• 제목/요약/키워드: Heat shock protein genes

검색결과 139건 처리시간 0.023초

Gene Expression Analysis of the Bromobenzene Treated Liver with Non-hepatotoxic Doses in Mice

  • Lim, Jung-Sun;Jeong, Sun-Young;Hwang, Ji-Yoon;Park, Han-Jin;Cho, Jae-Woo;Song, Chang-Woo;Kim, Yang-Seok;Lee, Wan-Seon;Moon, Jin-Hee;Han, Sang-Seop;Yoon, Seok-Joo
    • Molecular & Cellular Toxicology
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    • 제1권4호
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    • pp.268-274
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    • 2005
  • Bromobenzene (BB) is well known hepatotoxicant. Also, BB is an industrial solvent that arouses toxicity predominantly in the liver where it causes centrilobular necrosis. BB is subjected to Cytochrome P450 mediated epoxidation followed by either conjugation with glutathione, enzymatic hydrolysis or further oxidation. In this study, we focused on BB-induced gene expression at non-hepatotoxic dose. Mice were exposed to two levels of BB, sampled at 24 h, and hepatic gene expression levels were determined to evaluate dose dependent changes. When examining the toxic dose of BB treated group in other previous studies, genes related to heat shock protein, oxidative stress, and drug metabolism are expressed. Compared to these results, our study, in which non-toxic dose of BB was administrated, showed similar patterns as the toxic conditions above. The purpose of the study was to select genes that showed changes in relation to the differing dose through confirmation of the difference within transcriptomic boundaries, but those that are not detected by the existing classic toxicology tools in non-hepatotoxic dose.

DNA Array Analysis of Changes in Gene Expression Profile in DHEA-induced PCO

  • Yu, Jeong-Min;Yoo, Seong-Jin;Kim, Do-Rim;Youm, Mi-Young, Kim, Jee-Yun;Kang, Sung-Goo
    • 한국수정란이식학회:학술대회논문집
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    • 한국수정란이식학회 2002년도 국제심포지엄
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    • pp.112-112
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    • 2002
  • Under normal conditions, women produce a single dominant follicle that participates in a single ovuation each menstrual cycle. But Polycystic ovary syndrome(PCOS) conditions, folliculogenesis does not proceed normally. This condition leads to the accumlation of large numbers of small graffian follicles in which the theca interstitial cells (TIC) produce abnormally large amounts of androgen. PCOS is probably the most common endocrine disorder, affecting women of reprodutive age with 5-10% prevalence estimate. Chronic anovulation, hyperandrogenism, hirsutism, obesity, infertility and polycystic ovaries are clinical hallmarks of women with PCOS. Its etiology remains unknown. To investigate the gene expression pattern of ovary in PCO-induced rat, we used cDNA expression analysis. Total RNA was extracted from the ovary of PCO-induced rat and reverse-transcribed in the presence of[$\alpha$$^{32}$P]-dATP Which were hybridized to Atlas$^{TM}$ Rat Toxicology 1.2 array (Clontech) representing approximately 1176 rat genes. We compared gene expression between ovary of pco-induced immature female rats and control. Differential gene expression profiles were revealed (LIFR-alpha, ADRA1A, Heat shock 90-kDa protein A, PDGFRA). Reverse transcription-polymerase chain reaction(RT-PCR) was used to validate the relative expression pattern obtained by the cDNA array. The precise relationship between the altered expression of genes and PCO is a matter of further investigation. This study was supported by Korea Science and Engineering Foundation(KOSEF)

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Bovine Mesenchymal Stem Cell의 지방분화를 이용한 지방대사관련 후보 유전자의 발현분석 (Gene Expression of Candidate Genes Involved in Fat Metabolism During In vitro Adipogenic Differentiation of Bovine Mesenchymal Stem Cell)

  • 김성곤;김남국;윤두학;김태헌;양부근;이현정
    • Journal of Animal Science and Technology
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    • 제52권4호
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    • pp.265-270
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    • 2010
  • 본 실험은 지방대사에 영향을 주는 후보 유전자의 발현양상을 조사하기 위하여 bovine mesenchymal stem cell을 이용하여 체외에서 지방분화를 유도하였고, 지방분화 경과에 따른 지방관련 후보유전자의 발현양상을 분석 하였다. Oil red-O 염색법을 이용하여 지방 분화양상을 조사한 결과, 지방 분화 단계별(0, 2, 4 및 6일)로 붉게 염색된 지방적이 증가되었음을 확인하였고, 지방대사의 indicator인 PPAR$\gamma$와 FABP4 유전자는 지방분화 0일과 비교하여 6일에는 각각 3.11배와 3.11배가 증가하였다. 또한 지방대사와 관련이 있다고 추측되는 ICER, NOV, HSPB1 및 SDH 유전자의 발현양상을 조사한 결과, 지방분화 동안 ICER 유전자는 계속적으로 증가하여 6일은 0일에 비해 4.12배의 유의적인 증가를 보인 반면, NOV, HSPB1 및 SDH 유전자의 발현양은 0일 이후 계속적으로 감소하여, 6일에서 각각 2.89배, 3.18배 및 2.36배의 감소를 나타냈다. 본 실험에서, 등심조직에서 근내지방도에서 차이를 나타냈던 ICER, NOV, HSPB1 및 SDH 유전자를 보다 구체적이고 직접적으로 세포에서 지방분화를 통해 연관성을 조사했을 때, 지방분화와 직접적으로 관련되어 있는 것으로 나타났으며, 지방 대사를 조절하는 유전자로 추정된다.

Alcohol Fermentation at High Temperature and the Strain-specific Characteristics Required to Endow the Thermotolerance of Sacchromyces cerevisiae KNU5377

  • Paik, Sang-Kyoo;Park, In-Su;Kim, Il-Sup;Kang, Kyung-Hee;Yu, Choon-Bal;Rhee, In-Koo;Jin, In-Gnyol
    • 한국미생물생명공학회:학술대회논문집
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    • 한국미생물생명공학회 2005년도 2005 Annual Meeting & International Symposium
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    • pp.154-164
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    • 2005
  • Saccharomyces cerevisiae KNU5377 is a thermotolerant strain, which can ferment ethanol from wasted papers and starch at 40$^{\circ}C$ with the almost same rate as at 30$^{\circ}C$. This strain showed alcohol fermentation ability to convert wasted papers 200 g (w/v) to ethanol 8.4% (v/v) at 40$^{\circ}C$, meaning that 8.4% ethanol is acceptable enough to ferment in the industrial economy. As well, all kinds of starch that are using in the industry were converted into ethanol at 40$^{\circ}C$ with the almost same rate as at 30$^{\circ}C$. Hyperthermic cell killing kinetics and differential scanning calorimetry (DSC) revealed that exponentially growing cells of this yeast strain KNU5377 were more thermotolerant than those of S. cerevisiae ATCC24858 used as a control. This intrinsic thermotolernace did not result from the stability of entire cellular components but possibly from that of a particular target. Heat shock induced similar results in whole cell DSC profiles of both strains and the accumulation of trehalose in the cells of both strains, but the trehalose contents in the strain KNU5377 were 2.6 fold higher than that in the control strain. On the contrary to the trehalose level, the neutral trehalase activity in the KNU5377 cells was not changed after the heat shock. This result made a conclusion that though the trehalose may stabilize cellular components, the surplus of trehalose in KNU5377 strain was not essential for stabilization of whole cellular components. A constitutively thermotolerant yeast, S. cerevisiae KNU5377, was compared with a relatively thermosensitive control, S. cerevisiae ATCC24858, by assaying the fluidity and proton ATPase on the plasma membrane. Anisotropic values (r) of both strains were slightly increased by elevating the incubation temperatures from 25$^{\circ}C$ to 37$^{\circ}C$ when they were aerobically cultured for 12 hours in the YPD media, implying the membrane fluidity was decreased. While the temperature was elevated up to 40$^{\circ}C$, the fluidity was not changed in the KNU5377 cell, but rather increased in the control. This result implies that the plasma membrane of the KNU5377 cell can be characterized into the more stabilized state than control. Besides, heat shock decreased the fluidity in the control strain, but not in the KNU5377 strain. This means also there's a stabilization of the plasma membrane in the KNU5377 cell. Furthermore, the proton ATPase assay indicated the KNU5377 cell kept a relatively more stabilized glucose metabolism at high temperature than the control cell. Therefore, the results were concluded that the stabilization of plasma membrane and growth at high temperature for the KNU5377 cell. Genome wide transcription analysis showed that the heat shock responses were very complex and combinatory in the KNU5377 cell. Induced by the heat shock, a number of genes were related with the ubiquitin mediated proteolysis, metallothionein (prevent ROS production from copper), hsp27 (88-fold induced remarkably, preventing the protein aggregation and denaturation), oxidative stress response (to remove the hydrogen peroxide), and etc.

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Enhanced supply of methionine regulates protein synthesis in bovine mammary epithelial cells under hyperthermia condition

  • Zhou, Jia;Yue, Shuangming;Xue, Benchu;Wang, Zhisheng;Wang, Lizhi;Peng, Quanhui;Xue, Bai
    • Journal of Animal Science and Technology
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    • 제63권5호
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    • pp.1126-1141
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    • 2021
  • Recent evidence has shown that methionine (Met) supplementation can improve milk protein synthesis under hyperthermia (which reduces milk production). To explore the mechanism by which milk protein synthesis is affected by Met supplementation under hyperthermia, mammary alveolar (MAC-T) cells were incubated at a hyperthermic temperature of 42℃ for 6 h in media with different concentrations of Met. While the control group (CON) contained a normal amino acid concentration profile (60 ㎍/mL of Met), the three treatment groups were supplemented with Met at concentrations of 10 ㎍/mL (MET70, 70 ㎍/mL of Met), 20 ㎍/mL (MET80, 80 ㎍/mL of Met), and 30 ㎍/mL (MET90,90 ㎍/mL of Met). Our results show that additional Met supplementation increases the mRNA and protein levels of BCL2 (B-cell lymphoma-2, an anti-apoptosis agent), and decreases the mRNA and protein levels of BAX (Bcl-2-associated X protein, a pro-apoptosis agent), especially at an additional supplementary concentration of 20 ㎍/mL (group Met80). Supplementation with higher concentrations of Met decreased the mRNA levels of Caspase-3 and Caspase-9, and increased protein levels of heat shock protein (HSP70). The total protein levels of the mechanistic target of rapamycin (mTOR) and the mTOR signalling pathway-related proteins, AKT, ribosomal protein S6 kinase B1 (RPS6KB1), and ribosomal protein S6 (RPS6), increased with increasing Met supplementation, and peaked at 80 ㎍/mL Met (group Met80). In addition, we also found that additional Met supplementation upregulated the gene expression of αS1-casein (CSN1S1), β-casein (CSN2), and the amino acid transporter genes SLC38A2, SLC38A3 which are known to be mTOR targets. Additional Met supplementation, however, had no effect on the gene expression of κ-casein (CSN3) and solute carrier family 34 member 2 (SLC34A2). Our results suggest that additional Met supplementation with 20 ㎍/mL may promote the synthesis of milk proteins in bovine mammary epithelial cells under hyperthermia by inhibiting apoptosis, activating the AKT-mTOR-RPS6KB1 signalling pathway, and regulating the entry of amino acids into these cells.

In silico characterisation, homology modelling and structure-based functional annotation of blunt snout bream (Megalobrama amblycephala) Hsp70 and Hsc70 proteins

  • Tran, Ngoc Tuan;Jakovlic, Ivan;Wang, Wei-Min
    • Journal of Animal Science and Technology
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    • 제57권12호
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    • pp.44.1-44.9
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    • 2015
  • Background: Heat shock proteins play an important role in protection from stress stimuli and metabolic insults in almost all organisms. Methods: In this study, computational tools were used to deeply analyse the physicochemical characteristics and, using homology modelling, reliably predict the tertiary structure of the blunt snout bream (Ma-) Hsp70 and Hsc70 proteins. Derived three-dimensional models were then used to predict the function of the proteins. Results: Previously published predictions regarding the protein length, molecular weight, theoretical isoelectric point and total number of positive and negative residues were corroborated. Among the new findings are: the extinction coefficient (33725/33350 and 35090/34840 - Ma-Hsp70/ Ma-Hsc70, respectively), instability index (33.68/35.56 - both stable), aliphatic index (83.44/80.23 - both very stable), half-life estimates (both relatively stable), grand average of hydropathicity (-0.431/-0.473 - both hydrophilic) and amino acid composition (alanine-lysine-glycine/glycine-lysine-aspartic acid were the most abundant, no disulphide bonds, the N-terminal of both proteins was methionine). Homology modelling was performed by SWISS-MODEL program and the proposed model was evaluated as highly reliable based on PROCHECK's Ramachandran plot, ERRAT, PROVE, Verify 3D, ProQ and ProSA analyses. Conclusions: The research revealed a high structural similarity to Hsp70 and Hsc70 proteins from several taxonomically distant animal species, corroborating a remarkably high level of evolutionary conservation among the members of this protein family. Functional annotation based on structural similarity provides a reliable additional indirect evidence for a high level of functional conservation of these two genes/proteins in blunt snout bream, but it is not sensitive enough to functionally distinguish the two isoforms.

Proteomic Analysis of Recombinant Saccharomyces cerevisiae upon Iron Deficiency Induced via Human H-Ferritin Production

  • Seo, Hyang-Yim;Chang, Yu-Jung;Chung, Yun-Jo;Kim, Kyung-Suk
    • Journal of Microbiology and Biotechnology
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    • 제18권8호
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    • pp.1368-1376
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    • 2008
  • In our previous study, the expression of active H-ferritins in Saccharomyces cerevisiae was found to reduce cell growth and reactive oxygen species (ROS) generation upon exposure to oxidative stress; such expression enhanced that of high-affinity iron transport genes (FET3 and FTR1). The results suggested that the recombinant cells expressing H-ferritins induced cytosolic iron depletion. The present study analyzes metabolic changes under these circumstances via proteomic methods. The YGH2 yeast strain expressing A-ferritin, the YGH2-KG (E62K and H65G) mutant strain, and the YGT control strain were used. Comparative proteomic analysis showed that the synthesis of 34 proteins was at least stimulated in YGH2, whereas the other 37 proteins were repressed. Among these, the 31 major protein spots were analyzed via nano-LC/MS/MS. The increased proteins included major heat-shock proteins and proteins related to endoplasmic reticulum-associated degradation (ERAD). On the other hand, the proteins involved with folate metabolism, purine and methionine biosynthesis, and translation were reduced. In addition, we analyzed the insoluble protein fractions and identified the fragments of Idh1p and Pgk1p, as well as several ribosomal assembly-related proteins. This suggests that intracellular iron depletion induces imperfect translation of proteins. Although the proteins identified above result from changes in iron metabolism (i.e., iron deficiency), definitive evidence for iron-related proteins remains insufficient. Nevertheless, this study is the first to present a molecular model for iron deficiency, and the results may provide valuable information on the regulatory network of iron metabolism.

Cytochalasin B Modulates Macrophage-Mediated Inflammatory Responses

  • Kim, Mi-Yeon;Kim, Jong-Hoon;Cho, Jae Youl
    • Biomolecules & Therapeutics
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    • 제22권4호
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    • pp.295-300
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    • 2014
  • The actin cytoskeleton plays an important role in macrophage-mediated inflammatory responses by modulating the activation of Src and subsequently inducing nuclear factor (NF)-${\kappa}B$ translocation. In spite of its critical functions, few papers have examined how the actin cytoskeleton can be regulated by the activation of toll-like receptor (TLR). Therefore, in this study, we further characterized the biological value of the actin cytoskeleton in the functional activation of macrophages using an actin cytoskeleton disruptor, cytochalasin B (Cyto B), and explored the actin cytoskeleton's involvement in morphological changes, cellular attachment, and signaling events. Cyto B strongly suppressed the TLR4-mediated mRNA expression of inflammatory genes such as cyclooxygenase (COX)-2, tumor necrosis factor (TNF)-${\alpha}$, and inducible nitric oxide (iNOS), without altering cell viability. This compound also strongly suppressed the morphological changes induced by lipopolysaccharide (LPS), a TLR4 ligand. Cyto B also remarkably suppressed NO production under non-adherent conditions but not in an adherent environment. Cyto B did not block the co-localization between surface glycoprotein myeloid differentiation protein-2 (MD2), a LPS signaling glycoprotein, and the actin cytoskeleton under LPS conditions. Interestingly, Cyto B and PP2, a Src inhibitor, enhanced the phagocytic uptake of fluorescein isothiocyanate (FITC)-dextran. Finally, it was found that Cyto B blocked the phosphorylation of vasodilator-stimulated phosphoprotein (VASP) at 1 min and the phosphorylation of heat shock protein 27 (HSP27) at 5 min. Therefore, our data suggest that the actin cytoskeleton may be one of the key components involved in the control of TLR4-mediated inflammatory responses in macrophages.

Lipopolysaccride 감염처리가 닭의 품종간 스트레스연관 유전자 발현에 미치는 영향 (Effects of Lipopolysaccride-induced Stressor on the Expression of Stress-related Genes in Two Breeds of Chickens)

  • 장인석;손시환;문양수
    • 한국가금학회지
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    • 제44권1호
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    • pp.1-9
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    • 2017
  • 본 연구는 한국재래계(KNC)와 백색레그혼(WLH)에서 lipopolysaccharide(LPS)감염 스트레스가 닭의 품종간 스트레스 연관 유전자들의 발현에 미치는 영향을 비교 분석하고자 실시되었다. 공시계를 대상으로 생리식염수(대조구)와 LPS(처리구)를 복강에 투여한 후, 시간(0, 48 hr) 및 처리별 각 개체로부터 간 조직을 취하고, microarray 및 quantitative RT-PCR(qRT-PCR) 분석을 하였다. 처리에 따른 유전자 발현차이를 보면, KNC(대조구)와 KNC에 LPS를 처리한 경우(KNC-LPS)를 비교한 결과, 대조구 대비 2배 이상 유전자의 발현이 증가한 유전자의 수는 1,044개, 발현이 감소한 유전자의 수는 1,000개였다. WLH(대조구)를 WLH-LPS와 비교한 경우, 유전자의 발현이 증가한 유전자의 수는 1,193개, 발현이 감소한 유전자의 수는 1,072개였다. LPS 처리에 따른 스트레스 연관 유전자들의 microarray 발현에서 스트레스연관 유전자들의 발현은 두 품종 모두에서 감소하였으며, 품종 간 차이는 없는 것으로 나타났다. Microarray의 결과를 바탕으로 HSP90, HMGCR, ATF4, SREBP1, XBP1 등의 유전자 발현을 qRT-PCR을 이용하여 검증한 결과, 대조구와 LPS 감염구 간에 유의적 차이를 나타내었다(P<0.05). 세포 수준의 스트레스(ER 스트레스)에서 ATF4, XBP1, SREBP1은 화이트레그혼에서 microarray와 qRT-PCR에서와 같이 이들 유전자들의 발현이 억제되는 것을 보여주었다. 그러나 한국 재래계에서는 ATF4를 제외한 유전자들은 LPS에 의해 영향을 받지 않거나(XBP1), 오히려 증가(SREBP)하는 양상을 보였다. ER-stress 연관 유전자들의 발현 양상으로 볼 때, KNC이 WLH에 비하여 LPS 감염에 더 민감하게 반응하는 것으로 보인다. HMGCR은 두 품종간에 LPS에 의한 상호작용이 없는 것으로 보아, HMGCR 발현에 의한 감염 차이점을 찾을 수 없었다. 한국재래계에서 HSP70은 LPS 처리 후에 대조구에 비하여 약 2.5배 이상 높은 발현을 보였으나, 백색 레그혼에서는 낮은 발현 양상을 나타내었다. 스트레스 지표 유전자들의 종류뿐만 아니라, 스트레스 종류(예: 환경스트레스, 감염스트레스)에 따라 유전자들의 발현 반응에 차이가 있음을 보여주었다. LPS 감염스트레스에 따른 스트레스연관 유전자 발현연구는 닭의 품종별 질병 저항성 및 동물복지 관련 지표의 탐색에 기여할 것으로 사료된다.

장수풍뎅이(Korean Rhinoceros Beettle, Allomyrina dichotoma)에 Oryctes rhinoceros nudivirus 감염 특이적으로 발현하는 유전자 동정 (Identification of Genes Differentially Expressed by Oryctes rhinoceros nudivirus Infection in the Korean Rhinoceros Beetle, Allomyrina dichotoma)

  • 권기상;유보경;서현우;고영화;김홍근;이석현;박관호;최지영;권오유
    • 생명과학회지
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    • 제25권8호
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    • pp.942-946
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    • 2015
  • 장수풍뎅이(Korean Rhinoceros Beettle, Allomyrina dichotoma)는 관상용으로 인기가 높으며, 애벌레는 식품으로 주목을 받고 있다. 장수풍뎅이의 대량사육 시 발생하는 질병의 원인이 최근에 virus (Oryctes rhinoceros nudivirus)인 것이 보고되었다. 그러나 아직 정확한 발병기전과 치료방법을 알지 못하여 사육농가에 심각한 경제적 손실을 주고 있다. 본 연구에서는 virus에 감염된 장수풍뎅이의 fat body와 장에서 심각한 조직변화가 관찰되었다. 이 때에 유전자발현이 상승하는 것으로 BTF3H4-like, SPS-like, COPB1, T-CP, HSP70를 보고한다. 이 결과는 장수풍뎅이의 대량사육 시 발생하는 질병의 조기진단과 치료에 실마리를 제공할 것이다. 그리고 안정적인 생산성 향상을 통해서 소득증대 효과 및 균일화된 대량사육을 통해서 식품원료로 인정받을 수 있을 것이다.