• 제목/요약/키워드: tyrosine hydroxylase mRNA

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Tyrosine Hydroxylase Activity and mRNA in Rat Locus Coeruleus and Adrenals Following Chronic Ethanol Treatment and Acute Cold Stress

  • Lee, Yong-Kyu;Park, Dong-Ha
    • BMB Reports
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    • 제29권5호
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    • pp.393-397
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    • 1996
  • Sprague-Dawley male rats (150 g) were chronically treated with 5 v/v % ethanol admixed with nutritionally complete liquid diet and fed ad libitum for 3 weeks. Controls were pair fed with the isocaloric sucrose liquid diet. One half of each group was exposed to cold stress at $4^{\circ}C$ either for 24 h (for determination of mRNA by in situ hybridization) or for 48 h (for determination of enzyme activity). Chronic ethanol treatment (ethanol) did not affect tyrosine hydroxylase (TH) mRNA level in locus coeruleus (LC) of brain and adrenal medulla (AM) compared to controls. Cold stress showed strong increase of TH mRNA level in LC and AM compared to controls. Pretreated ethanol reduced the increased TH mRNA level by cold stress in LC and AM. Ethanol did not affect TH activity in LC and adrenal glands (adrenals). Cold stress increased TH activity in LC but not in adrenals. Pretreated ethanol did not reduce the increased TH activity by cold stress in LC but this result was not shown in adrenals. It is suggested that ethanol does not affect the message level and enzyme protein level for TH in LC and AM in normal rat. It is also hypothesized that pretreated ethanol reduces the magnitude of acute cold stress response, that is induction of TH mRNA in LC and AM, and does not reduce the increased TH enzyme protein that is also acute cold stress response in LC.

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Anti-stress effects of ginseng via down-regulation of tyrosine hydroxylase (TH) and dopamine ${\beta}$-hydroxylase (DBH) gene expression in immobilization-stressed rats and PC12 cells

  • Kim, Yang-Ha;Choi, Eun-Ha;Doo, Mi-Ae;Kim, Joo-Yeon;Kim, Chul-Jin;Kim, Chong-Tai;Kim, In-Hwan
    • Nutrition Research and Practice
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    • 제4권4호
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    • pp.270-275
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    • 2010
  • Catecholamines are among the first molecules that displayed a kind of response to prolonged or repeated stress. It is well established that long-term stress leads to the induction of catecholamine biosynthetic enzymes such as tyrosine hydroxylase (TH) and dopamine ${\beta}$-hydroxylase (DBH) in adrenal medulla. The aim of the present study was to evaluate the effects of ginseng on TH and DBH mRNA expression. Repeated (2 h daily, 14 days) immobilization stress resulted in a significant increase of TH and DBH mRNA levels in rat adrenal medulla. However, ginseng treatment reversed the stress-induced increase of TH and DBH mRNA expression in the immobilization-stressed rats. Nicotine as a ligand of the nicotinic acetylcholine receptor (nAChR) in adrenal medulla stimulates catecholamine secretion and activates TH and DBH gene expression. Nicotine treatment increased mRNA levels of TH and DBH by 3.3- and 3.1-fold in PC12 cells. The ginseng total saponin exhibited a significant reversal in the nicotine-induced increase of TH and DBH mRNA expression, decreasing the mRNA levels of TH and DBH by 57.2% and 48.9%, respectively in PC12 cells. In conclusion, immobilization stress induced catecholamine biosynthetic enzymes gene expression, while ginseng appeared to restore homeostasis via suppression of TH and DBH gene expression. In part, the regulatory activity in the TH and DBH gene expression of ginseng may account for the anti-stress action produced by ginseng.

Anti-stress effects of Gastrodia elata on catecholamine pathway in rat

  • Ri, Qrian-Young
    • 한국자원식물학회:학술대회논문집
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    • 한국자원식물학회 2003년도 제10차 국제학술회의 및 추계정기 학술발표회
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    • pp.17-17
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    • 2003
  • Enzymes involved in catecholamine synthesis are present in the highest concentration in the adrenal medulla, however they were found also in other, mainly nervous tissues. Increased transcription of genes for catecholamine biosynthetic enzymes is an important mechanism to increase the capacity for epineprine/norepinephrine biosynthesis with stress. Gastrodia elata(Chinese name: Tienma), are very important Chinese herbal medicines used for the medical treatment of headaches, migraine, dizziness, epilepsy, rheumatism, neuralgia, paralysis and other neuralgic and nervous disorders. Immobilize stressed rat markedly increased tyrosine hydroxylase (TH) mRNA and dopamine-${\beta}$-hydroxylase (DBH) mRNA transcriptior level more than control group. But treated Gastrodia elata extracts in immobilized stressed rat slightly increased TH mRNA and DBH mRNA transcription level more than normal group. In addition, we are obtained identical results in PC12 cell line. Decrease of transcription level of TH mRNA and DBH mRNA is indicating that Gastrodia elata have a anti-stress effects which decrease the transcription level of TH and DBH mRNA on catecholamine biosynthesis pathway.

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Anti-stress effects of Gastrodia elata on catecholamine pathway in rat

  • Ri, Qrian-Young
    • 한국자원식물학회:학술대회논문집
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    • 한국자원식물학회 2003년도 심포지엄
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    • pp.37-37
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    • 2003
  • Enzymes involved in catecholamine synthesis are present in the highest concentration in the adrenal medulla, however they were found also in other, mainly nervous tissues. Increased transcription of genes for catecholamine biosynthetic enzymes is an important mechanism to increase the capacity for epineprine/norepinephrine biosynthesis with stress. Gastrodia elata(Chinese name: Tienma), are very important Chinese herbal medicines used for the medical treatment of headaches, migraine, dizziness, epilepsy, rheumatism, neuralgia, paralysis and other neuralgic and nervous disorders. Immobilize stressed rat markedly increased tyrosine hydroxylase (TH) mRNA and dopamine-$\beta$-hydroxylase (DBH) mRNA transcription level more than control group. But treated Gastrodia elata extracts in immobilized stressed rat slightly increased TH mRNA and DBH mRNA transcription level more than normal group. In addition, we are obtained identical results in PC12 cell line. Decrease of transcription level of TH mRNA and DBH mRNA is indicating that Gastrodia elata have a anti-stress effects which decrease the transcription level of TH and DBH mRNA on catecholamine biosynthesis pathway.

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전자파에 노출된 생쥐에서 운동량에 따른 뇌의 유전자 변화 (The Gene Expression Level Differences associated with Exercise in the Mouse Brain exposed to Radiofrequency Radiation)

  • 이민선
    • 디지털융복합연구
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    • 제18권1호
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    • pp.241-247
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    • 2020
  • 전자파 노출이 자발운동에 따른 뇌의 유전자 발현에 미치는 영향을 10 주간 4그룹 즉, 정상 그룹, 자발운동 그룹, 전자파 노출 그룹, 전자파 노출 및 자발운동 그룹으로 나누어 조사하였다. 선조체(striata)와 시상하부(hypothalamus)에서 RT-PCR을 수행하였으며, 타이로신수산화효소(TH), FoxO3a, AMPKα, mRNA 발현을 조사하였다. 선조체에서 TH mRNA 발현은 자발운동과 전자파 노출 조건에서 각각 감소하였고, 전자파 노출 및 자발운동 그룹에서 더 많이 감소되었다. 이 결과는 전자파 노출 및 자발운동 그룹에서의 운동량 감소가 선조체에서 도파민이 감소할 수 있음을 시사한다. 선조체에서 FoxO3a mRNA 발현은 자발운동 그룹에서 증가했지만, 전자파 노출 및 자발운동 그룹은 현저히 감소했다. 시상하부에서는 TH mRNA 유전자 발현은 전자파 노출을 받은 자발운동 그룹에서 감소가 유의했으며, FoxO3a mRNA는 발현의 현저한 증가가 있었다. 전자파가 기억력에 미치는 영향도 밝히기 위해 해마에서의 여러 단백질들의 발현을 추후 조사할 것이다.

Inhibition of Tyrosine Hydroxylase by $(1R,9S)-{\beta}-Hydrastine$ Hydrochloride in PC12 cells

  • Yin, Shou-Yu;Kim, Yu-Mi;Lee, Jae-Joon;Jin, Chun-Mei;Yang, Yoo-Jung;Lim, Kyo-Whan;Kang, Min-Hee;Lee, Myung-Koo
    • Natural Product Sciences
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    • 제10권3호
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    • pp.114-118
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    • 2004
  • It is reported that $(1R,9S)-{\beta}-Hydrastine$ hydrochloride (BHSH) decreased the intracellular dopamine content by inhibiting tyrosine hydroxylase (TH) activity in PC12 cells. In this study, the inhibitory mechanisms on TH activity by BHSH in PC12 cells were investigated. BHSH treatment caused a reduction of TH activity and TH mRNA level in a dose-dependent manner. After the treatment of $20\;{\mu}M$ BHSH, TH activity and TH mRNA content were reduced at 15 min, reached the minimal levels at 6-24 h, and then recovered gradually to the control level. BHSH at $10-50\;{\mu}M$ caused a decrease in the basal intracellular cyclic AMP levels at 10 min in a concentration-dependent manner. In addition, BHSH at $20-100\;{\mu}M$ decreased the basal intracellular $Ca^{2+}$ concentration $([Ca^{2+}]_i)$ immediately in a dose-dependent manner. BHSH also inhibited the 56 mM $K^+ $ depolarization-induced elevation in $[Ca^{2+}]_i$, and blocked caffeine-activated store-operated $Ca^{2+}$ entry in PC12 cells. These data suggest that BHSH inhibits TH activity and TH gene expression, in part, through reducing cyclic AMP content and basal $[Ca^{2+}]_i$ in PC12 cells.

THe Effect of Chronic Ehronic Treatment and Cold stress on Catecholaminergic Enzyme activity and mRNA in Rat Brain and Adrenals

  • Lee, Yong-Kyu;Park, Dong-H
    • Archives of Pharmacal Research
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    • 제19권5호
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    • pp.374-380
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    • 1996
  • Sprague-Dawley male rats (150 g) were chronically treated with 5 v/v % ethanol admixed with nutritionally complete liquid diet and fed ad libitum for 3 weeks. One half of each group was exposed to cold stress at 4 ^{\circ}C either for 24 h (for determination of mRNA by in situ hybridization) or for 48 h (for determination of enzyme activity). Chronic ethanol treatment (ethanol) did not affect tyrosine hydroxylase(TH) mRNA level in locus coeruleus(LC) of brain and adrenal medulla(AM) compared to controls. Cold stress showed strong increase of TH mRNA level in LC and AM compared to controls. Pretreated ethanol reduced the increased TH mRNA level by cold stress in LC and AM. Ethanol did not affect TH activity in LC and adenal glands(adrenals). Cold stress increased TH activity in LC but not in adrenals. Pretreated ethanol did not reduce the increased TH activity by cold stress in LC but this result was not shown in adrenals. Phenylethanolamine-N-methyltransferase(PNMT) activity in $C_{1}$$C_{2}$ and adrenals increased only in ethanol treated group. THese results suggest that ethanol does not affect TH mRNA level and activity in LC and adrenals, but increases PNMT activity in $C_{1}$$C_{2}$ and adrenals in normal rat. It is also suggested that pretreated ethanol reduces the magnitude of cold stress response, that is induction of TH mRNA in LC and AM, and does not reduce the protein activation of TH that is also cold stress response in LC.

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The Harman and Norharman Reduced Dopamine Content and Induced Cytotoxicity in PC12 Cells

  • Yang, Yoo-Jung;Lim, Sung-Cil;Lee, Myung-Koo
    • Biomolecules & Therapeutics
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    • 제16권2호
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    • pp.106-112
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    • 2008
  • The effects of harman and norharman on dopamine content and L-DOPA-induced cytotoxicity were investigated in PC12 cells. Harman and norharman decreased the intracellular dopamine content for 24 h. The $IC_{50}$ values of harman and norharman were 20.4 ${\mu}M$ and 95.8 ${\mu}M$, respectively. Tyrosine hydroxylase (TH) activity and TH mRNA levels were also decreased by 20 ${\mu}M$ harman and 100 ${\mu}M$ norharman. Under the same conditions, the intracellular cyclic AMP levels were decreased by harman and norharman. In addition, harman and norharman at concentrations higher than 80 ${\mu}M$ and 150 ${\mu}M$ caused cytotoxicity at 24 h in PC12 cells. Non-cytotoxic ranges of 10-30 ${\mu}M$ harman and 50-150 ${\mu}M$ norharman inhibited L-DOPA (20-50 ${\mu}M$)-induced increases of dopamine content at 24 h. Harman at 20-150 ${\mu}M$ and norharman at 100-300 ${\mu}M$ also enhanced LDOPA (20-100 ${\mu}M$)-induced cytotoxicity at 24 h. These results suggest that harman and norharman decrease dopamine content by reducing TH activity and aggravate L-DOPA-induced cytotoxicity in PC12 cells.

Tributyltin 화합물이 PC12 세포의 Dopamine 생합성 저해작용에 미치는 영향 (Inhibitory Effects of Tributyltin Acetate on Dopamine Biosynthesis in PC12 Cells)

  • 김유미;이재준;이명구
    • 약학회지
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    • 제50권2호
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    • pp.105-110
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    • 2006
  • The effects of tributyltin acetate (TBTA), one of the endocrine-disrupting organotin compounds, on dopamine biosynthesis in PC12 cells were investigated. Treatment of PC12 cells with TBTA at $0.05\sim0.25{\mu}M$ significantly decreased the intracellular dopamine content in a concentration-dependent manner ($IC_{50}$ value, $0.17{\mu}M$). Under these conditions, tyrosine hydroxylase (TH) activity and TH mRNA level were also decreased by $0.1{\mu}M$ TBTA at 24 h, and recovered there-after. In addition, treatment with L-DOPA at 20 and $50 {\mu}M$ increased the intracellular dopamine content in PC12 cells and the increase in dopamine content by L-DOPA was significantly abolished by TBTA at $0.1\sim0.2{\mu}M$. These results indicate that TBTA at $0.1\sim0.2{\mu}M$ causes the decrease in the basal dopamine content and abolishes the increase in dopamine content in L-DOPA-treated cells in part by the inhibition of TH gene expression and activity.