • 한국작물학회:학술대회논문집
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    • 한국작물학회 2022년도 추계학술대회
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    • pp.292-292
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    • 2022
  • Since 1992, the Rural Development Administration (RDA), Republic of Korea in collaboration with International Rice Research Institute (IRRI) has developed 6 japonica rice varieties(MS11, Japonica 1, 2, 6, 7 and Cordillera 4) that are adaptable to tropical regions. However, these varieties show moderate resistance or susceptibility to certain biotic and abiotic stress. The development of varieties with more stable forms of resistance is highly desirable, and this could be possibly achieved through rapid introgression of known biotic and abiotic resistant genes. In this study, we analyzed the allele types of major biotic stress resistant genes including Xa5, Xa13, Xa21 and Xa25 for bacterial leaf blight, Pi5, Pi40, Pish and Pita2 for blast, tsv1 for rice tungro spherical virus, and Bph6, Bph9, Bph17, Bph18 and Bph32 for brown planthopper by using gene-specific molecular markers. In addition, seed quality related genes Sdr4 for preharvest sprouting and qLG-9 for seed longevity were also analyzed. The results revealed that2h5 and Xa25 resistance alleles showed in all varieties while Pi5 resistance allele showed only in MS11. The Pish resistance allele were present in five varieties except for Japonica 1. Meanwhile, for the rest of the genes, no presence of resistance alleles found in six varieties. In conclusions, most of tropical japonica varieties are lack of the major biotic stress resistant genes and seed quality genes (Sdr4 and qLG-9). Moreover, the results indicated that rapid deployment of a few major genes in the current tropical japonica rice varieties is urgent to increase durability and spectrum of biotic stress resistance and also seed dormancy/longevity which are essential traits for tropical environments.

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Expression of the TaCR1 Gene Induced by Hessian Fly Larval Infestation in Wheat Carrying a H21 Gene.

  • Jang, Cheol-Seong;Seo, Yong-Weon
    • 한국작물학회지
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    • 제49권2호
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    • pp.148-153
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    • 2004
  • The Hessian fly, Mayetiola destructor (Say), is known to be one of the major insect herbivores of wheat worldwide. In order to provide molecular events on interactions of the NIL with H21 and larvae of Hessian fly biotype L, the TaCR1 gene, Triticum aestivum cytokinin repressed 1, was isolated through the suppression subtractive hybridization, which was constructed using stems of the NIL with H21 at 6 days after infestation as tester and stems of the recurrent parent Coker797 without H21 at 6 days after infestation as driver. Transcript levels of TaCR1 mRNA in the NIL with H21 were highest at 6 days after infestation but in the Coker797 without H21 until 8 days were similar with those of non-infested plants. Expression of the TaCR1 gene was decreased at early time and then recovered after wounding or $H_2O$$_2$ treatment as well as 6-BAP treatment. Transcripts levels of the TaCR1 gene was changed after MeJA, SA, ethephone, or ABA treatment. In drought treatment, the TaCRl gene were increased at early stage of stress and then decreased at late stage. Expression of the TaCRl gene was continued to decrease through 24 h in the cold treatment. Although the TaCRl gene is increased through infestation in NIL with H21, further study was required to elucidate a role on resistance against larvae of Hessian fly. However, the TaCR1 gene could be used as marker gene on response of plants against abiotic stresses as well as application of plants with several hormones.

염과 건조 스트레스 조건에서 톨 페스큐의 종자 발아율과 유전자 발현 변화분석 (Effects of Salt and Drought Stresses on Seed Germination and Gene Expression Pattern in Tall Fescue)

  • 이상훈;이기원;최기준;김기용;지희정;황태영;이동기
    • 한국초지조사료학회지
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    • 제34권2호
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    • pp.114-119
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    • 2014
  • 염 또는 건조 스트레스 처리에 의한 톨 페스큐 종자의 발아율 변화와 유식물체 수준에서의 유전자 발현을 조사하기 위하여 in vitro 조건에서 NaCl과 PEG를 처리하여 분석하였다. NaCl 처리시 톨 페스큐 품종별 발아율은 50 mM 농도에서 발아율이 서서히 감소하기 시작하였으며 350 mM의 농도에서는 모든 품종에서 발아가 되지 않는 경향을 보였다. NaCl 처리 농도에 따른 발아율 감소율은 Fawn 품종이 가장 큰 변화를 보였으며 Kentucky-31(E-) 품종이 가장 강한 내성을 보였다. 또한, PEG 처리시 톨 페스큐 품종별 발아율의 변화도 NaCl 처리시와 유사한 경향을 보였으며 고농도인 30% PEG 처리구에서는 모든 품종에서 발아가 되지 않는 경향을 보였으며 Kentucky-31(E-) 품종이 가장 강한 내성을 보였다. 톨 페스큐 유식물체 수준에서 염해와 건조 스트레스에 의한 유전자 발현양상을 조사하기 위하여 DEGs (differentially expressed genes) 탐색을 위한 ACP-based GeneFishing$^{TM}$ PCR 분석을 통해 NaCl 또는 PEG 처리에 따른 발현량의 차이를 보이는 총 4개의 DEG를 선발하여 클로닝하고 염기서열을 분석하였다. 무처리구에 비해 NaCl 처리시 4개의 DEG가 증가하였고 감소하는 DEG는 확인 되지 않았으나, PEG 처리에서는 3개의 DEG (DEG 1, 3, 및 4)가 증가하였고 1개의 DEG가 감소하는 경향을 나타내었다. 발굴된 DEG들을 blastx 검색에 의하여 rubisco large subunit (DEG1), microsomal glutathion S-transferase (GST) 3-like isoform 1 (DEG2) 유전자로 동정되었다.

현사시나무에서 Auxin/indole-3-acetic acid 1 (Aux/IAA1) 유전자 분리 및 발현 특성 구명 (Isolation and characterization of Auxin/indole-3-acetic acid 1 (Aux/IAA1) gene from poplar (Populus alba × P. glandulosa))

  • 배은경;최영임;이효신;최지원
    • Journal of Plant Biotechnology
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    • 제46권3호
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    • pp.180-188
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    • 2019
  • 옥신은 식물의 생장과 발달 과정에서 중요한 조절자로서 기능한다. 옥신 신호전달 과정은 3개의 주요 옥신 반응 전사인자인 Auxin/indole-3-acetic acid (Aux/IAA), Gretchen Hagen 3 (GH3), 그리고 small auxin up RNA (SAUR) 유전자에 의해 조절된다. 특히, Aux/IAA는 옥신 신호에 반응하여 빠르게 축적되는 수명이 짧은 핵 단백질이다. 이 실험에서 우리는 현사시 나무(Populus alba ${\times}$ P. glandulosa)로 부터 PagAux/IAA1 유전자를 분리하고 발현 특성을 분석하였다. PagAux/IAA1 cDNA는 4개의 보존된 도메인과 2개의 nuclear localization sequence (NLS)을 포함한 200개의 아미노산을 암호화하고 있다. Southern blot 분석으로 현사시나무 genome에 PagAux/IAA1 유전자가 single copy로 존재하는 것을 확인하였다. PagAux/IAA1 유전자는 잎과 꽃에서 특이적으로 발현되었다. 그리고 PagAux/IAA1 유전자는 현탁배양세포의 생장 과정에서 초기 지수생장기에 발현되었다. PagAux/IAA1 유전자의 발현을 분석한 결과, 건조와 염 스트레스 및 식물호르몬인 ABA 처리에 의해 발현이 감소된 반면 저온 스트레스, 형성층의 세포 분열 과정 그리고 식물호르몬인 GA와 JA 처리에서 발현이 증가하였다. 따라서 PagAux/IAA1 유전자가 현사시나무에서 저온 스트레스 반응뿐 아니라 생장 과정에 관여할 것으로 판단된다.