• 제목/요약/키워드: alpha-2 agonist

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Role of Regulators of G-Protein Signaling 4 in $Ca^{2+}$ Signaling in Mouse Pancreatic Acinar Cells

  • Park, Soon-Hong;Lee, Syng-Ill;Shin, Dong-Min
    • The Korean Journal of Physiology and Pharmacology
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    • 제15권6호
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    • pp.383-388
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    • 2011
  • Regulators of G-protein signaling (RGS) proteins are regulators of $Ca^{2+}$ signaling that accelerate the GTPase activity of the G-protein ${\alpha}$ -subunit. RGS1, RGS2, RGS4, and RGS16 are expressed in the pancreas, and RGS2 regulates G-protein coupled receptor (GPCR)-induced $Ca^{2+}$ oscillations. However, the role of RGS4 in $Ca^{2+}$ signaling in pancreatic acinar cells is unknown. In this study, we investigated the mechanism of GPCR-induced $Ca^{2+}$ signaling in pancreatic acinar cells derived from $RGS4^{-/-}$ mice. $RGS4^{-/-}$ acinar cells showed an enhanced stimulus intensity response to a muscarinic receptor agonist in pancreatic acinar cells. Moreover, deletion of RGS4 increased the frequency of $Ca^{2+}$ oscillations. $RGS4^{-/-}$ cells also showed increased expression of sarco/endoplasmic reticulum $Ca^{2+}$ ATPase type 2. However, there were no significant alterations, such as $Ca^{2+}$ signaling in treated high dose of agonist and its related amylase secretion activity, in acinar cells from $RGS4^{-/-}$ mice. These results indicate that RGS4 protein regulates $Ca^{2+}$ signaling in mouse pancreatic acinar cells.

In vitro에서 조릿대, 연근과 연잎이 인슐린 작용 및 분비에 미치는 영향 (Effect of Sasa Borealis and White Lotus Roots and Leaves on Insulin Action and Secretion In Vitro)

  • 고병섭;전동화;장진선;김주호;박선민
    • 한국식품과학회지
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    • 제38권1호
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    • pp.114-120
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    • 2006
  • 백련 뿌리 및 잎과 조릿대는 과거부터 약용으로 사용해 왔지만 아직까지 연구도 많이 이루어지지 않았고, 항당뇨 효과에 대한 연구도 거의 없었다. 본 연구에서는 백련 뿌리 및 잎과 조릿대의 추출물과 분획물이 in vitro에서 인슐린 작용, 인슐린 분비 또는 탄수화물의 소화에 효과적인지를 조사함으로 항당뇨에 효과적인지 여부를 조사하였다. 백련 뿌리 및 잎과 조릿대의 추출물은 각각 물로 추출하여 항당뇨 효과를 조사하였다. 또한 백련 뿌리 및 잎과 조릿대의 3 : 2 : 3으로 혼합하여 물로 추출한 후 이를 메탄올과 물을 섞은 용액으로 단계별로 XAD-4 column으로 분획하였다. 백련 뿌리 및 잎과 조릿대의 추출물과 혼합물의 분획물은 고농도(1 mg/mL)에서도 MTT 방법으로 측정하였을 때 세포 독성을 나타내지 않았다. 백련 뿌리와 조릿대 물추출물은 인슐린 작용을 향상시키는 효능이 있었고, 백련잎 물추출물은 ${\alpha}-amylase$를 억제하여 탄수화물의 소화 흡수를 지연시켰다. 이에 백련 뿌리 및 잎과 조릿대를 3 : 2 : 3으로 혼합하였을 때 20과 80% 메탄올층은 3T3-L1 지방세포에 처리하였을 때 인슐린의 작용을 향상시켜 포도당의 흡수를 증가시키는 효과가 인슐린을 10 nM을 처리한 것 만큼 효과적으로 포도당 흡수를 증가시켰다. 이 층에는 3T3-L1 섬유아세포에 분화 유도물질과 함께 처리하였을 때 $PPAR-{\gamma}$ agonist인 rosiglitazone과 마찬가지로 지방 세포로의 분화를 촉진시키고 지방의 축적도 증가시켰다. 그러므로 80% 메탄올 층에는 $PPAR-{\gamma}$ agonist로 작용하는 물질이 함유되어 있을 가능성이 높다. 베타세포라인인 Min6 세포에 백련 뿌리 및 잎과 조릿대의 혼합물의 분획물을 처리한 후 저농도와 고농도 포도당 자극시 인슐린 분비를 측정하였을 때 두 농도에서 모두 인슐린 분비에 영향을 미치지 않았다. 또한 백련 뿌리 및 잎과 조릿대의 혼합물의 20, 60과 80% 메탄올 분획층은 탄수화물의 소화에 작용하는 효소인 ${\alpha}-amylase$의 활성을 16% 정도를 억제하는 효과가 있었다. 결론적으로 백련 뿌리 및 잎과 조릿대의 추출물과 분획물에는 인슐린 분비나 탄수화물의 소화에 관여하는 성분이 없지만, 인슐린 작용을 향상시키는 인슐린 민감성 물질이 함유되어 있을 가능성이 높다.

[${\alpha}-Adrenergic$ and Cholinergic Receptor Agonists Modulate Voltage-Gated $Ca^{2+}$ Channels

  • Nah, Seung-Yeol;Kim, Jae-Ha;Kim, Cheon-Ho
    • The Korean Journal of Physiology and Pharmacology
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    • 제1권5호
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    • pp.485-493
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    • 1997
  • We investigated the effect of ${\alpha}-adrenergic$ and cholinergic receptor agonists on $Ca^{2+}$ current in adult rat trigeminal ganglion neurons using whole-cell patch clamp methods. The application of acetylcholine, carbachol, and oxotremorine ($50\;{\mu}M\;each$) produced a rapid and reversible reduction of the $Ca^{2+}$ current by $17{\pm}6%,\;19{\pm}3%,\;and\;18{\pm}4%$, respectively. Atropine, a muscarinic antagonist, blocked carbachol- induced $Ca^{2+}$ current inhibition to $3{\pm}1%$. Norepinephrine ($50\;{\mu}M$) reduced $Ca^{2+}$ current by $18{\pm}2%$, while clonidine ($50\;{\mu}M$), an ${\alpha}2-adrenergic$ receptor agonist, inhibited $Ca^{2+}$ current by only $4{\pm}1%$. Yohimbine, an ${\alpha}2-adrenergic$ receptor antagonist, did not block the inhibitory effect of norepinephrine on $Ca^{2+}$ current, whereas prazosin, an ${\alpha}1-adrenergic$ receptor antagonist, attenuated the inhibitory effect of norepinephrine on $Ca^{2+}$ current to $6{\pm}1%$. This pharmacology contrasts with ${\alpha}2-adrenergic$ receptor modulation of $Ca^{2+}$ channels in rat sympathetic neurons, which is sensitive to clonidine and blocked by yohimbine. Our data suggest that the modulation of voltage dependent $Ca^{2+}$ channel by norepinephrine is mediated via an α1-adrenergic receptor. Pretreatment with pertussis toxin (250 ng/ml) for 16 h greatly reduced norepinephrine- and carbachol-induced $Ca^{2+}$ current inhibition from $17{\pm}3%\;and\;18{\pm}3%\;to\;2{\pm}1%\;and\;2{\pm}1%$, respectively. These results demonstrate that norepinephrine, through an ${\alpha}1-adrenergic$ receptor, and carbachol, through a muscarinic receptor, inhibit $Ca^{2+}$ currents in adult rat trigeminal ganglion neurons via pertussis toxin sensitive GTP-binding proteins.

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Combined Role of Two Tryptophane Residues of α-Factor Pheromone

  • Hong, Eun Young;Hong, Nam Joo
    • Bulletin of the Korean Chemical Society
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    • 제34권2호
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    • pp.600-608
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    • 2013
  • Amide analogs of tridecapeptide ${\alpha}$-factor (WHWLQLKPGQPMYCONH$_2$) of Saccharomyces cerevisiae, in which Trp at position 1 and 3 were replaced with other residues, were synthesized to ascertain whether cooperative interactions between two Trp residues occurred upon binding with its receptor. Analogs containing Ala or Aib at position 3 of the peptide $[Ala_3]{\alpha}$-factor amide (2) and $[Aib_3]{\alpha}$-factor amide (5) exhibited greater decreases in bioactivity than analogs with same residue at position one $[Ala^1]{\alpha}$-factor amide (1) and $[Aib^1]{\alpha}$-factor amide (4), reflecting that $Trp^3$ may plays more important role than $Trp^1$ for agonist activity. Analogs containing Ala or Aib in both position one and three 3, 6 exhibited complete loss of bioactivity, emphasizing both the essential role and the combined role of two indole rings for triggering cell signaling. In contrast, double substituted analog with D-Trp in both positions 9 exhibited greater activity than single substituted analog with D-Trp 8 or deleted analog 7, reflecting the combined contribution of two tryptophane residues of ${\alpha}$-factor ligand to activation of Ste2p through interaction with residue $Tyr^{266}$ and importance of the proper parallel orientation of two indole rings for efficient triggering of signal G protein coupled activation. Among ten amide analogs, $[Ala^{1,3}]{\alpha}$-factor amide (3), $[Aib^{1,3}]{\alpha}$-factor amide (6), [D-$Trp^3]{\alpha}$-factor amide (8) and [des-$Trp^1,Phe^3]{\alpha}$-factor amide (10) were found to have antagonistic activity. Analogs 3 and 6 showed greater antagonistic activity than analogs 8 and 10.

P2X and P2Y Receptors Mediate Contraction Induced by Electrical Field Stimulation in Feline Esophageal Smooth Muscle

  • Cho, Young-Rae;Jang, Hyeon-Soon;Kim, Won;Park, Sun-Young;Sohn, Uy-Dong
    • The Korean Journal of Physiology and Pharmacology
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    • 제14권5호
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    • pp.311-316
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    • 2010
  • It is well-known that electrical field stimulation (EFS)-induced contraction is mediated by a cholinergic mechanism and other neurotransmitters. NO, ATP, calcitonin gene-related peptide (CGRP), and substance P are released by EFS. To investigate the purinergic mechanism involved in the EFS-induced contraction, purinegic receptors antagonists were used. Suramine, a non-selective P2 receptor antagonist, reduced the contraction induced by EFS. NF023 ($10^{-7}{\sim}10^{-4}M$), a selective P2X antagonist, inhibited the contraction evoked by EFS. Reactive blue ($10^{-6}{\sim}10^{-4}M$), selective P2Y antagonist, also blocked the contraction in a dose-dependent manner. In addition, P2X agonist ${\alpha}$,${\beta}$-methylene 5'-adenosine triphosphate (${\alpha}{\beta}MeATP$, $10^{-7}{\sim}10^{-5}M$) potentiated EFS-induced contraction in a dose-dependent manner. P2Y agonist adenosine 5'-[${\beta}$-thio]diphosphate trilithium salt ($ADP{\beta}S$, $10^{-7}{\sim}10^{-5}M$) also potentiated EFS-induced contractions in a dose-dependent manner. Ecto-ATPase activator apyrase (5 and 10 U/ml) reduced EFS-induced contractions. Inversely, 6-N,$N$-diethyl-D-${\beta}$,${\gamma}$- dibromomethylene 5'-triphosphate triammonium (ARL 67156, $10^{-4}M$) increased EFS-induced contraction. These data suggest that endogenous ATP plays a role in EFS-induced contractions which are mediated through both P2X-receptors and P2Y-receptors stimulation in cat esophageal smooth muscle.

$\alpha_1$-Adrenergic Effects on Intracellular $Ca^{2+}$, Contraction and L-type $Ca^{2+}$ Current in Guinea Pig Ventricular Myocytes: Role of Protein Kinase C

  • Woo, Sun-Hee;Lee, Chin-Ok
    • 한국생물물리학회:학술대회논문집
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    • 한국생물물리학회 1997년도 학술발표회
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    • pp.27-27
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    • 1997
  • The effects of $a_1$-adrenoceptor stimulation on intracellular $Ca^{2+}$ ([C $a^{2+}$]$_{i}$ ) transient, contraction, and L-type $Ca^{2+}$ current ( $I_{Ca,L}$) were studied in single cells isolated from ventricles of guinea pig hearts. Phenylephrine, $\alpha$$_1$-adrenergic agonist, (5$\times$10$^{-5}$ ~10$^{-4}$ M) produced a biphasic pattern of inotropism: transient negative response (decrease in contraction by 23.9$\pm$2.5% of control) followed by a sustained positive response (increase in contraction by 60.0$\pm$3.4%, mean $\pm$ SD, n=12).(omitted)ted)

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카드미늄의 만성적 투여가 신경접합 전.후 ${\alpha}_2$-아드레날인 수용체에 의한 반응에 미치는 영향 (Chronic Cadmium Administration Preferentially Affects the Responsiveness Mediated by Pre- and Post-synatic ${\alpha}_2$-Adrenoceptors)

  • 홍기환;임병용;손의동
    • 대한약리학회지
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    • 제21권1호
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    • pp.27-33
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    • 1985
  • 전기자극에 의한 적출 정관의 수축 또는 뇌척수제거 흰쥐의 심박동수 증가가 카드뮴 장기투여 (매격일 $10{\mu}$ mols, 1회씩 2주간 복강내 주사)로 인하여 대조군에 비하여 현저히 항진되었다. 이러한 전기자극에 의한 반응은 ${\alpha}_2$-효현제인 clonidine에 의하여 억제 되었고, 이 억제는 ${\alpha}_2$-길항제인 yohimbine 투여로 봉쇄되었다. 나아가 methoxamine에 의한 확장 혈압의 증가는 카드뮴 투여에 의하여 영향을 받지 아니하였으나 clonidine에 의한 증가는 카드뮴 투여에 의하여 억제되었다. 이러한 결과로 보아 카드뮴 장기 노출에 의하여 시납스 전 및 후 ${\alpha}2-adrenoceptors$가 우선적으로 억제되었다고 시사되는 바이다.

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Actions of Group I Metabotropic Glutamate Receptor Agonist on Synaptic Transmission and Ionic Currents in Rat Medial Vestibular Nucleus Neurons

  • Lee, Hae-In;Chun, Sang-Woo
    • International Journal of Oral Biology
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    • 제34권4호
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    • pp.215-222
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    • 2009
  • Medial vestibular nucleus (MVN) neurons are involved in the reflex control of the head and eyes, and in the recovery of vestibular function after the formation of peripheral vestibular lesions. In our present study, whole cell patch clamp recordings were carried out on MVN neurons in brainstem slices from neonatal rats to investigate the actions of a group I metabotropic glutamate receptor (mGluR) agonist upon synaptic transmission and ionic currents. Application of the mGluR I agonist (S)-3,5- dihydroxyphenylglycine (DHPG) increased the frequency of miniature inhibitory postsynaptic currents (mIPSCs) but had no effect upon amplitude distributions. To then identify which of mGluR subtypes is responsible for the actions of DHPG in the MVN, we employed two novel subtype selective antagonists. (S)-(+)-$\alpha$-amino-a-methylbenzeneacetic acid (LY367385) is a potent competitive antagonist that is selective for mGluR1, whereas 2-methyl-6-(phenylethynyl)-pyridine (MPEP) is a potent noncompetitive antagonist of mGluR5. Both LY367385 and MPEP antagonized the DHPG-induced increase of mIPSCs, with the former being more potent. DHPG was also found to induce an inward current, which can be enhanced under depolarized conditions. This DHPG-induced current was reduced by both LY367385 and MPEP. The DHPG-induced inward current was also suppressed by the PLC blocker U-73122, the $IP_3$ receptor antagonist 2-APB, and following the depletion of the intracellular $Ca^{2+}$ pool by thapsigargin. These data suggest that the DHPG-induced inward current may be mainly regulated by the intracellular $Ca^{2+}$ store via the PLC-$IP_3$ pathway. In conclusion, mGluR I, via pre- and postsynaptic actions, may modulate the excitability of the MVN neurons.

Deficiency or activation of peroxisome proliferator-activated receptor α reduces the tissue concentrations of endogenously synthesized docosahexaenoic acid in C57BL/6J mice

  • Hsiao, Wen-Ting;Su, Hui-Min;Su, Kuan-Pin;Chen, Szu-Han;Wu, Hai-Ping;You, Yi-Ling;Fu, Ru-Huei;Chao, Pei-Min
    • Nutrition Research and Practice
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    • 제13권4호
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    • pp.286-294
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    • 2019
  • BACKGROUND/OBJECTIVES: Docosahexaenoic acid (DHA), an n-3 long chain polyunsaturated fatty acid (LCPUFA), is acquired by dietary intake or the in vivo conversion of ${\alpha}$-linolenic acid. Many enzymes participating in LCPUFA synthesis are regulated by peroxisome proliferator-activated receptor alpha ($PPAR{\alpha}$). Therefore, it was hypothesized that the tissue accretion of endogenously synthesized DHA could be modified by $PPAR{\alpha}$. MATERIALS/METHODS: The tissue DHA concentrations and mRNA levels of genes participating in DHA biosynthesis were compared among $PPAR{\alpha}$ homozygous (KO), heterozygous (HZ), and wild type (WT) mice (Exp I), and between WT mice treated with clofibrate ($PPAR{\alpha}$ agonist) or those not treated (Exp II). In ExpII, the expression levels of the proteins associated with DHA function in the brain cortex and retina were also measured. An n3-PUFA depleted/replenished regimen was applied to mitigate the confounding effects of maternal DHA. RESULTS: $PPAR{\alpha}$ ablation reduced the hepatic Acox, Fads1, and Fads2 mRNA levels, as well as the DHA concentration in the liver, but not in the brain cortex. In contrast, $PPAR{\alpha}$ activation increased hepatic Acox, Fads1, Fads2, and Elovl5 mRNA levels, but reduced the DHA concentrations in the liver, retina, and phospholipid of brain cortex, and decreased mRNA and protein levels of the brain-derived neurotrophic factor in brain cortex. CONCLUSIONS: LCPUFA enzyme expression was altered by $PPAR{\alpha}$. Either $PPAR{\alpha}$ deficiency or activation-decreased tissue DHA concentration is a stimulus for further studies to determine the functional significance.