• 제목/요약/키워드: specific inhibitor

검색결과 747건 처리시간 0.03초

The Uptake of 2-deoxy-D-glucose (2dGlc) by the Endogenous Sugar Transporter(s) of Spodoptera frugiperda Clone 21-AE Cells and the Inhibition of 2dGIc Transport in the Insect Cells by Fructose and Cytoc halasin B

  • Lee, Chong-Kee
    • 대한의생명과학회지
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    • 제9권4호
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    • pp.177-181
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    • 2003
  • The baculovirus/Spodoptera frugiperda (Sf) cell system has become popular for the production of large amounts of the human erythrocyte glucose transporter, GLUT1, heterologously. However, it was not possible to show that the expressed transporter in insect cells could actually transport glucose. The possible reason for this was that the activity of the endogenous insect glucose transporter was extremely high and so rendered transport activity resulting from the expression of exogenous transporter very difficult to detect. Sf21-AE cells are commonly employed as the host permissive cell line to support the baculovirus AcNPV replication and protein synthesis. The cells grow well on TC-100 medium that contains 0.1 % D-glucose as the major carbon source, strongly suggesting the presence of endogenous glucose transporters. However, unlike the human glucose transporter, very little is known about properties of the endogenous sugar transporter(s) in insect cells. Thus, the uptake of 2-deoxy-D-glucose (2dGlc) by Sf21-AE cells and the inhibition of 2dGlc transport in the insect cells by fructose and cytochalasin B were investigated in the present work. The binding assay of cytochalasin B was also performed, which could be used as a functional assay for the endogenous glucose transporter(s) in the insect cells. Sf21-AE cells were infected with the recombinant virus AcNPV-GT or no virus, at a multiplicity of infection (MOI) of 5. Infected cells were resuspended in PBS plus and minus 300 mM fructose, and plus and minus 20 $\mu$M cytochalasin B for use in transport assays. Uptake was measured at 28$^{\circ}C$ for 1 min, with final concentration of 1 mM deoxy-D-glucose, 2-[1,2-$^3$H]- or glucose, L-[l,$^3$H]-, used at a specific radioactivity of 4 Ci/mol. The results obtained demonstrated that the sugar uptake in uninfected cells was stereospecific, and was strongly inhibited by fructose but only poorly inhibitable by cytochalasin B. It is therefore suggested that the Sf21-AE glucose transporter has very low affinity for cytochalasin B, a potent inhibitor of human erythrocyte glucose transporter.

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사람 골육종 세포 Saos2에서 아미노산 수송계 L의 발현 및 기능적 특성 (EXPRESSION AND FUNCTIONAL CHARACTERIZATION OF AMINO ACID TRANSPORT SYSTEM L IN SAOS2 HUMAN OSTEOGENIC SARCOMA CELLS)

  • 김수관;김현호;김창현;김도경
    • Journal of the Korean Association of Oral and Maxillofacial Surgeons
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    • 제32권3호
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    • pp.200-208
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    • 2006
  • Amino acids are required for protein synthesis and energy sources in all living cells. The amino acid transport system L is a major nutrient transport system that is responsible for $Na^+$-independent transport of neutral amino acids including several essential amino acids. In malignant tumors, the L-type amino acid transporter 1 (LAT1), the first isoform of system L, is highly expressed to support tumor cell growth. In the present study, the expression and functional characterization of amino acid transport system L were, therefore, investigated in Saos2 human osteogenic sarcoma cells. RT-PCR and western blot analyses have revealed that the Saos2 cells expressed the LAT1 and the L-type amino acid transporter 2 (LAT2), the second isoform of system L, together with their associating protein heavy chain of 4F2 antigen (4F2hc) in the plasma membrane, but the expression of LAT2 was very weak. The uptakes of [${14}^C$]L-leucine by Saos2 cells were $Na^+$-independent and were completely inhibited by the system L selective inhibitor, 2-aminobicyclo-(2,2,1)-heptane-2-carboxylic acid (BCH). The affinity of [${14}^C$]L-leucine uptake and the inhibition profiles of [${14}^C$]L-leucine uptake by various amino acids in the Saos2 cells were comparable with those for the LAT1 expressed in Xenopus oocytes. The majority of [${14}^C$]L-leucine uptake is, therefore, mediated by LAT1 in the Saos2 cells. These results suggest that the transports of neutral amino acids including several essential amino acids into Saos2 human osteogenic sarcoma cells are for the most part mediated by LAT1. Therefore, the Saos2 human osteogenic sarcoma cells are excellent tools for examine the properties of LAT1. Moreover, the specific inhibition of LAT1 in tumor cells might be a new rationale for anti-tumor therapy.

토마토 추출액 복합체가 전립선 암 세포와 전립선 비대증에 미치는 영향 (The Effect of the Compound of Tomato Extract to the Prostatic Cancer Cell and the Prostate of the Rat Model of Benign Prostatic Hyperplasia)

  • 강한샘;김광윤;정일;오성덕;김창훈;심봉섭;박근형;오석중
    • 생약학회지
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    • 제38권2호통권149호
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    • pp.197-203
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    • 2007
  • Benign prostatic hyperplasia (BPH) is one of the common disease in elderly men. Recently old-age population is increased and we are growing more and more interested in clinical importance of BPH. In this study, the effect of PLX, which was the mixture of tomato extract (including 2% of lycopene) and chitooligosaccharide, on prostatic cancer cell and testosterone-induced BPH in adult rats of the Sprague Dawley strain was determined. The cell viability was evaluated by MTT method using L929 and LNCaP cell line, pretreated with various concentrations of PLX. The expression of prostatic specific antigen (PSA) and 5${\alpha$}$-reductase genes were evaluated by realtime PCR using LNCaP cell line and compared various concentrations of PLX with 50 ${\mu}$M of finasteride. An experimental prostatic hyperplasia was induced in male Sprague Dawley rats by giving testosterone for 8 weeks. After 2 weeks from start of giving testosterone, PLX and finasteride were administered orally once a day. The results were analyzed with prostate weight per body weight at 8 weeks. Cell viability of L929 cell line decreased specifically at the concentration of 2000 ${\mu}$g/mf of PLX. The cytotoxicity of PLX to the LNCaP cell line was shown at above 500 ${\mu}$g/ml of PLX. The inhibitory effect of PLX to the expression of PSA and 5${\alpha$}$-reductase genes in LNCaP cell line increased with the concentration of PLX. In vivo study, the results of PLX and finasteride administered group were 3.75${\pm}$0.60 and 3.49${\pm}$0.49 prostate weight ${\times}10^3$/body weight, which were lower than the result of BPH induced group (4.74${\pm}$0.58). These results suggested that PLX may be an effective material in BPH by having the role of the 5a-reductase inhibitor.

Expression of peroxisome proliferator activated receptor gamma in the neuronal cells and modulation of their differentiation by PPAR gamma agonists

  • Hong, Jin-Tae
    • 한국환경성돌연변이발암원학회:학술대회논문집
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    • 한국환경성돌연변이발암원학회 2002년도 Molecular and Cellular Response to Toxic Substances
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    • pp.14-40
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    • 2002
  • 15-Deoxy-${\Delta}^{12, 14}$-prostaglandin $J_2$ (15-deoxy-$PGJ_2$), a naturally occurring ligand activates the peroxisome proliferator-activated $receptor-{\gamma}(PPAR-{\gamma}$). Activation of $PPAR-{\gamma}$ has been found to induce cell differentiation such as adipose cell and macrophage. Here it was investigated whether 15-deoxy-$PGJ_2$ has neuronal cell differentiation and possible underlying molecular mechanisms. Dopaminergic differentiating PC 12 cells treated with 15-deoxy-$PGJ_2$ (0.2 to 1.6 ${\mu}M$) alone showed measurable neurite extension and expression of neurofilament, markers of cell differentiation. However much greater extent of neurite extension and expression of neurofilament was observed in the presence of NGF (50 ng/ml). In parallel with its increasing effect on the neurite extension and expression of neurofilament, 15-deoxy-$PGJ_2$ enhanced NGF-induced p38 MAP kinase expression and its phosphorylation in addition to the activation of transcription factor AP-1 in a dose dependent manner. Moreover, pretreatment of SD 203580, a specific inhibitor of p38 MAP kinase inhibited the promoting effect of 15-deoxy-$PGJ_2$(0.8 ${\mu}M$) on NGF-induced neurite extension. This inhibition correlated well with the ability of SB203580 to inhibit the enhancing effect of 15-deoxy-$PGJ_2$ on the expression of p38 MAP kinase and activation of AP-1, The promoting ability of 15-deoxy-$PGJ_2$ did not occur through $PPAR-{\gamma}$, as synthetic PPAR-${\gamma}$ agonist andantagonist did not change the neurite promoting effect of 15-deoxy-PGJ$_2$. In addition, contrast to other cells (embryonic midbrain and SK-N-MC cells), $PPAR-{\gamma}$ was not expressed in PC-12 cells. Other structure related prostaglandins, PGD$_2$ and $PGE_2$ acting via a cell surface G-protein-coupled receptor (GPCR) did not increase basal or NGF-induced neurite extension. Moreover, GPCR (EP and DP receptor) antagonists did not alter the promoting effect of f 5-deoxy-$PGJ_2$ on neurite extension and activation of p38 MAP kinase, suggesting that the promoting effect of 15-deoxy-$PGJ_2$ may not be mediated GPCR. These data demonstrate that activation of p38 MAP kinase in conjunction with AP-1 single pathway may be important in the promoting activity of 15-deoxy-$PGJ_2$ cells.

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Action and Signaling of Lysophosphatidylethanolamine in MDA-MB-231 Breast Cancer Cells

  • Park, Soo-Jin;Lee, Kyoung-Pil;Im, Dong-Soon
    • Biomolecules & Therapeutics
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    • 제22권2호
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    • pp.129-135
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    • 2014
  • Previously, we reported that lysophosphatidylethanolamine (LPE), a lyso-type metabolite of phosphatidylethanolamine, can increase intracellular $Ca^{2+}$ ($[Ca^{2+}]_i$) via type 1 lysophosphatidic acid (LPA) receptor ($LPA_1$) and CD97, an adhesion G-protein-coupled receptor (GPCR), in MDA-MB-231 breast cancer cells. Furthermore, LPE signaling was suggested as like $LPA_1/CD97-G_{i/o}$ proteins-phospholipase $C-IP_3-Ca^{2+}$ increase in these cells. In the present study, we further investigated actions of LPE not only in the $[Ca^{2+}]_i$ increasing effect but also in cell proliferation and migration in MDA-MB-231 breast cancer cells. We utilized chemically different LPEs and a specific inhibitor of $LPA_1$, AM-095 in comparison with responses in SK-OV3 ovarian cancer cells. It was found that LPE-induced $Ca^{2+}$ response in MDA-MB-231 cells was evoked in a different manner to that in SK-OV3 cells in terms of structural requirements. AM-095 inhibited LPE-induced $Ca^{2+}$ response and cell proliferation in MDA-MB-231 cells, but not in SK-OV3 cells, supporting $LPA_1$ involvement only in MDA-MB-231 cells. LPA had significant effects on cell proliferation and migration in MDA-MB-231 cells, whereas LPE had less or no significant effect. However, LPE modulations of MAPKs (ERK1/2, JNK and p38 MAPK) was not different to those by LPA in the cells. These data support the involvement of LPA1 in LPE-induced $Ca^{2+}$ response and cell proliferation in breast MDA-MB-231 cells but unknown GPCRs (not $LPA_1$) in LPE-induced responses in SK-OV3 cells. Furthermore, although LPE and LPA utilized $LPA_1$, LPA utilized more signaling cascades than LPE, resulting in stronger responses by LPA in proliferation and migration than LPE in MDA-MB-231 cells.

KGN(난소과립세포)에서 BCL2L10 단백질의 세포사멸 유도 기능 연구 (BCL2L10 Protein Induces Apoptosis in KGN-Human Granulosa Cells)

  • 김재홍;이경아;배지현
    • 한국발생생물학회지:발생과생식
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    • 제15권2호
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    • pp.113-120
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    • 2011
  • BCL-2 family 단백질들은 세포사멸 신호전달 체계에서 중추적인 역할을 수행하는 것으로 알려져 있으며, BCL2L10 단백질은 그 중 하나로 세포의 사멸과 생존을 조절하는 것으로 알려져 있다. 특이하게도 BCL2L10 단백질은 세포 또는 조직 특이적으로 서로 상반되는 친 세포사멸 또는 항 세포사멸 효과가 각각 보고되어 있다. 현재까지 난소세포에서의 BCL2L10의 발현 여부 및 기능은 알려져 있지 않다. 따라서 본 연구에서 인간 난소 과립세포주인 KGN 세포에서의 BCL2L10 단백질의 발현 여부를 확인한 결과, 상당한 양의 단백질이 발현함을 확인할 수 있었으며, 또한 세포사멸효과를 확인하기 위해서 BCL2L10 단백질을 dose-dependent하게 과발현시킨 후 세포의 생존에 미치는 영향을 분석한 결과,BCL2L10은 KGN 세포에서 과발현 시 세포사멸을 유도함을 관찰하였다. BCL2L10 단백질을 과발현 시 Caspase 9와 3를 활성화 하였으며, 면역염색법을 통해서 BCL2L10 단백질이 미토콘드리아에 위치하는 것을 확인하였다. 또한 BCL2L10단백질의 과발현에 의해 미토콘드리아에서 cytochrome c가 세포질로 분비되는 것을 확인하였다. 이상의 결과로서 본 연구는 BCL2L10의 과발현이 KGN 세포에서 세포사멸을 유도하고, 또한 미토콘드리아에 위치하여 세포질로 cytochrome c를 분비하여 Caspase 9와 3을 활성화 시키는 메커니즘으로 세포사멸을 유도함을 확인하였다. 이러한 연구결과는 BCL2L10단백질이 인간 난소과립세포의 생존과 사멸을 조절하는 인자임을 최초로 규명한 것으로서, 추후 난소에서의 BCL2L10단백질의 생리적인 기능 및 신호 조절 연구의 기반 데이터로서 그 의의가 있으며 활용될 수 있다.

Proteomic Profiles of Mouse Neuro N2a Cells Infected with Variant Virulence f Rabies Viruses

  • Wang, Xiaohu;Zhang, Shoufeng;Sun, Chenglong;Yuan, Zi-Guo;Wu, Xianfu;Wang, Dongxia;Ding, Zhuang;Hu, Rongliang
    • Journal of Microbiology and Biotechnology
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    • 제21권4호
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    • pp.366-373
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    • 2011
  • We characterized the proteomes of murine N2a cells following infection with three rabies virus (RV) strains, characterized by distinct virulence phenotypes (i.e., virulent BD06, fixed CVS-11, and attenuated SRV9 strains), and identified 35 changes to protein expression using two-dimensional gel electrophoresis in whole-cell lysates. The annotated functions of these proteins are involved in various cytoskeletal, signal transduction, stress response, and metabolic processes. Specifically, a-enolase, prx-4, vimentin, cytokine-induced apoptosis inhibitor 1 (CIAPIN1) and prx-6 were significantly up-regulated, whereas Trx like-1 and galectin-1 were down-regulated following infection of N2a cells with all three rabies virus strains. However, comparing expressions of all 35 proteins affected between BD06-, CVS-11-, and SRV9-infected cells, specific changes in expression were also observed. The up-regulation of vimentin, CIAPIN1, prx-4, and 14-3-3 ${\theta}/{\delta}$, and down-regulation of NDPK-B and HSP-1 with CVS and SRV9 infection were ${\geq}2$ times greater than with BD06. Meanwhile, Zfp12 protein, splicing factor, and arginine/serine-rich 1 were unaltered in the cells infected with BD06 and CVS-11, but were up-regulated in the group infected with SRV9. The proteomic alterations described here may suggest that these changes to protein expression correlate with the rabies virus' adaptability and virulence in N2a cells, and hence provides new clues as to the response of N2a host cells to rabies virus infections, and may also aid in uncovering new pathways in these cells that are involved in rabies infections. Further characterization of the functions of the affected proteins may contribute to our understanding of the mechanisms of RV infection and pathogenesis.

의사독성농도 (CPT) 개념을 도입한 활성슬러지 공정 pH 저해 모델 개발 (Development of the pH Inhibition Model Adapting Pseudo Toxic Concentration (CPT) Concept for Activated Sludge Process)

  • 고주형;장원호;임정훈;우혜진;김창원
    • 대한환경공학회지
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    • 제22권11호
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    • pp.2037-2046
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    • 2000
  • 산성 혹은 염기성 pH가 활성슬러지 공정에 미치는 저해 작용은 비경쟁적 저해 동력학(noncompetitive inhibition kinetics)을 따르는 것으로 알려져 있으나, pH를 저해 물질의 농도항으로 정량화하기 어렵기 때문에 실질적으로 비경쟁적 저해 동력학식(noncompetitive inhibition kinetic equation)으로 해석하기 어렵다. 따라서 pH에 의한 저해 작용을 기술하는 경험식들이 여러 연구자들에 의해 개발되어 왔는데, 이들은 주로 산성 조건에 대해서만 적용 가능한 것들이다. 본 연구에서는 의사독성농도(pseudo toxic concentration, $C_{PT}$) 개념을 이용하여 pH가 활성슬러지 공정에 미치는 저해 영향을 정량화하는 기법을 개발하였고, 기존에 알려진 모델들과 비교하였다. 그 결과 $C_{PT}$ 개념을 이용한 모델은 넓은 범위의 pH에 대해 최대비성장속도(${\mu}_{max}$)의 감소를 비교적 정확하게 예측할 수 있었고, 같은 동력학식을 이용하여 산성 조건뿐만 아니라 염기성 조건에 대해서도 적용 가능한 것으로 나타났다. 또한 저해계수(inhibition coefficient. $K_I$)의 추정이 간단하다는 장점이 있다.

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ATP-Sensitive $K^+$ Currents in Gastric Myocytes Isolated from Guinea-pig

  • Jun, Jae-Yeoul;Yeum, Cheol-Ho;Yun, Pyung-Jin;Park, Jong-Seong;Kim, Sung-Joon;So, In-Suk;Kim, Ki-Whan
    • The Korean Journal of Physiology and Pharmacology
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    • 제2권1호
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    • pp.85-93
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    • 1998
  • ATP-sensitive $K^+$ channels ($K_{ATP}$) were not identified in gastric smooth muscle cells. However, in tension recording of intact gastric circular muscle, lemakalim of $K_{ATP}$ channels opener in other tissues suppressed mechanical contractions and this effect was blocked by glibenclamide, a specific inhibitor of $K_{ATP}$ channels. The aims of this study were to investigate whether $K_{ATP}$ channels exist in gastric smooth muscle of guinea-pig and to know its physiological role. Whole cell $K^+$ currents activated by lemakalim were recorded from freshly isolated cells with a 0.1 mM ATP, 140 mM KCl pipette solutions. Lemakalim (10 ${\mu}M$) increased inward currents of $-224{\pm}34$ pA (n=13) at -80 mV of holding potential in bath solution contained 90 mM $K^+$. Bath-applied glibenclamide (10 ${\mu}M$) inhibited the lemakalim-activated inward currents by $91{\pm}6%$ (n=5). These lemakalim-activated inward currents were reduced by increased intracellular ATP from 0.1 to 3 mM ($-41{\pm}12$ pA) (n=5). The reversal potential of the glibenclamide- sensitive inward currents was $-5.2{\pm}2.4$ mV (n=3) in external 90 mM $K^+$ and shifted to $-14.8{\pm}3.6$ mV (n=3) in external 60 mM $K^+$, which close to equilibrium potential of $K^+$ ($E_K$). External barium and cesium inhibited the lemakalim-activated inward currents dose-dependently. The half-inhibitory dose ($IC_{50}$) of barium and cesium were 2.3 ${\mu}M$ (n=5) and 0.38 mM (n=4), respectively. 10 mM tetraethylammonium (TEA) also inhibited the lemakalim-activated inward currents by $66{\pm}15%$ (n=5). Both substance P (SP) (5 ${\mu}M$) and acetylcholine (ACh) (5 ${\mu}M$) inhibited lemakalim-activated inward currents. These results suggest that $K_{ATP}$ channels exist in the gastric smooth muscle and its modulation by neurotransmitters may play an important role in regulating gastric motility.

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A Novel Pathway Underlying the Inhibitory Effects of Melatonin on Isolated Rat Urinary Bladder Contraction

  • Han, June-Hyun;Chang, In-Ho;Myung, Soon-Chul;Lee, Moo-Yeol;Kim, Won-Yong;Lee, Seo-Yeon;Lee, Shin-Young;Lee, Seung-Wook;Kim, Kyung-Do
    • The Korean Journal of Physiology and Pharmacology
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    • 제16권1호
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    • pp.37-42
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    • 2012
  • The aim of the present study was to elucidate the direct effects of melatonin on bladder activity and to determine the mechanisms responsible for the detrusor activity of melatonin in the isolated rat bladder. We evaluated the effects of melatonin on the contractions induced by phenylephrine (PE), acetylcholine (ACh), bethanechol (BCh), KCl, and electrical field stimulation (EFS) in 20 detrusor smooth muscle samples from Sprague-Dawley rats. To determine the mechanisms underlying the inhibitory responses to melatonin, melatonin-pretreated muscle strips were exposed to a calcium channel antagonist (verapamil), three potassium channel blockers [tetraethyl ammonium (TEA), 4-aminopyridine (4-AP), and glibenclamide], a direct voltage-dependent calcium channel opener (Bay K 8644), and a specific calcium/calmodulin-dependent kinase II (CaMKII) inhibitor (KN-93). Melatonin pretreatment ($10^{-8}{\sim}10^{-6}M$) decreased the contractile responses induced by PE ($10^{-9}{\sim}10^{-4}M$) and Ach ($10^{-9}{\sim}10^{-4}M$) in a dose-dependent manner. Melatonin ($10^{-7}M$) also blocked contraction induced by high KCl ($[KCl]_{ECF}$; 35 mM, 70 mM, 105 mM, and 140 mM) and EFS. Melatonin ($10^{-7}M$) potentiated the relaxation response of the strips by verapamil, but other potassium channel blockers did not change melatonin activity. Melatonin pretreatment significantly decreased contractile responses induced by Bay K 8644 ($10^{-11}{\sim}10^{-7}M$). KN-93 enhanced melatonin-induced relaxation. The present results suggest that melatonin can inhibit bladder smooth muscle contraction through a voltage-dependent, calcium-antagonistic mechanism and through the inhibition of the calmodulin/CaMKII system.