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1.
朱幸  朱辉 《生理学报》1994,46(5):495-499
利用两栖类卵母细胞表达鸡视网膜mRNA,借助电压箝方法研究鸡视网膜中的神经递质受体和离子通道。结果表明,鸡视网中存在甘氨酸受体和N型的乙酰胆碱受体。但天冬氨酸和5-HT、多巴胺未能诱导电流反应,此外还检测到电压依赖性的离子流、主要为延迟整流的外向钾电流和快速的内向钠电流。  相似文献   

2.
朱幸  朱辉 《生理学报》1994,46(5):417-426
本工作利用两栖类卵母细胞作为功能表达系统,对鸡视网膜中的谷氨酸受体和GABA受体的类型和基本性质进行了研究。在注射鸡视网膜mRNA的卵母细胞上,谷氨酸受体有明显的表达。L-Glu及其类似物KA,AMPA,QA都毫无例外地能诱导卵母细胞产生快速平滑的去极化电流,而NMDA,L-AP4,ACPD以及天冬氨酸不能诱导明显的电流反应。并且AMPA,QA对KA反应存在一定的抑制作用,提示AMPA,QA可能与KA作用于同一受体。抑制性氨基酸GABA的受体被证明大部分为GABAA亚型,但有小部分的GABA反应不能为荷包牡丹碱(bicuculline)所阻断。  相似文献   

3.
包永德  朱辉 《生理学报》1996,48(4):401-404
我们以两栖类卵母细胞为功能表达系统,通过注射鲫鱼(Carassiuscarassius)视网膜mRNA,利用电压箝及药物灌流手段,系统地研究了鲫鱼视网膜内氨基酸受体的类型和特征,结果如下:(1)Glu受体:KA可以诱发明显的去极化电流,而且Diazoxide能增强KA诱导的反应,这提示鲫鱼视网膜内某些Clu受体是AMPA选择性亚型(AMPA-preferringsubtype)。(2)CABA受体:GABA能诱发一个快速、光滑的内向电流,绝大部分对GABA的反应可被bicuculline所压抑,而GABA_B受体的激动剂baclofen则无任何作用,这提示,鲫鱼视网膜内大部分是GABA_A受体。  相似文献   

4.
本文旨在探讨豚鼠I型前庭毛细胞上有无胆碱能受体存在,并对其相应的离子通道特性进行研究。应用全细胞膜片钳技术检测急性分离的豚鼠I型前庭毛细胞对乙酰胆碱(acetylcholine,ACh)的反应。结果显示,7.5%(21/279)的I型前庭毛细胞对10-1000μmol/L ACh敏感,引发明显的外向电流。该电流对ACh的反应呈浓度依赖性,半数激活浓度(EC50)为(63.78±2.31)μmol/L,但该电流为非电压依赖性。在-50mV钳制电压和正常细胞外液中,100μmol/L ACh激活-持久缓慢的外向电流,电流幅值为(170±15)pA,该电流幅值依赖于胞外钙离子浓度,可被胞外给予的钙依赖性钾通道拮抗剂TEA阻断。I型前庭毛细胞的再次激活时间不小于1min。长时间暴露在ACh的情况下,受体离子通道不会发生自发性关闭。以上结果提示,部分豚鼠I型前庭毛细胞上存在胆碱能受体,胞外给予ACh可激活-持久缓慢的外向电流,其胆碱能受体通道对于ACh的作用呈浓度依赖性和外钙依赖性、非电压依赖性或失敏性。本研究结果对于阐明前庭传出神经的功能及其作用机制,证实并揭示I型前庭毛细胞上存在传出神经递质受体以及日后临床指导眩晕疾病的康复治疗具有重要的意义。  相似文献   

5.
本文旨在探讨豚鼠Ⅰ型前庭毛细胞上有无胆碱能受体存在,并对其相应的离子通道特性进行研究.应用全细胞膜片钳技术检测急性分离的豚鼠Ⅰ型前庭毛细胞对乙酰胆碱(acetylcholine, ACh)的反应.结果显示,7.5%(21/279)的Ⅰ型前庭毛细胞对10~1000μmol/L ACh敏感,引发明显的外向电流.该电流对ACh的反应呈浓度依赖性,半数激活浓度(EC50)为(63.78±2.31)μmol/L,但该电流为非电压依赖性.在-50mV钳制电压和正常细胞外液中,100μmol/L ACh激活一持久缓慢的外向电流,电流幅值为(170±15)pA,该电流幅值依赖于胞外钙离子浓度,可被胞外给予的钙依赖性钾通道拮抗剂TEA阻断.Ⅰ型前庭毛细胞的再次激活时间不小于1min.长时间暴露在ACh的情况下,受体离子通道不会发生自发性关闭.以上结果提示,部分豚鼠Ⅰ型前庭毛细胞上存在胆碱能受体,胞外给予ACh可激活一持久缓慢的外向电流,其胆碱能受体通道对于ACh的作用呈浓度依赖性和外钙依赖性、非电压依赖性或失敏性.本研究结果对于阐明前庭传出神经的功能及其作用机制,证实并揭示Ⅰ型前庭毛细胞上存在传出神经递质受体以及日后临床指导眩晕疾病的康复治疗具有重要的意义.  相似文献   

6.
Dihydroxyaflavinine 是黄曲霉菌(Aspergillus flavus)的吲哚类代谢物。我们将鸡脑mRNA 注入爪蟾卵母细胞表达得到 GABA_A 受体通道,然后用电压箝记录方法定量研究了dihydroxyaflavinine 对 GABA 电流反应的作用。Dihydroxyaflavinine 非竞争性阻断GABA 电流反应(K_I=12μmol/L),撤药后反应迅速恢复。作为比较,青霉素对 GABA_A受体的抑制作用随 GABA 浓度的升高而增加。浓度高达1μmol/L 苯二氮(艹卓)位点配体 Ro 15-1788(KD=0.6—2nmol/L)不能阻断10μmol/L dihydroxyaflavinine 的作用,说明 dihy-droxyaflavinine 不作用于 GABA_A 受体的苯二氮(艹卓)位点。Dihydroxyaflavinine 类似印防已毒素,表观上加速 GABA_A 受体的脱敏过程,而青霉素和荷包牡丹碱与此相反。  相似文献   

7.
本工作在酶解分离的鲫鱼视网膜水平细胞上研究了AMPA受体对γ-氨基丁酸(γ-aminobutyric acid,GABA)转运体电流的调节作用。由1mmol/L GABA所诱导的GABA转运体电流被持续50s的AMPA(30μmol/L或3mmol/L)预灌流所抑制。在细胞内液中施加10mmol/L BAPTA可以减弱AMPA对GABA转运体电流的抑制效应。施加3mmol/L AMPA+3mmol/ LNMDA所引起的抑制效应和单独施加3mmol/L AMPA或3mmol/L NMDA所引起的抑制效应相仿。以上结果表明,和激活NMDA受体调节GABA转运体的机制一样,激活视网膜水平细胞上的AMPA受体可以通过胞内钙过程来抑制GABA转运体电流。  相似文献   

8.
鲫鱼脑氨基酸类神经递质受体在两栖类卵母细胞中的表达   总被引:1,自引:1,他引:0  
朱辉  朱幸 《生理学报》1995,47(1):1-10
两栖类卵母细胞表达系统经注射鲫鱼脑mRNA后可表达多种神经递质受体和某些离子通道。本工作利用电压箝方法结合药理学手段对GABA受体和谷氨酸离子型受体作了较详细的研究。结果表明,由GABA诱发的电流反应中,约90%由GABAA受体介导,乘余约10%的成分对GABAA受体的专一性拮抗剂Bicuculline不敏感,而GABAB受体的专一性激动剂Baclofen不能引进电流反应,因此这部分受体特性与GA  相似文献   

9.
Wu D  Zhu PH 《生理科学进展》1998,29(4):349-351
脊椎动物视网膜双极细胞有ON型和OFF型两类:ON型双极细胞对光反应为去极化,OFF型双极细胞对光反应为超极化。现知,ON型双极细胞上含有代谢型谷氨酸受体,暗中光感受器细胞持续释放的谷所酸与之结合后,造成阳离子通道关闭,引起细胞超极化;光照时谷氨酸释放减少,引起去极化。而OFF型双极细胞上含有离子型谷氨酸受体,谷氨酸与之结合后受体本身通道打开,引起细胞去极化;光照时,谷氨酸释放减少,引起超极化。  相似文献   

10.
非洲爪蟾卵母细胞GABAB和GABAc受体介导的电流反应   总被引:4,自引:0,他引:4  
Yang Q  Li ZW  Wei JB 《生理学报》2001,53(4):311-315
实验应用双电极电压箝技术,在具有滤泡膜的非洲爪蟾(Xenopuslaevis)卵母细胞上记录到γ-氨基丁酸(γ-aminobutyricacid,GABA)-激活电流。此GABA-激活电流的特点及有关GABA受体类型的研究和分析如下(1)在35.5%(55/155)的受检细胞外加GABA可引起一慢的浓度依赖性的外向电流。(2)GABAA受体的选择性拮抗剂bicuculline(10  相似文献   

11.
A future class of amperometric biosensors may utilize gated ion channels such as acetylcholine and glutamate receptors as chemical detection components. In this study, bilayer lipid membranes containing voltage-dependent anion channels (VDAC) were used to model an ion-channel-based biosensor which could continuously monitor AC amperometric changes resulting from induced changes in channel conductance. The in-phase and quadrature components of the induced alternating membrane current were monitored as a function of the applied DC offset voltage which was superimposed on the sinusoidal test voltage. The accuracy and sensitivity of the AC-measured VDAC response was dependent on the magnitude of the AC test voltage relative to the DC offset necessary for channel closure. The VDAC channel appears to be a suitable model protein for AC impedance-based biosensor fabrication.  相似文献   

12.
The nicotinic acetylcholine receptor regulates the ion permeability of the postsynaptic membrane. This report presents evidence that the transmitter binding site and the ion channel may be located on distinct subunits. By hybridisation of receptor complexes, in which the transmitter binding site was blocked with complexes in which the ion channel was irreversibly inhibited, we reconstituted active acetylcholine receptor complexes. The reconstituted system was similar to the native receptor in its ability to regulate the ion permeability of lipid vesicles in response to nicotinic cholinergic effectors.  相似文献   

13.
Banghart MR  Volgraf M  Trauner D 《Biochemistry》2006,45(51):15129-15141
Ion channels are gated by a variety of stimuli, including ligands, voltage, membrane tension, temperature, and even light. Natural gates can be altered and augmented using synthetic chemistry and molecular biology to develop channels with completely new functional properties. Light-sensitive channels are particularly attractive because optical manipulation offers a high degree of spatial and temporal control. Over the last few decades, several channels have been successfully rendered responsive to light, including the nicotinic acetylcholine receptor, gramicidin A, a voltage-gated potassium channel, an ionotropic glutamate receptor, alpha-hemolysin, and a mechanosensitive channel. Very recently, naturally occurring light-gated cation channels have been discovered. This review covers the molecular principles that guide the engineering of light-gated ion channels for applications in biology and medicine.  相似文献   

14.
Summary Monoclonal antibodies directed against the cholinergic binding site of the acetylcholine receptor were found to alter the ion channel properties in cultured chick myoballs. Time and dose dependent reduction in acetylcholine sensitivity was observed. Noise analysis experiments indicated a decrease in the mean single channel conductance and an increase in the mean single channel open time.  相似文献   

15.
Single-channel acetylcholine receptor kinetics.   总被引:3,自引:0,他引:3       下载免费PDF全文
The temporal relationships among junctional acetylcholine receptor single-channel currents have been examined to probe the mechanism of channel activation. We have presented an analytical approach, termed single-channel ensemble analysis, that allows one to estimate the kinetic transition rate constants for channel-opening and closing as well as the rate of leaving the specific doubly-liganded, closed state from which opening occurs. This approach may be applied to data produced by any number of independent channels as long as the probability of channel opening is low, a condition that is experimentally verifiable. The method has been independently validated using simulated single-channel data generated by computer from one or 100 hypothetical channels. Typical experimental values for the transition rate constants estimated from acetylcholine-activated single channels at the garter snake neuromuscular junction were: opening = 1,200 s-1, closing = 455 s-1, back rate for leaving the doubly-liganded, closed state = 3,200 s-1 at a transmembrane potential of -92 mV at room temperature. Each of these three rate constants was voltage dependent, with the closing rate decreasing e-fold for 173 mV of hyperpolarization, the opening rate increasing e-fold for 78 mV, and the unbinding rate increasing e-fold for 105 mV. The channel-closing rate was agonist dependent, being greater at all potentials for channels activated with carbamylcholine than for channels activated with acetylcholine. However, the single-channel conductance and reversal potential were the same for these two agonists.  相似文献   

16.
We have investigated the interactions of a novel anionic ryanoid, 10-O-succinoylryanodol, with individual mammalian cardiac muscle ryanodine receptor channels under voltage clamp conditions. As is the case for all ryanoids so far examined, the interaction of 10-O-succinoylryanodol with an individual RyR channel produces profound alterations in both channel gating and rates of ion translocation. In the continued presence of the ryanoid the channel fluctuates between periods of normal and modified gating, indicating a reversible interaction of the ligand with its receptor. Unlike the majority of ryanoids, we observe a range of different fractional conductance states of RyR in the presence of 10-O-succinoylryanodol. We demonstrate that 10-O-succinoylryanodol is a very flexible molecule and propose that each fractional conductance state arises from the interaction of a different conformer of the ryanoid molecule with the RyR channel. The probability of channel modification by 10-O-succinoylryanodol is dependent on the transmembrane holding potential. Comparison of the voltage dependence of channel modification by this novel anionic ryanoid with previous data obtained with cationic and neutral ryanoids reveals that the major influence of transmembrane potential on the probability of RyR channel modification by ryanoids results from an alteration in receptor affinity. These investigations also demonstrate that the charge of the ryanoid has a major influence on the rate of association of the ligand with its receptor indicating that ionic interactions are likely to be involved in this reaction.  相似文献   

17.
Cyclic nucleotide-gated channels (cng channels) in the sensory membrane of olfactory receptor cells, activated after the odorant-induced increase of cytosolic cAMP concentration, conduct the receptor current that elicits electrical excitation of the receptor neurons. We investigated properties of cng channels from frog and rat using inside-out and outside-out membrane patches excised from isolated olfactory receptor cells. Channels were activated by cAMP and cGMP with activation constants of 2.5-4.0 microM for cAMP and 1.0-1.8 for cGMP. Hill coefficients of dose-response curves were 1.4-1.8, indicating cooperativity of ligand binding. Selectivity for monovalent alkali cations and the Na/Li mole-fraction behavior identified the channel as a nonselective cation channel, having a cation-binding site of high field strength in the pore. Cytosolic pH effects suggest the presence of an additional titratable group which, when protonated, inhibits the cAMP-induced current with an apparent pK of 5.0-5.2. The pH effects were not voltage dependent. Several blockers of Ca2+ channels also blocked olfactory cng channels. Amiloride, D 600, and diltiazem inhibited the cAMP-induced current from the cytosolic side. Inhibition constants were voltage dependent with values of, respectively, 0.1, 0.3, and 1 mM at -60 mV, and 0.03, 0.02, and 0.2 mM at +60 mV. Our results suggest functional similarity between frog and rat cng channels, as well as marked differences to cng channels from photoreceptors and other tissues.  相似文献   

18.
The kinetics of the nicotinic acetylcholine receptor (AChR) channel were analysed in the presence of hydrocortisone (HC, 100-400 μM), an electrically neutral steroid. The channel open time decreased, and in contrast to control conditions did not show any voltage dependency. However, HC induced a new (blocked) component in the closed time distribution, with a time constant that decreased with membrane hyperpolarization. HC decreased also, in a concentration-dependent way, the open time per burst. After coupling HC to bovine serum albumin, to restrict the place of steroid action at the external surface of the membrane, a voltage dependency of steroid action persisted. The effects of HC on the open and blocked time constants did not depend on agonist concentration, but was dependent on the type of agonist used (acetylcholine or nicotine). These results support the hypothesis that HC molecules bind near the agonist binding site.  相似文献   

19.
20.
The effects of the divalent cations Ca and Mg on the properties of ACh-activated channels at the frog neuromuscular junction were studied using a two-microelectrode voltage clamp. The divalent cation concentration was varied from 2 to 40 mM in solutions containing 50% normal Na. The reversal potential was determined by interpolation of the acetylcholine (ACh)-induced current versus voltage relationship. The single-channel conductance and the mean channel lifetime were calculated from fluctuation analysis of the ACh-induced end-plate current. Extracellular Na and/or divalent cations affected the reversal potential of endplate channels in a way that cannot be described by the Goldman-Hodgkin-Katz equation or by a simple two-barrier, one-binding site model of the channel if the assumption was made that permeability ratios were constant and not a function of ion concentrations. Increasing the divalent cation concentration decreased the single-channel conductance to approximately 10 pS in solutions with 50% Na and 40 mM divalent cation concentrations. The effect of the divalent cations Ca and Mg on the mean channel lifetime was complex and dependent on whether the divalent cation was Ca or Mg. The mean channel lifetime was not significantly changed in most solutions with increased Ca concentration, while it was slightly prolonged by increased Mg concentration.  相似文献   

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