• 제목/요약/키워드: fos genes

검색결과 81건 처리시간 0.031초

배양한 흰쥐 해마신경세포에서 항우울제에 의한 c-fos mRNA의 발현 (C-fos mRNA Expression in Rat Hippocampal Neurons by Antidepressant Drugs)

  • 박응철;조연규;양병환;김광일;양보기;채영규
    • 생물정신의학
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    • 제8권1호
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    • pp.85-95
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    • 2001
  • This study was designed to examine the effects of two antidepressant drugs on the expression of c-fos mRNA in cultured embryonic rat hippocampal neurons. The drugs used were imipramine and amitriptyline. On the fourth day of culture, hippocampal neurons were treated with variable concentrations of each drug. Competitive RT-PCR(Reverse Transcriptase-PCR) analysis was used to quantify the c-fos mRNA expression induced by each drug. Experimental results showed that acute and direct treatment with imipramine and amitriptyline with relatively low concentrations(imipramine ${\leq}10{\mu}M$, amitriptylne ${\leq}10{\mu}M$) had no inductive effect on the expression of c-fos mRNA in the rat hippocampal neurons. However, after treatment with relatively high concentrations(imipramine ${\geq}100{\mu}M$, amitriptyline ${\geq}100{\mu}M$) c-fos mRNA was not detected. These findings suggest the followings. Firstly, the action mechanisms of these drugs on the hippocampal neurons might not be mediated by c-fos but by other immediate-early genes(IEGs). Secondly, their actions may be mediated indirectly via other areas of the brain. Thirdly, the expression of c-fos might be inhibited by high concentrations of these drugs, or the high concentrations could induce cell death. Finally, though cell death remains to be confirmed, the inhibition of c-fos induction or cell death could play a role in the cognitive impairments known to be adverse effects of some antidepressants. This study is believed to be a first step toward understanding the mechanisms of learning and memory. Further studies are needed to investigate the expression of various IEGs and changes in the hippocampal neurons of rat resulting from chronic treatment with antidepressant drugs.

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NMDA투여에 의한 transcription factor (Egr-1, C-Jun, JunB, FosB)의 발현 변화 양상 (NMDA (n-methyl-d-aspartate) Change Expression Level of Transcription Factors (Egr-1, c-jun, Junb, Fosb) mRNA in the Cerebellum Tissue of Balb/c Mouse)

  • 하종수;김재화;송재찬
    • 생명과학회지
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    • 제25권9호
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    • pp.1043-1050
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    • 2015
  • 신경과흥분은 신경세포의 수지돌기 말단부에 있는 흥분성 수용체에 대한 과도한 자극에 의해서 신경세포가 손상을 받는 현상으로 transcription factor의 발현을 유도하여 통증을 유발하는 자극, 학습, 발작, 흥분, 신경변성, 저산소성 국소빈혈, 뇌신경손상, 신경절제, 약제내성 등의 원인이 된다. 신경과흥분은 정상농도 이상의 NMDA에 의해서도 유발되는데 본 논문에서는 mouse의 복강으로 과량의 NMDA를 투여하여 소뇌에서 RT-PCR 방법으로 Inducible transcription factors (Egr-1, c-jun, JunB, FosB) mRNAs의 상대적 발현량을 비교하였다. NMDA를 투여한 군에서 inducible transcription factors (Egr-1, C-Jun, JunB, FosB)가 투여량과 시간의 경과에 따라 다양한 발현의 변화를 보였으며, NMDA투여 후 일정한 시간에서 투여한 양에 대한 변화는 체중 g 당 5 μg의 NMDA투여한 경우에 현저한 변화가 나타났다. 조사한 transcription factor 중에서 JunB의 발현 변화가 다른 transcription factor보다 두드러지게 나타났다. NMDA 투여량이 일정할 때 투여 후 경과 시간에 따른 발현양상은 투여 후 24시간이 경과한 후에 발현의 변화가 두드러지게 증가하는 경향을 나타내었고 대부분 이 48시간 경과 후 발현이 최고치에 도달하였다. 이러한 결과는 과흥분이 유도된 소뇌에서의 유전자 발현의 변화를 2D-gel 또는 microarray와 같은 방법을 이용하여 세포 내의 전체 단백질 혹은 유전자의 변화를 관찰함으로써 NMDA 수용체의 과흥분에 의한 뇌세포의 사멸에 관련된 기전을 밝힐 수 있는 좋은 자료가 될 수 있을 것으로 기대된다.

전기경련충격시 경쟁적 역전사 중합효소연쇄반응(CRT-PCR)을 이용한 흰쥐 뇌 c-fos 유전자의 발현 양식 분석 (Quantitative RT-PCR for Measuring C-fos Gene Expression in Rat Brain after ECS)

  • 양병환;이제욱;박응철;유재학;조광원;양보기;채영규
    • 생물정신의학
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    • 제3권2호
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    • pp.181-190
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    • 1996
  • To clarify the mechanism of action of electroconvulsive shack(ECS) in respect to molecular biology, and to detect the quantitative amount of change of c-fos gene expression after ECS in the rat's brain, the authors obtained brain specimens from the striatum, cerebral cortex, hippocampus, and cerebellum. Each brain was removed within 30min. after ECS(130V, 0.5sec) and ECS-sham. Then we performed RT-PCR. The results are 1) ECS was found to affect the expression of immediate early genes. 2) the cerebral cortex and hippocampus was more influenced by ECS thon in the cerebellum and striatum. From these results, we can suggest that ECS is related to the mechanism of cognition, mood, memory which is correlated to cerebral cortex and hippocampus.

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단삼이 수지상 세포의 유전자 발현에 미치는 영향 (Effects of Salviae miltiorrhizae Radix Extract on Gene Expression of Dendritic cells.)

  • 강문여;김종한;최정화;박수연
    • 한방안이비인후피부과학회지
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    • 제21권3호
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    • pp.52-68
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    • 2008
  • Objectives and Methods : Salviae miltiorrhizae Radix (SMR) promotes blood circulation to remove blood stasis, cools the blood to relieve carbuncle, clears away heat from the heart and tranquilizes the mind. This study was designed to investigate the effects of SMR on immuno-potentiative action in terms of changes in the genetic profile of dendritic cells (DC) using by microarray analysis. Results and Conclusion: In this experiment, treatments with more than 250 ${\mu}g/ml$ upto 1000 ${\mu}g/ml$ of SMR elevated the proliferation rates of DC. Microscopic observations confirmed the tendency on proliferation rates. Expression levels of genes related with cellular methabolic process, cell communication, and macromolecule metabolic process were elevated by treatment with SMR in comparison of functional distribution in a Biological Process. In molecular functions, expression levels of genes related with receptor activation, nucleotide binding and nucleic acid binding were elevated. In cellular components, expression levels of genes related to cellular membrane-bound organelles were elevated. In addition, expression levels of genes related to Wnt signalling pathways and the glycerophospholipid metabolism were elevated through analysis using pathway analysis between up-and down-regulated genes in cells treated with SMR. Finally, genes related to JAK2, GRB2, CDC42, SMAD4, B2M, FOS and ESRI located the center of Protein interaction network of genes through treatment with SMR.

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길경탕(桔梗湯)이 인체(人體) 폐세포(肺細胞)에 미치는 영향(影響)에 관(關)한 분자생물학적(分子生物學的) 연구(硏究) (Molecular Biological Study of The Effects of Gilgyung-Tang(GGT) on Cellular Proliferation and Viability of Normal Human Lung Fibriblast Cell)

  • 이형구
    • 대한한의학회지
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    • 제20권2호
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    • pp.88-97
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    • 1999
  • To characterize the effects of Gilgyung-Tang(GGT) on cellular proliferation and viability of normal lung fibroblast cells, we examined the cell cycle progression and cell cycle-related gene expression in T3891 using a flow cytometry and a quantitative RT-PCR analysis. 1. The significant surpression effect of cellular proliferations of GGT was observed in proportion to a certain concentration and time. 2. GGT was identified to induce apoptotic death of damaged cells by treatment with a DNA-damage agent and etoposide, while it stimulated the recovery of cellular viability of normal cells. 3 The significant reductions of mRNA expression of PCAN, c-Fos treated by GGT were observed. 4. The significant inductions of mRNA expression of p53, CDKN1. Gadd45 treated by GGT were observed. 5. The apoptosis caused by the reduction of Bcl-2 genes was significant and the Bax genes were increased. but the amount of Fas genes were not changed. These results strongly suggest that GGT triggers arrest of the cell cycle at G1 phase, and thus causes an inhibition of cellular proliferation of human normal lung cells through the transcriptional up-regulation of cell cycle inhibitory genes and down-regulation of induction of cell cycle stimulating genes respectably.

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Effects of Bee Venom and Sweet Bee Venom Acupuncture on Functional Recovery and c-Fos Expression in the Brain after Sciatic Crushed Nerve Injury in Rats

  • Choi, Seung-Peom;Song, Yun-Kyung;Lim, Hyung-Ho
    • 대한한의학회지
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    • 제31권3호
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    • pp.79-97
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    • 2010
  • Background: Peripheral nerve injuries are commonly encountered clinical problems and often result in severe functional deficit. Bee venom acupuncture has traditionally been used to treat several inflammatory diseases and chronic pain conditions. Objectives: The aims of this study were to compare the effects of bee venom (general bee venom, BV) and sweet bee venom (allergen-removed bee venom, SBV) acupuncture on the recovery rate of locomotor function, the expression of brain-derived neurotrophic factor (BDNF) in the sciatic nerve, and the expression of c-Fos in the brain following sciatic crushed nerve injury in rats, and to evaluate differences due to administration areas. Method: Walking track analysis, Western blot for BDNF and tyrosine receptor kinase B (TrkB), and immunohistochemistry for c-Fos were performed. In this study, comparative analyses of the effects of BV and SBV acupuncture in relation to administration sites, contralateral side or ipsilateral side, were conducted. Results: In the present result, sciatic function index (SFI) in walking track analysis significantly decreased following sciatic crushed nerve injury. The expressions of BDNF and TrkB in the sciatic nerve increased after induction of sciatic crushed nerve injury. C-Fos expression in the ventrolateral periaqueductal gray (vlPAG) and paraventricular nucleus (PVN) also increased. BV and SBV acupuncture treatment improved the SFI in walking track analysis. Treatment with SBV at 1mg/kg showed more potent enhancing effect on SFI compared to BV. Treatment with 1mg/kg BV or 1mg/kg SBV acupuncture suppressed the BDNF and TrkB expression in the sciatic nerve. BV and SBV acupuncture treatment also suppressed c-Fos expression in the PVN and vlPAG regions. Treatment with SBV at 1mg/kg showed more potent suppressing effect on c-Fos expression compared to BV when injected into the contralateral side of the injured nerve. Generally we could not find significant difference in the effects between contralateral side and ipsilateral side of the injured nerve. Conclusion: We have shown that BV and SBV acupuncture treatment can be used as the effective therapeutic modality to ameliorate the symptoms of sciatic crushed nerve injury.

배양한 흰쥐 대뇌세포의 저산소증 모델에서 황금(黃芩)이 유전자 표현에 미치는 영향 (Effects of Scutellaria baicalensis GEORGI on Gene Expression in a Hypoxic Model of Cultured Rat Cortical Cells)

  • 정승현;신길조;이원철;김성배
    • 대한한방내과학회지
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    • 제25권4호
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    • pp.324-336
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    • 2004
  • Objectives : The purpose of this investigation is to evaluate the effects of Scutellaria baicalensis GEORGI on alteration in gene expression in a hypoxia model using cultured rat cortical cells. Methods : E18 rat cortical cells were grown in a Neurobasal medium containing B27 supplement. On 12 DIV, Scutellaria baicalensis GEORGI(20 ug/ml) was added to the culture media and left for 24 hrs. On 11 DIV, cells were given a hypoxic insult $(2%\;O_2/5%\;CO_2,\;37^{\circ}C,\;3\;hrs)$, returned to normoxia and cultured for another 24 hrs. Total RNA was prepared from Scutellaria baicalensis GEORGI-untreated (control) and -treated cultures and alteration in gene expression was analysed by microarray using rat 5K-TwinChips. Results : For most of the genes altered in expression, the Global M values were between -0.5 to +0.5. Among these, 1143 genes increased in their expression by more than Global M +0.1, while 1161 genes decreased by more than Global M -0.1. Effects on some of the genes whose functions are implicated in neural viability are as follows: 1) The expression of apoptosis-related genes such as Bad (Global M = 0.39), programmed cell death-2(Pdcd2) (Global M = 0.20) increased, while Purinergic receptor P2X(P2rxl) Global M = -0.22), Bc12-like1(Bc1211)(Global M = -0.19) decreased. 2) The expression of 'response to stress-related genes such as antioxidation-related AMP-activated protein kinase subunit gamma 1 gene (Prkag1) (Global M = 0.14), catalase gene (Global M = 0.14) and Heme Oxygenase(Hmoxl) increased. 3) The expression of Fos like antigen 2 (Fos12) expressed in neurons that survive ischemic insult increased (Global M = 0.97). Conclusions : these data suggest that Scutellaria baicalensis GEORGI increases the expression of antiapoptosis- and antioxidation- related genes in a way that can not yet be explained.

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백서(白鼠)의 국부(局部) 뇌경색(腦硬塞)에 대한 조구등(釣鉤藤)의 신경보호(神經保護) 효과(效果) (The Neuroprotective Effects of Uncariae Ramulus et Uncus on focal cerebral ischemia in rats brains)

  • 권형수;오용성;이소연;박치상;박창국;장우석
    • 대한한방내과학회지
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    • 제24권2호
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    • pp.181-189
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    • 2003
  • The goal of this study is to investigate whether Uncariae Ramulus et Uncus can protect nerve cells against ischemic neuronal damage is caused by middle cerebral artery occlusion (MCAO) in rats' brains and to investigate whether the neuroprotective effect of Uncariae Ramulus et Uncus is concerned with IEGs(immediate early genes) expression. Uncariae Ramulus et Uncus(l00mg/kg) was administered immediately after 2 hours of MCAO and maintained for 7 days. On 7th days after 2 hours of MCAO, the brains of rats were sliced through the hippocampus. c-Fos immunohistochemistry stain and Cresyl violet stain were done for microscopic examination. Each number of viable neurons and c-Fos immunoreactive cells in CA1 was counted. The density of neurons and c-Fos immunoreactive cells were significantly decreased in MCAO-operated ischemic rats compared to that sham-operated rats. Administration of Uncariae Ramulus et Uncus group significantly elevated MCAO-induced decrease in density of neurons, and elevated MCAO-induced decrease in c-Fos immunoreactive cells. These results suggest that the neuroprotective effect of Uncariae Ramulus et Uncus against focal cerebral ischemia. Also, we hypothesized that neuroprotective mechanism of Uncariae Ramulus et Uncus is related to IEGs expression.

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Transcriptional Profile and Cellular Effects on Time Course & Doses Treatment of Methylmercury using Human cDNA Microarray System

  • Kim, Youn-Jung;Yun, Hye-Jung;Kim, Eun-Young;Ryu, Jae-Chun
    • 한국환경독성학회:학술대회논문집
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    • 한국환경독성학회 2003년도 추계국제학술대회
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    • pp.176-176
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    • 2003
  • Methylmercury is known to have devastating effects on the mammalian nervous system. When human neuroblastoma SH-SY5Y cells were treated with methylmercury at sublethal concentrations (6.25 uM), up-regulated genes (39) & down-regulated genes (19) were identified by human 8k cDNA microarray. These genes are related with microtubule process, signal transduction pathway and cell death (apoptosis), Apoptosis-associated genes, HSP70, CDK inhibitor 1, FOS-like antigen were up-regulated and microtubule related genes like villin and dynein down-regultaed. To confirm the presence of apoptosis in cultured SH-SY5Y cells treated 6.25 and 1 uM methylmercury, we applied Annexin V-FITC assay followed by flow cytometric measurements after 6 and 24h. Studies on transcriptional and molecular effect by methylmercury may provide an insight into the neurotoxic effects of methylmercury in human neuronal cells and a possibility to develop more efficient and exact monitoring system of heavy metals as ubiquitous environmental pollutants.

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Gene Expression Profiling of Rewarding Effect in Methamphetamine Treated Bax-deficient Mouse

  • Ryu, Na-Kyung;Yang, Moon-Hee;Jung, Min-Seok;Jeon, Jeong-Ok;Kim, Kee-Won;Park, Jong-Hoon
    • BMB Reports
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    • 제40권4호
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    • pp.475-485
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    • 2007
  • Methamphetamine is an illicit drug that is often abused and can cause neuropsychiatric and neurotoxic damage. Repeated administration of psychostimulants such as methamphetamine induces a behavioral sensitization. According to a previous study, Bax was involved in neurotoxicity by methamphetamine, but the function of Bax in rewarding effect has not yet been elucidated. Therefore, we have studied the function of Bax in a rewarding effect model. In the present study, we treated chronic methamphetamine exposure in a Bax-deficient mouse model and examined behavioral change using a conditioned place preference (CPP) test. The CPP score in Bax knockout mice was decreased compared to that of wild-type mice. Therefore, we screened for Bax-related genes that are involved in rewarding effect using microarray technology. In order to confirm microarray data, we applied the RT-PCR method to observe relative changes of Bcl2, a pro-apoptotic family gene. As a result, using our experiment microarray, we selected genes that were associated with Bax in microarray data, and eventually selected the Tgfbr2 gene. Expression of the Tgfbr2 gene was decreased by methamphetamine in Bax knockout mice, and the gene was overexpressed in Bax wild-type mice. Additionally, we confirmed that Creb, FosB, and c-Fos were related to rewarding effect and Bax using immunohistochemistry.