• 제목/요약/키워드: GABA

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불안과 GABA 체계 (Anxiety and GABA System)

  • 양종철
    • 대한불안의학회지
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    • 제2권2호
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    • pp.79-85
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    • 2006
  • Anxiety and anxiety disorders are related to many neurotransmitters, such as norepinephrine, serotonine, dopamine, glutamate, and Gamma-aminobutyric acid (GABA). GABA, the main inhibitory neurotransmitter of the CNS, is known to counterbalance the action of the excitatory neurotransmitters and control anxiety. GABA acts on 3 GABA receptor subtypes, $GABA_A$, $GABA_B$, and $GABA_C$. $GABA_A$ and $GABA_c$ receptors are oligomeric transmembrane glycoproteins composed of 5 subunits that are arranged around a central chloride channel. $GABA_B$ receptor comprises two 7-transmembraneis-spanning proteins that are coupled to either calcium or potassium channel via G proteins. This article highlights neurobiological interactions between anxiety and GABA system.

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Regional difference in spontaneous firing inhibition by GABAA and GABAB receptors in nigral dopamine neurons

  • Kim, Yumi;Jang, Jinyoung;Kim, Hyun Jin;Park, Myoung Kyu
    • The Korean Journal of Physiology and Pharmacology
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    • 제22권6호
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    • pp.721-729
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    • 2018
  • GABAergic control over dopamine (DA) neurons in the substantia nigra is crucial for determining firing rates and patterns. Although GABA activates both $GABA_A$ and $GABA_B$ receptors distributed throughout the somatodendritic tree, it is currently unclear how regional GABA receptors in the soma and dendritic compartments regulate spontaneous firing. Therefore, the objective of this study was to determine actions of regional GABA receptors on spontaneous firing in acutely dissociated DA neurons from the rat using patch-clamp and local GABA-uncaging techniques. Agonists and antagonists experiments showed that activation of either $GABA_A$ receptors or $GABA_B$ receptors in DA neurons is enough to completely abolish spontaneous firing. Local GABA-uncaging along the somatodendritic tree revealed that activation of regional GABA receptors limited within the soma, proximal, or distal dendritic region, can completely suppress spontaneous firing. However, activation of either $GABA_A$ or $GABA_B$ receptor equally suppressed spontaneous firing in the soma, whereas $GABA_B$ receptor inhibited spontaneous firing more strongly than $GABA_A$ receptor in the proximal and distal dendrites. These regional differences of GABA signals between the soma and dendritic compartments could contribute to our understanding of many diverse and complex actions of GABA in midbrain DA neurons.

Production of GABA (gamma amino butyric acid) by Lactic Acid Bacteria

  • Kook, Moo-Chang;Cho, Seok-Cheol
    • 한국축산식품학회지
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    • 제33권3호
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    • pp.377-389
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    • 2013
  • Gamma-amino butyric acid (GABA) is a kind of pharmacological and biological component and its application is wide and useful in Korea specially, becoming aging society in the near feature. GABA is request special dose for the purposed biological effect but the production of concentrated GABA is very difficult due to low concentration of glutamic acid existed in the fermentation broth. To increase GABA concentrate using fermentation technology, high content of glutamic acid is required. For this reason, various strains which have the glutamic acid decarboxylase (GAD) and can convert glutamic acid to GABA, were isolated from various fermented foods. Most of GABA producing strains are lactic acid bacteria isolated from kimchi, especially added monosodium glutamate (MSG) as a taste enhancer. Optimizing the formulation of culture media and the culture condition, GABA conversion yield and amounts were increased. Finally GABA concentration of fermentation broth in batch or fed batch fermentation reached 660 mM or 1000 mM, respectively. Furthermore formulation of culture media for GABA production developed commercially. Many studies about GABA-rich product have been continued, so GABA-rich kimchi, cheese, yogurt, black raspberry juice and tomato juices has been also developed. In Korea many biological effects of GABA are evaluated recently and GABA will be expected to be used in multipurpose.

γ-Aminobutyric Acid Metabolism in Plant under Environment Stressses

  • Ham, Tae-Ho;Chu, Sang-Ho;Han, Sang-Jun;Ryu, Su-Noh
    • 한국작물학회지
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    • 제57권2호
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    • pp.144-150
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    • 2012
  • ${\gamma}$-Aminobutyric acid (GABA) is a non-protein amino acid that is widely distributed in plant and animal kingdom. GABA is found in tissues of the central nervous system (CNS) in animals. GABA functions as a the major inhibitory neurotransmitter in the CNS by acting through the GABA receptors. Clinical studies have revealed the relationship between an increased intake of GABA or analogues with several health benefits, including lowering of blood pressure in mildly hypertensive animals and humans. Furthermore, GABA would also has an inhibitory effect on cancer cell proliferation, stimulates cancer cell apoptosis and plays a role in alcohol-associated diseases and schizophrenia. In plants, interest in the GABA emerged mainly from experimental observations that GABA is largely and rapidly produced in large amounts in response to biotic and abiotic stresses. In this study, we speculated the properties and metabolism of GABA in plant and functions in relation to the responses to environmental stresses.

Co-Localization of GABA Shunt Enzymes for the Efficient Production of Gamma-Aminobutyric Acid via GABA Shunt Pathway in Escherichia coli

  • Pham, Van Dung;Somasundaram, Sivachandiran;Park, Si Jae;Lee, Seung Hwan;Hong, Soon Ho
    • Journal of Microbiology and Biotechnology
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    • 제26권4호
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    • pp.710-716
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    • 2016
  • Gamma-aminobutyric acid (GABA) is a non-protein amino acid, which is an important inhibitor of neurotransmission in the human brain. GABA is also used as the precursor of biopolymer Nylon-4 production. In this study, the carbon flux from the tricarboxylic acid cycle was directed to the GABA shunt pathway for the production of GABA from glucose. The GABA shunt enzymes succinate-semialdehyde dehydrogenase (GabD) and GABA aminotransferase (GabT) were co-localized along with the GABA transporter (GadC) by using a synthetic scaffold complex. The co-localized enzyme scaffold complex produced 0.71 g/l of GABA from 10 g/l of glucose. Inactivation of competing metabolic pathways in mutant E. coli strains XBM1 and XBM6 increased GABA production 13% to reach 0.80 g/l GABA by the enzymes co-localized and expressed in the mutant strains. The recombinant E. coli system developed in this study demonstrated the possibility of the pathway of the GABA shunt as a novel GABA production pathway.

흰쥐 적출 소장의 수축성에 미치는 GABA의 영향 (Effect of GABA on the Contractility of Small Intestine Isolated from Rat)

  • 허준영;권오철;하정희;이광윤;김원준
    • Journal of Yeungnam Medical Science
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    • 제8권2호
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    • pp.95-105
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    • 1991
  • 흰쥐 적출소장의 수축성에 미치는 GABA의 영향을 관찰하여 다음과 같은 결과를 얻었다. 1. GABA는 소장을 이완시켰으며 그 이완 작용은 십이지장, 공장 그리고 회장의 순이었다. GABA A수용체 효현제인 muscimol 역시 소장을 이완시켰으며, 그 효능의 강도는 십이지장, 공장 그리고 회장의 순이었다. 그러나 GABA B수용체 효현제인 baclofen은 소장의 운동성에 유의한 영향을 미치지 못하였다. 2. 상경적 GABA A수용체 길항제인 bicuculline과 비 상경적 GABA A수용체 길항제인 picrotoxin은 십이지장에 대한 GABA와 muscimol의 이완 작용을 현저히 억제시켰다. 그리고 bicuculline의 억제 작용이 picrotoxin 보다 강하였다. 3. Sodium channel blocker인 tetrodotoxin은 GABA의 이완 작용을 봉쇄하였다. 4. 신경절 봉쇄적인 hexamethonium은 십이지장에 대한 GABA의 이완작용을 길항하지 못하였다. 이상의 실험 결과로 볼 때 흰쥐 소장의 자발 수축운동에 대한 GABA의 이완작용은 소장이 부위에 따라 다르게 나타나며, 그 작용은 postganglionic presynaptic neuron에 존재하는 GABA A 수용체에 작용함으로써 나타나는 것으로 사료된다.

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흰쥐의 적출 정관 수축성에 대한 ${\gamma}$-Aminobutyric Acid의 억제작용 (Inhibitory Effects of ${\gamma}$-Aminobutyric Acid on the Contractility of Isolated Rat Vas Deferens)

  • 안기영;권오철;하정희;이광윤;김원준
    • Journal of Yeungnam Medical Science
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    • 제9권2호
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    • pp.382-395
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    • 1992
  • GABA는 중추신경계의 대표적인 신경전달 물질로서 $GABA_A$수용체 또는 $GABA_B$수용체에 작용하여 진정 작용, 항 불안 작용, 및 근이완 작용을 하는 것으로 알려져 있다. 근래에는 말초조직에도 GABA가 존재하며 신경조정인자 혹은 신경전달인자로서 작용한다는 보고가 있다. 정관에 대한 자율신경 지배는 아드레날린성, 콜린성과 비콜린성 비아드레날린성 신경섬유들이 분포하고 있으나, 종 혹은 부위에 따라 이들 구성요소들의 수축성에 대한기여도가 다른 것으로 알려져 있다. 본 실험에서는 흰쥐의 전립선 부위 정관의 기본장력 및 전기장 유발 수축에 대한 교감 신경성, 부교감 신경성 및 퓨린성 효현제의 영향을 관찰하였으며, 정관의 흥분성 약물 및 전기장 유발 수축에 미치는 GABA 및 GABA 관련 약물의 영향을 관찰함으로서 정관의 수축운동에 대한 GABA의 작용기전을 규명해 보고자 흰쥐(Sprague-Dawley)의 전립선 부위 정관 절편을 적출 근편 실조에 현수하고, 등척성 장력을 측정하여 다음과 같은 결과를 얻었다. 1. GABA, muscimol 및 baclofen은 전기장자극(0.2 Hz, 1 msec, 80 V) 유발 수축을 농도 의존적으로 억제하였으며 그 효력은 GABA, baclofen 그리고 muscimol 순이었다. 2. GABA의 억제작용은 $GABA_B$ 수용체 길항제인 DAVA에 의하여 길항되었으나, $GABA_A$ 수용체 길항제인 bicuculline에 의해서는 길항되지 않았다. 3. Baclofen의 억제작용은 DAVA에 의하여 길항되었으나 muscimol의 억제작용은 bicuculline에 의해서는 길항되지 않았다. 4. Norepinephrine과 ATP는 농도 의존적으로 정관의 수축력을 증가 시켰으나 acetylcholine은 영향을 미치지 못하였다. 5. GABA, baclofen 및 muscimol은 정관의 기본 장력에는 영향을 미치지 않았으며, GABA는 norepinephrine과 ATP 유발 수축에는 영향을 주지 못하였다. 6. 적출 정관을 20초간 전기장 자극을 가하였을 때 ATP 수용체 탈감작제인 mATP를 전처치한 경우에는 FPC가 감소되었고, 신경원에서 catecholamine을 고갈시키는 reserpine을 전처치한 경우에는 STC가 감소되었다. 7. GABA는 mATP를 전처치한 군에서는 정관의 전기장 유발 수축에 영향을 주지 못하였으나, reserpine을 전처치한 군에서는 전기장 유발 수축을 억제하였다. 이상의 결과로 보아 흰쥐정관의 전립선 부위에는 아드레날린성 신경전달기전과 퓨린성 신경전달기전이 동시에 작용하고 있으며, GABA는 주로 신경원의 $GABA_B$ 수용체를 통하여 ATP의 유리를 억제하는 것으로 사료된다.

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흰쥐의 뮤시몰투여에 의한 배뇨반사억제효과에 대한 벤조디아제핀수용체의 영향 (Central Involvement of Benzodiazepine Receptor on the Muscimol-induced Inhibition of Micturition Reflex in Rats)

  • 허인회;오호정
    • 약학회지
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    • 제36권5호
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    • pp.496-505
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    • 1992
  • The correlation between GABA receptors($GABA_A$ and $GABA_B$ receptor) and benzodiazepine receptor on the saline infusion-induced micturition reflex contraction was studied in the female rat. To investigate the effect of ${\gamma}-aminobutyric$ acid(GABA) on the micturition reflex, exogenous GABA(10 mg/kg) and GABA transaminase inhibitor(aminooxyacetic acid; AOAA $1\;{\mu}g$) were administered intravenously(i.v.) and intracerebroventriculary(i.c.v.), respectively. In result, both GABA and AOAA inhibited the saline induced micturition reflex contraction. This AOAA induced inhibition of micturition reflex was blocked by both bicuculine. $GABA_A$ receptor antagonist, and Ro 15-1788, benzodiazepine receptor antagonist. Muscimol, $GABA_A$ receptor antagonist($0.1\;{\mu}g$ i.c.v., $3\;{\mu}g$ intrathecal; i.t., 1 mg/kg i.v.) and baclofen, $GABA_A$ receptor agonist($1\;{\mu}g$ i.c.v., $3\;{\mu}g$ i.t., 1 mg/kg i.v.) also inhibited the bladder contraction. Pretreatment of bicuculline($1\;{\mu}g$ i.c.v.), but not of 5-aminovaleric acid(AVA, $1\;{\mu}g$ i.c.v.), $GABA_B$ receptor antagonist blocked the central inhibition of muscimol. These inhibitory effects were reversed by Ro15-1788 but were potentiated by flurazepam, benzodiazepine receptor antagonist. On the other hand, the inhibitory effects of baclofen were not affected by Ro 15-1788. Diazepam and flurazepam also inhibited the micturition reflex contraction when they were administered $3\;{\mu}g$ i.c.v., $10\;{\mu}g$ i.t., $10\;{\mu}M$, $30\;{\mu}M$ transurethrally, respectively. In conclusion, these results suggest that the micturition reflex is mediated by $GABA_A$, $GABA_B$ receptor and benzodiazepine receptor. The bezodiazepines increase the receptor binding of GABA to the $GABA_A$ receptor, so that the benzodiiazepines show the synergistic effect on the inhibition of the micturition reflex contraction, but not to the $GABA_B$ receptor.

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GABA 수용체 영상 (GABA Receptor Imaging)

  • 이종두
    • Nuclear Medicine and Molecular Imaging
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    • 제41권2호
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    • pp.166-171
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    • 2007
  • GABA is primary an inhibitory neurotransmitter that is localized in inhibitory interneurons. GABA is released from presynaptic terminals and functions by binding to GABA receptors. There are two types of GABA receptors, $GABA_{A}-receptor$ that allows chloride to pass through a ligand gated ion channel and $GABA_{B}-receptor$ that uses G-proteins for signaling. The $GABA_{A}$-receptor has a GABA binding site as well as a benzodiazepine binding sites, which modulate $GABA_{A}$-receptor function. Benzodiazepine GABAA receptor imaging can be accomplished by radiolabeling derivates that activates benzodiazepine binding sites. There has been much research on flumazenil (FMZ) labeled with $^{11}C-FMZ$, a benzodiazepine derivate that is a selective, reversible antagonist to GABAA receptors. Recently, $^{18}F-fluoroflumazenil$ (FFMZ) has been developed to overcome $^{11}C's$ short half-life. $^{18}F-FFMZ$ shows high selective affinity and good pharmacodynamics, and is a promising PET agent with better central benzodiazepine receptor imaging capabilities. In an epileptic focus, because the GABA/benzodiazepine receptor amount is decreased, using $^{11}C-FMZ$ PET instead of $^{18}F-FDG$ PET, restrict the foci better and may also help find lesions better than high resolution MR. $GABA_{A}$ receptors are widely distributed in the cerebral cortex, and can be used as an viable neuronal marker. Therefore it can be used as a neuronal cell viability marker in cerebral ischemia. Also, GABA-receptors decrease in areas where neuronal plasticity develops, therefore, $GAB_{A}$ imaging can be used to evaluate plasticity. Besides these usages, GABA receptors are related with psychological diseases, especially depression and schizophrenia as well as cerebral palsy, a motor-related disorder, so further in-depth studies are needed for these areas.

개의 기관근 수축성에 미치는 GABA의 효과 (Effect of GABA on the Contractility of Isolated Canine Trachealis Muscle)

  • 구철회;권오철;최은미;이광윤;김원준
    • Journal of Yeungnam Medical Science
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    • 제11권2호
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    • pp.314-322
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    • 1994
  • 개의 기관 평활근에서 GABA수용체의 존재여부를 검정하고, 아울러 GABA와 diazepam의 작용기전을 추정해 보기 위하여 다음과 같은 실험을 하였다. 개의 기관을 절재하여 $4^{\circ}C$의 Tyrode 영양액내에서 폭 2mm 길이 15mm의 수평 근절편으로 만들었다. 기관근 절편은 양끝을 견사로 결찰하여 1 ml의 Tyrode 영양액이 함유되어 있는 적출근편실험조 내에서 등척성 장력을 측정하여 polygraph에 그 수축력을 묘기하였다. 실험조내의 영양액의 온도는 $37^{\circ}C$로 유지시키고, 95%산소와 5% 이산화탄소의 혼합 기체를 공급하여 pH를 7.4로 유지하였다. 실험조 내에 장치된 두개의 백금선 전극을 통하여 전기장자극을 가하고 전기장자극유발 수축에 대한 GABA와 diazepam 및 GABA 수용체 길항제들의 상호작용을 관찰하였다. GABA와 diazepam은 기관지 절편의 수축반응을 같은 양상, 같은 정도로 유의하게 억제하였다. GABA와 Diazepam에 의한 수축억제작용은 $GABA_A$ 수용체 봉쇄제인 bicuculline에 의해서는 유의하게 길항되었으나 $GABA_B$ 수용체 봉쇄제인 ${\delta}$-Aminovaleric acid 에 의해서는 전혀 영향을 받지 않았다. 이상의 결과로 보아 본 실험의 조건하에서 개의기관 평활근에는 $GABA_A$ 수용체가 존재하며, GABA와 diazepam은 말초형의 $GABA_A$ 수용체에 작용하여 콜린성신경지배에 의한 기관근 수축을 억제한다고 사료된다.

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