• 제목/요약/키워드: K2P channel

검색결과 602건 처리시간 0.023초

Ginsenosides Inhibit N-, p-, arid Q-types but not L-type of $Ca^{2+}$ Channel in Bovine Chromaffin cells

  • Seok Chol;Jung, Se-Yeon;Kim, Hyun-Oh;Kim, Hack-Seang;Hyewhon Rhim;Kim, Seok-Chang;Nah, Seung-Yeol
    • Journal of Ginseng Research
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    • 제24권1호
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    • pp.18-22
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    • 2000
  • 앞의 연구에서 우리는 진세노사이드가 신경세포에 존재하는 high-threshold voltage-dependent $Ca^{2+}$ channel을 억제한다는 것을 발표하였다. 그러나, 이러한 연구는 진세노사이드가 여러 칼슘 채널subtypes중 어느 특정 칼슘 채널만을 선택적으로 조절한다는 것을 보여주지는 않았다. 따라서 이 연구에서 우리는 여러 칼슘 채널subtypes에 선택적으로 작용하는 약물 혹은 toxins을 이용하여 진세노사이드가 어느 종류의 칼슘 채널 subtypes를 억제하는가를 bovine chromaffin cell을 이용하여 연구하였다. 사용한 물질은nimodipine(L-type 칼슘 채널 길항제), $\omega$-conotoxin GVIA (N-type $Ca^{2+}$ channel 길항제), $\omega$-agatoxin IVA(P-type 칼슘 채널 길항제)이었다. 연구 결과 진세노사이드는 bovine chromaffin 세포에 존재하는 high-threshold 칼슘 current을 투여 농도별로 억제하였다. $IC_{50}$/은 약 120 $\mu$g/ml인 것으로 나타났다. nimodipine은 진세노사이드에 의한 칼슘 currents억제 작용에 영향을 미치지 않은 것으로 나타났다. 그러나, $\omega$-conotoxin GVIA, $\omega$-agatoxin IVA 및 nimodipine+$\omega$-conotoxin GVIA+$\omega$-agatoxin IVA을 처리한 세포에서는 진세노사이드에 의한 칼슘 currents억제 작용이 현저하게 줄어 들었다. 이러한 연구 결과들은 진세노사이드가 L-type 칼슘 채널은 억제하지 않고, 주로 N-, p-, 및 Q-type칼슘 채널을 억제한다는 것을 보여주고 있다

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생쥐 난자의 활성화에 따른 $Ca^{2+}$-channel의 분포 변화에 관한 연구 (Studies of Changes of $Ca^{2+}$-channel Distribution in the Activated Mouse Ova)

  • 장연수;배인하
    • Clinical and Experimental Reproductive Medicine
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    • 제28권1호
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    • pp.13-24
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    • 2001
  • Objective: In muscle and neuronal cells, calcium channels have been classified by electrophysiological and pharmacological properties into (1) voltage-dependent $Ca^{2+}$-channel (1) P/Q-type $Ca^{2+}$-channel (2) N-type $Ca^{2+}$-channel (3) L-type $Ca^{2+}$-channel (4) T-type $Ca^{2+}$-channel (5) R-type $Ca^{2+}$-channel. The present study was done in order to investigate whether there is any difference in $Ca^{2+}$-channel distribution between activated and normally fertilized embryos. Methods: The immunocytochemical method was used to identify the existence of voltage-dependent $Ca^{2+}$-channels in parthenogenetically activated 2-cell embryos by ethanol and $SrCl_2$ treatment. These 2-cell embryos were obtained by exposure to 6% ethanol for 6 min and to 10 mM $SrCl_2$ for 2h. Results: P/Q-type $Ca^{2+}$-channels and L-type $Ca^{2+}$-channels have been identified. Whereas, three type of $Ca^{2+}$-channel P/Q-type, N-type, L-type have been identified in 2-cell embryos fertilized in vivo. Conclusion: Activation by ethanol was faster than those by $SrCl_2$. However, there was difference in DAB staining of the embryos between ethanol and $SrCl_2$ treatment (87.7% and 54.1 %). Intensity of staining was also different between ethanol- and $SrCl_2$-treated group. However, it has not been known why there was some difference in DAB staining and staining intensity in the present study.

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The Substates with Mutants That Negatively Charged Aspartate in Position 172 Was Replaced with Positive Charge in Murine Inward Rectifier Potassium Channel (Murine Kir2.1)

  • So, I.;Ashmole, I.;Stanfield, P.R.
    • The Korean Journal of Physiology and Pharmacology
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    • 제7권5호
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    • pp.267-273
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    • 2003
  • We have investigated the effect on inducing substate(s) of positively charged residues replaced in position 172 of the second transmembrane domain in murine inward rectifier potassium channels, formed by stable or transient transfection of Kir2.1 gene in MEL or CHO cells. Single channel recordings were obtained from either cell-attached patches or inside-out patches excised into solution containing 10 mM EDTA to rule out the effect of $Mg^{2+}$ on the channel gating. The substate(s) could be recorded with all mutants D172H, D172K and D172R. The unitary current-voltage (I-V) relation was not linear with D172H at $pH_i$ 6.3, whereas the unitary I-V relation was linear at $pH_i$ 8.0. The relative occupancy at $S_{LC}$ was increased from 0.018 at $pH_i$ 8.0 to 0.45 at $pH_i$ 5.5. In H-N dimer, that was increased from 0.016 at $pH_i$ 8.0 to 0.23 at $pH_i$ 5.5. The larger the size of the side chain or $pK_a$ with mutants (D172H, D172K and D172R), the more frequent the transitions between the fully open state and substate within an opening. The conductance of the substate also depended upon the pKa or the size of the side chain. The relative occupancy at substate $S_{LC}$ with monomer D172K (0.50) was less than that in K-H dimer (0.83). However, the relative occupancy at substate with D172R (0.79) was similar to that with R-N dimer (0.82). In the contrary to ROMK1, positive charge as well as negative charge in position 172 can induce the substate rather than block the pore in murine Kir2.1. The single channel properties of the mutant, that is, unitary I-V relation, the voltage dependence of the mean open time and relative occupancy of the substates and the increased latency to the first opening, explain the intrinsic gating observed in whole cell recordings.

임신 자궁 내막에서 Two-pore Domain 칼륨 통로의 발현 변화 (Alteration in Two-pore Domain K$^+$ Channel Expression in Endometrium of Pregnant Korean Cattle)

  • 최창용;탁현민;김창운;한재희;강다원
    • 한국수정란이식학회지
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    • 제26권3호
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    • pp.209-214
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    • 2011
  • 임신의 성립 및 유지에 중요한 자궁 내막과 호르몬의 변화는 생식기관에서 발현되는 K$_{2P}$ 통로의 발현을 변화시킬 수 있다. 본 연구는 한우의 임신 자궁 내막에서 K$_{2P}$ 통로의 발현 변화가 나타나는지 그리고 프로게스테론에 의해 그 발현량이 변화되는지를 확인하고자 수행하였다. 역전사중합효소 중합반응과 웨스턴블닷 분석을 통하여 임신한 한우의 자궁 내막에서 mRNA와 단백질의 발현 변화를 조사하였다. TREK-1을 제외한 K$_{2P}$ 통로의 mRNA 발현량이 임신 자궁 내막에서 변화되었다. mRNA가 크게 변화되는 TASK-3, TREK-2, TRAAK 및 TRESK의 단백발현 변화량을 임신 자궁 내막에서 확인하였는데, TREK-2와 TRESK만 mRNA 발현 변화 양상과 동일하게 임신 자궁 내막에서 각각 7.9배, 2배 증가하였다. 자궁 내막세포에 프로게스테론(10 ${\mu}g$/mL)을 처리하였을 때 TREK-2와 TRESK는 자궁 내막 조직에서 보여준 결과와 유사하게 단백 발현량이 각각 10배, 6배 증가하였다. 이상의 결과로부터 K$_{2P}$ 통로, 특히 TREK-2와 TRESK는 프로게스테론 변화에 의해 임신 자궁 내막에서 발현량이 증가할 것으로 생각된다. 그리고 증가된 TREK-2와 TRESK는 임신에 의해 유발되는 생리학적 변화를 조절하는데 기여할 것으로 생각된다.

Electrophysiological Properties of Ion Channels in Ascaris suum Tissue Incorporated into Planar Lipid Bilayers

  • Park, Kwon Moo;Kim, Sun-Don;Park, Jin Bong;Hong, Sung-Jong;Ryu, Pan Dong
    • Parasites, Hosts and Diseases
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    • 제59권4호
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    • pp.329-339
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    • 2021
  • Ion channels are important targets of anthelmintic agents. In this study, we identified 3 types of ion channels in Ascaris suum tissue incorporated into planar lipid bilayers using an electrophysiological technique. The most frequent channel was a large-conductance cation channel (209 pS), which accounted for 64.5% of channels incorporated (n=60). Its open-state probability (Po) was ~0.3 in the voltage range of -60~+60 mV. A substate was observed at 55% of the main-state. The permeability ratio of Cl- to K+ (PCl/PK) was ~0.5 and PNa/PK was 0.81 in both states. Another type of cation channel was recorded in 7.5% of channels incorporated (n=7) and discriminated from the large-conductance cation channel by its smaller conductance (55.3 pS). Its Po was low at all voltages tested (~0.1). The third type was an anion channel recorded in 27.9% of channels incorporated (n=26). Its conductance was 39.0 pS and PCl/PK was 8.6±0.8. Po was ~1.0 at all tested potentials. In summary, we identified 2 types of cation and 1 type of anion channels in Ascaris suum. Gating of these channels did not much vary with voltage and their ionic selectivity is rather low. Their molecular nature, functions, and potentials as anthelmintic drug targets remain to be studied further.

InP 식각정지층을 갖는 MHEMT 소자의 InGaAs/InP 복합 채널 항복 특성 시뮬레이션 (Simulation Study on the Breakdown Characteristics of InGaAs/InP Composite Channel MHEMTs with an InP-Etchstop Layer)

  • 손명식
    • 반도체디스플레이기술학회지
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    • 제12권4호
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    • pp.21-25
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    • 2013
  • This paper is for enhancing the breakdown voltage of MHEMTs with an InP-etchstop layer. The fully removed recess structure in the drain side of MHEMT shows that the breakdown voltage enhances from 2 V to 4 V in the previous work. This is because the surface effect at the drain side decreases the channel current and the impact ionization in the channel at high drain voltage. In order to increase the breakdown voltage at the same asymmetric gate-recess structure, the InGaAs channel structure is replaced with the InGaAs/InP composite channel in the simulation. The simulation results with InGaAs/InP channel show that the breakdown voltage increases to 6V in the MHEMT as the current decreases. In this paper, the simulation results for the InGaAs/InP channel are shown and analyzed for the InGaAs/InP composite channel in the MHEMT.

Ethanol inhibits Kv7.2/7.3 channel open probability by reducing the PI(4,5)P2 sensitivity of Kv7.2 subunit

  • Kim, Kwon-Woo;Suh, Byung-Chang
    • BMB Reports
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    • 제54권6호
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    • pp.311-316
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    • 2021
  • Ethanol often causes critical health problems by altering the neuronal activities of the central and peripheral nerve systems. One of the cellular targets of ethanol is the plasma membrane proteins including ion channels and receptors. Recently, we reported that ethanol elevates membrane excitability in sympathetic neurons by inhibiting Kv7.2/7.3 channels in a cell type-specific manner. Even though our studies revealed that the inhibitory effects of ethanol on the Kv7.2/7.3 channel was diminished by the increase of plasma membrane phosphatidylinositol 4,5-bisphosphate (PI(4,5)P2), the molecular mechanism of ethanol on Kv7.2/7.3 channel inhibition remains unclear. By investigating the kinetics of Kv7.2/7.3 current in high K+ solution, we found that ethanol inhibited Kv7.2/7.3 channels through a mechanism distinct from that of tetraethylammonium (TEA) which enters into the pore and blocks the gate of the channels. Using a non-stationary noise analysis (NSNA), we demonstrated that the inhibitory effect of ethanol is the result of reduction of open probability (PO) of the Kv7.2/7.3 channel, but not of a single channel current (i) or channel number (N). Finally, ethanol selectively facilitated the kinetics of Kv7.2 current suppression by voltage-sensing phosphatase (VSP)-induced PI(4,5)P2 depletion, while it slowed down Kv7.2 current recovery from the VSP-induced inhibition. Together our results suggest that ethanol regulates neuronal activity through the reduction of open probability and PI(4,5)P2 sensitivity of Kv7.2/7.3 channels.

TREK2-채널 과발현 세포주에서 에피갈로카테킨-3-갈레이트의 세포 증식 억제 효과 (Cell proliferation inhibition effects of epigallocatechin-3-gallate in TREK2-channel overexpressing cell line)

  • 김양미;김경아
    • 한국산학기술학회논문지
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    • 제17권3호
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    • pp.127-135
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    • 2016
  • Two-pore 도메인 포타슘 채널(two-pore domain $K^+$ channel, K2P channel)은 세포내 pH, 생리 활성 지질, 신경 전달 물질과 같은 생리학적 자극의 표적이며 안정막전압(resting membrane potential)을 설정하는 것으로 알려져 있다. 일부 유형의 K2P 채널들은 세포 사멸 및 종양 형성 등에서 중요한 역할을 한다. K2P 채널 중 TREK2 채널의 길항제는 보고되지 않았다. 본 연구의 목적은 TREK2 채널을 과발현시킨 HEK293 세포(HEKT2)에서 플라보노이드에 의해 TREK2 채널이 억제되는지 그리고 HEKT2 세포의 증식이 플라보노이드에 의해 영향을 받는지 알아보고자 하였다. 전기생리학적 전류는 단일 채널 patch clamp 방법을 사용하여 기록하였고 세포 증식은 XTT 에세이방법을 이용하여 측정하였다. HEKT2 세포에서 전기생리학적 TREK2 채널 활성도는 에피갈로카테킨-3-갈레이트(EGCG) 및 케르세틴과 같은 플라보노이드에 의해 각각 $91.5{\pm}13.1%$(n=5), $82.2{\pm}13.7%$(n=5)까지 억제되었다. 반면, EGCG 유사체인 에피카테킨(EC)는 TREK2 단일 채널 활성도에 현저한 억제 효과는 없었다. 또한 HEKT2 세포에서 세포 증식이 EGCG에 의해 $69.4{\pm}14.0%$(n=4)까지 감소되었음을 확인하였다. 결과로부터 EGCG와 케르세틴이 TREK2 채널 억제제임을 처음으로 확인하였고, EGCG만 HEKT2 세포의 증식을 감소시킨다는 결론을 얻었다. 본 연구의 결과는 EGCG 및 케르세틴이 TREK2 채널을 억제함으로써 막전압의 변화 유도와 세포 증식에 필요한 세포내 신호 변화의 시작을 트리거하는데 일차적으로 작동할 수 있음을 시사한다.

Advanced Channel Estimation Schemes Using CDP based Updated Matrix for IEEE802.11p/WAVE Systems

  • Park, Choeun;Ko, Kyunbyoung
    • International Journal of Contents
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    • 제14권1호
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    • pp.39-44
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    • 2018
  • Today, cars have developed into intelligent automobiles that combine advanced control equipment and IT technology to provide driving assistance and convenience to users. These vehicles provide infotainment services to the driver, but this does not improve the safety of the driver. Accordingly, V2X communication, which forms a network between a vehicle and a vehicle, between a vehicle and an infrastructure, or between a vehicle and a human, is drawing attention. Therefore, various techniques for improving channel estimation performance without changing the IEEE 802.11p standard have been proposed, but they do not satisfy the packet error rate (PER) performance required by the C-ITS service. In this paper, we analyze existing channel estimation techniques and propose a new channel estimation scheme that achieves better performance than existing techniques. It does this by applying the updated matrix for the data pilot symbol to the construct data pilot (CDP) channel estimation scheme and by further performing the interpolation process in the frequency domain. Finally, through simulations based on the IEEE 802.11p standard, we confirmed the performance of the existing channel estimation schemes and the proposed channel estimation scheme by coded PER.

Reduction of Muscarinic $K^+$ Channel Activity by Transferrin in Ischemic Rat Atrial Myocytes

  • Park, Kyeong-Tae;Kang, Da-Won;Han, Jae-Hee;Hur, Chang-Gi;Hong, Seong-Geun
    • The Korean Journal of Physiology and Pharmacology
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    • 제7권6호
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    • pp.333-339
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    • 2003
  • It has been demonstrated that an unidentified cytosolic factor(s) reduces $K_{ACh}$ channel function. Therefore, this study attempted to elucidate the cytosolic factor. Fresh cytosol isolated from normal heart (FC) depressed the $K_{ACh}$ channel activity, but cytosol isolated from the ischemic hearts (IC) did not modulate the channel function. Electrophorectic analysis revealed that a protein of ${\sim}80 kDa was markedly reduced or even lost in IC. By using peptide sequencing analysis and Western blot, this 80 kDa protein was identified as transferrin (receptor-mediated $Fe^{3+}$ transporter, 76 kDa). Direct application of transferrin (100 nM) to the cytoplasmic side of inside-out patches decreased the open probability ($P_o$, 12.7${\pm}6.4%, n=4) without change in mean open time (${\tau}_o$, $98.5{\pm}1.3$%, n=4). However, the equimolar apotransferrin, which is free of $Fe^{3+}$, had no effect on the channel activity (N*$P_o$, $129.1{\pm}13.5$%, n=3). Directly applied $Fe^{3+}$ (100 nM) showed results similar to those of transferrin (N*$P_o$: $21.1{\pm}3.9$%, n=5). However $Fe^{2+}$ failed to reduce the channel function (N*$P_o$, $106.3{\pm}26.8$%, n=5). Interestingly, trivalent cation La3+ inhibited N*$P_o$ of the channel ($6.1{\pm}3.0$%, n=3). Taken together, these results suggest that $Fe^{3+}$ bound to transferrin can modulate the $K_{ACh}$ channel function by its electrical property as a polyvalent cation.