• Title/Summary/Keyword: ${\beta}$-adrenoceptor

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Capsanthin Inhibits both Adipogenesis in 3T3-L1 Preadipocytes and Weight Gain in High-Fat Diet-Induced Obese Mice

  • Jo, Sung Jun;Kim, Jeung Won;Choi, Hye Ok;Kim, Jung Hwan;Kim, Hyung Joong;Woo, Sun Hee;Han, Byung Hoon
    • Biomolecules & Therapeutics
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    • v.25 no.3
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    • pp.329-336
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    • 2017
  • Adipogenesis in murine preadipocyte 3T3L-1 has been used as a model system to study anti-obese bioactive molecules. During adipogenesis in 3T3-L1 preadipocytes, we found that capsanthin inhibited adipogenesis ($IC_{50}$; $2.5{\mu}M$) and also showed lipolytic activity in differentiated adipocytes from the preadipocytes ($ED_{50}$; 872 nM). We identified that the pharmacological activity of capsanthin on adipogenesis in 3T3-L1 was mainly due to its adrenoceptor-${\beta}_2$-agonistic activity. In high-fat diet animal model study, capsanthin significantly enhanced spontaneous locomotive activities together with progressive weight-loss. The capsanthin-induced activation of kinetic behavior in mice was associated with the excessive production of ATP initiated by both the enhanced lipolytic activity together with accelerated oxidation of fatty acids due to the adrenoceptor ${\beta}_2$-agonistic activity of capsanthin. Capsanthin also dose-dependently increased adiponectin and p-AMPK activity in high fat diet animals, suggesting that capsanthin has both anti-obesity and insulin sensitizing activities.

Phosphatidylinositol 3-kinase functionally compartmentalizes the concurrent $G_s$ signaling during $\beta_2$-adrenergic stimulation

  • Jo, Su-Hyun
    • Proceedings of the Korean Biophysical Society Conference
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    • 2003.06a
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    • pp.29-29
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    • 2003
  • Compartmentation of intracellular signaling pathways serves as an important mechanism conferring the specificity of G protein-coupled receptor (GPCR) signaling. In the heart, stimulation of $\beta$$_2$-adrenoceptor ($\beta$$_2$-AR), a prototypical GPCR, activates a tightly localized protein kinase A (PKA) signaling, which regulates substrates at cell surface membranes, bypassing cytosolic target proteins (eg, phospholamban). Although a concurrent activation of $\beta$$_2$-AR-coupled $G_{i}$ proteins has been implicated in the functional compartmentation of PKA signaling, the exact mechanism underlying the restriction of the $\beta$$_2$-AR-PKA pathway remains unclear. In the present study, we demonstrate that phosphatidylinositol 3-kinase (PI3K) plays an essential role in confining the $\beta$$_2$-AR-PKA signaling. Inhibition of PI3K with LY294002 or wortmannin enables $\beta$$_2$-AR-PKA signaling to reach intracellular substrates, as manifested by a robust increase in phosphorylation of phospholamban, and markedly enhances the receptor-mediated positive contractile and relaxant responses in cardiac myocytes. These potentiating effects of PI3K inhibitors are not accompanied by an increase in $\beta$$_2$-AR-induced cAMP formation. Blocking $G_{i}$ or $G_{$\square$$\square$}$ signaling with pertussis toxin or $\beta$ARK-ct, a peptide inhibitor of $G_{$\square$$\square$}$, completely prevents the potentiating effects induced by PI3K inhibition, indicating that the pathway responsible for the functional compartmentation of $\beta$$_2$-AR-PKA siglaling sequentially involves $G_{i}$, $G_{$\square$$\square$}$, and PI3K. Thus, PI3K constitutes a key downstream event of $\beta$$_2$-AR- $G_{i}$ signaling, which confines and negates the concurrent $\beta$$_2$-AR/Gs-mediated PKA signaling.gnaling.

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Effects of sympathomimetics on motility in the longitudinal muscle of the cattle rumen (소(牛)의 제1위 종주근 운동성에 대한 교감신경계 약물의 효과)

  • Lim, Hyung-ju;Han, Ho-jae;Han, Bang-keun
    • Korean Journal of Veterinary Research
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    • v.34 no.3
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    • pp.479-486
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    • 1994
  • Effects of catecholamines and the site of receptor of catecholamines were investigated in the longitudinal muscle of the rumen. In order to this experiment, specimens were obtained from 35 Korean Native Cattles, 2-3 years old, in the Kwang-ju area slaughterhouse. Longitudinal muscle strips of rumen were made from sample, and then measured the isometric contraction with physiograph in $37{^{\circ}C}$ organ bath. The results were summarized as follows. 1. 30% of all strips showed rhythmic contraction after short incubation time. 2. Relaxation produced by catecholamines in this preparations increased in a dose-dependant manner. 3. Isoproterenol(${\beta}$-agonist) caused relaxation, but phenylephrine(${\alpha}_1$-agonist) and xylazine(${\alpha}_2$-agonist) were unaffected. 4. The relaxation induced by epinephrine and norepinephrine were not affected by phentolamine(${\alpha}$-blocker) and prazosin(${\alpha}_1$-blocker), yohimbine(${\alpha}_2$-blocker). But propranolol(${\beta}$-antagonist) abolished the effect of catecholamines on relaxation. 5. It is concluded that catecholamines produced relaxation in the longitudinal muscle of rumen via the ${\beta}$-adrenoceptor.

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Localization of adrenergic receptors in bovine esophageal groove (소(牛) 식도구 평활근의 Adrenergic receptor 존재부위에 관한 연구)

  • Kang, Tong-mook;Cho, Je-yoel;Park, Jun-hong;Yang, Il-suk
    • Korean Journal of Veterinary Research
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    • v.33 no.4
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    • pp.617-622
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    • 1993
  • The preliminary studies on the localization of adrenoceptors were performed on smooth muscle strips of bovine esophageal groove. The mechanical activity of the muscle strip was recorded isometrically in vitro.w In the bottom circular muscle strips. the excitatory ${\alpha}-adrenergic$ responses were not blocked by tetrodotoxin$(2.1{\times}10^{-6}M)$ and denervation which was carried by cold storage of strips for 48 hrs in Tyrode's solution at $5-6{^{\circ}C}$ without oxygen supply. These excitatory ${\alpha}-adrenergic$ responses were partially blocked by atropine. In the lip longitudinal muscle strips, the inhibitory${\beta}-adrenergic$ responses were not blocked by pretreatment of tetrodotoxin and atropine. The results suggest that ${\beta}-adrenergic$ receptors mediating relaxations are located on the postsynaptic smooth muscle cells, whereas ${\beta}-adrenergic$ receptors mediating contractions are located both in the smooth muscle cells and in the cholinergic neurones.

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Effect of Calcium Antagonists on the Cardiac ${\beta}$-Adrenergic Receptors (칼슘 길항제가 심장 ${\beta}$-Adrenergic Receptors에 미치는 영향)

  • 이신웅;김정구
    • Biomolecules & Therapeutics
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    • v.1 no.1
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    • pp.1-8
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    • 1993
  • It has been known that calcium antagonists also inhibit the radioligand binding to muscarinic and $\alpha$-adrenergic receptors and, in case of verapamil, these inhibitions may play a role in the effects of verapamil on the heart. In this study, the effects of nicardipine, nifedipine, nimodipine, diltiazem and verapamil on the binding of [$^3H$]dihydroalprenolol (DHA) to dog cardiac ${\beta}$-adrenergic receptors were examined. A single uniform [$^3H$]DHA binding site ($K_D/= 5nM\;and\;B_{max}=2600$ fmol/mg protein) was identified in dog cardiac sarcolemma. [$^3H$]DHA binding was not affected by the usual therapeutic concentrations of these calcium antagonists (nanomolar range) but in the "nonspecific"concentration ranges ($28-180{\mu}m$) these drugs inhibited [$^3H$]DHA binding to $\beta$-adrenergic receptors. Nicardipine, nifedipine, nimodipine and diltiazem competed for [$^3H$]DHA binding to ${\beta}$-adrenergic receptors with dissociation constants ($K_i$) of $28{\mu}m,\' 74{\mu}m, 39{\mu}m \;and \;35{\mu}m,$ respectively. Verapamil ($K_i=176.5 {\mu}m$) was less potent inhibitor than other drugs and this inhibition was noncompetitive; the maximal binding capacity ($B_{max}$) $300 {\mu}m$ verapamil without change in the apparent dissociation constant (4K_D$) for DHA. These results indicate that the inhibitory action of calcium antagonists at high concentrations on ${\beta}$-adrenergic receptors is not involved in the therapeutic effects of these drugs by the calcium channel blocking action.

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Recent Progress in Understanding the Conformational Mechanism of Heterotrimeric G Protein Activation

  • Nguyen, Minh Duc;Kim, Hee Ryung;Chung, Ka Young
    • Biomolecules & Therapeutics
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    • v.25 no.1
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    • pp.4-11
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    • 2017
  • Heterotrimeric G proteins are key intracellular coordinators that receive signals from cells through activation of cognate G protein-coupled receptors (GPCRs). The details of their atomic interactions and structural mechanisms have been described by many biochemical and biophysical studies. Specifically, a framework for understanding conformational changes in the receptor upon ligand binding and associated G protein activation was provided by description of the crystal structure of the ${\beta}2$-adrenoceptor-Gs complex in 2011. This review focused on recent findings in the conformational dynamics of G proteins and GPCRs during activation processes.

The Pharmacology and the Clinical Use of Selective Serotonin Reuptake Inhibitors (세로토닌 재흡수억제제의 약리학과 임상적용)

  • Lee, Min-Soo;Kim, Pyo-Han
    • Korean Journal of Biological Psychiatry
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    • v.2 no.2
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    • pp.205-217
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    • 1995
  • In comparison with tricyclic antidepressants(TCAs), one of the most interesting characteristics of selective serotonin reuptake inhibitors(SSRIs) is its structural differences, reveals different pharmacological properties. The applications at the moment are most effective in clinical applications to depression. The limited result of the research to date on the various applications of SSRIs has not revealed the total potential and applicability of SSRIs. Therefore, attending physicians utilizing SSRIs do not know the full capabilities of the drug on patients and what the patients may reap in terms of benefit from its curing elements. Physicians must first try to understand the full potential of SSRIs and its potential applications for it to be effective on patients. recently, it has been determined that SSRIs and other drugs when administered together may be more effective in the healing process because SSRIs complements and aids in the enhancement and effect of the other drugs. This article is written to give attention to the reader of the pharmacological properties and the clinical use of SSRIs. It is the authors's hope that continuous research on the particular aspects of SSRIs can aid the clinicians in the use of this SSRIs.

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Association Between $\beta_2$ Adrenoceptor Polymorphisms and Atopy/serum IgE in Asthmatic Patients ($\beta_2$ 교감신경 수용체 다형성이 아토피 및 혈청 IgE에 미치는 영향)

  • Lee, Sin-Hyung;Shim, Jae-Jeong;Kang, Yong-Koo;Jeong, Hye-Cheol;Kim, Kyung-Kyu;Kwon, Young-Hwan;Kim, Je-Hyeong;Lee, Sung-Yong;Lee, So-Ra;Lee, Sang-Youb;Cho, Jae-Youn;In, Kwang-Ho;Yoo, Sa-Hwa;Kang, Kyung-Ho
    • Tuberculosis and Respiratory Diseases
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    • v.46 no.6
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    • pp.826-835
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    • 1999
  • Background : The $\beta_2$ adrenergic receptor ($\beta_2$ AR) polymorphisms occurring at amino acid position 16 (Arg to Gly), 27 (Gln to Glu), 34 (Val to Met), and 164 (Thr to Ile) are known to be functionally relevant and also disease-modifying in subjects with asthma. However the contribution of these polymorphisms to the development of the asthmatic phenotype or other markers for allergic disease remains to be established. Methods : 109 patients with bronchial asthma and 42 healthy person were included. Serum total IgE, allergen specific IgE, and skin prick test were performed to all of the subjects. $\beta_2$ AR polymorphisms were checked by mutated allele specific amplification (MASA) method. Results : The results were as follows. The frequencies of $\beta_2$ AR polymorphisms in asthmatic patients and healthy person were not statistically different(p>0.05). There was no association between $\beta_2$ AR polymorphisms of amino acid position 16, 27, 34 and the existence of atopy among asthmatic patients(p>0.05). Between asthmatic patients with or without elevated IgE level and $\beta_2$ AR polymorphisms of amino acid position 16, 27, 34, there was no statistically significant association(p>0.05). Conclusion : There was no difference in frequency of the $\beta_2$ AR polymorphism between asthmatic patients and healthy person. In the bronchial asthma, association of $\beta_2$ AR polymorphism and atopy/serum total IgE was not found.

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Buspirone-induced Prolactin Secretion in Man is Not $5-HT_{1A}$ Receptor Mediated: Effect of Pindolol Pretreatment (Buspirone-induced Prolaction 분비와 $5-HT_{1A}$ 수용체: Pindolol 전처치 효과)

  • Lee, Hong-Shick;Nash, J. Frank;Meltzer, Herbert Y.
    • The Korean Journal of Pharmacology
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    • v.28 no.1
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    • pp.19-25
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    • 1992
  • The effect of the nonbenzodiazepine anxiolytic, buspirone $(Buspar^R)$, a serotonin $(5-HT)_{1A}$ partial agonist, which also has dopamine $(DA)_2$ receptor antagonist properties, on prolactin and cortisol secretion was examined in eight normal male volunteers. The oral administration of buspirone (30 mg) significantly increased plasma prolactin concentrations but did not significantly increase plasma cortisol concentrations in this study. The oral administration of pindolol (30 mg), a beta adrenoceptor antagonist which is also a $5-HT_{1A}$ receptor antagonist, had no significant effect on basal prolactin or cortisol levels. Moreover, pretreatment with pindolol did not significantly inhibit the buspirone-induced increase in prolactin secretion. These preliminary data are suggestive that buspirone-induced prolactin secretion is not mediated via $5-HT_{1A}$ receptor activation.

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Excitatory Influences of Noradrenaline on the Spontaneous Contractions and Electrical Activity of Antral Circular Muscle of the Guinea-pig Stomach

  • Lee, Taik-Jong;Kim, Jin-Hwan;Kim, Ki-Whan
    • The Korean Journal of Physiology
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    • v.25 no.2
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    • pp.147-158
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    • 1991
  • The effects of noradrenaline on the spontaneous contraction recorded from a strip of mucosa-free antral circular muscle were studied in the guinea-pig stomach, and the changes in slow waves and membrane resistance were analyzed in order to elucidate the mechanism for the excitatory response to noradrenaline. Electrical responses of circular muscle cells were recorded using glass microelectrodes filled with 3 M KCI. Electrotonic potentials were produced to estimate membrane resistance by the partition stimulating method. All experiments were performed in tris-buffered Tyrode solution which was aerated with 100% $O_2$ and kept at $35^{\circ}C$. The results obtained were as follows: 1) The spontaneous contractions were potentiated dose-dependently by the application of noradrenaline. 2) Through the experiments using adrenoceptor-blockers, the strong excitatory effect via $[\alpha}-adrenoceptors$ and the weak inhibitory efffect via ${\beta}-adrenoceptors$ were noted. 3) Noradrenaline produced hyperpolarization of membrane potential, and increases in the amplitude and the maximum rate of rise of slow waves. 4) In the presence of apamin, Ca-dependent K channel blocker, the characteristic hyperpolarization was not developed. However, the excitatory effect of noradrenaline on spontaneous contraction remained. 5) Membrane resistance was reduced during the hyperpolarized state by the application of noradrenaline, and the change of membrane resistance and the hyperpolarized state were completely abolished by apamin. From the above results, following conclusions could be made: Excitatory responses to noradrenaline result from the dominant ${\alpha}-excitatory$, and the weak ${\beta}-inhibitory$ action of noradrenaline. Hyperpolarization of membrane potential by noradrenaline is due to the activation of Ca-dependent K channel.

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