Pharmacological and kinetic properties of alpha 4 beta 2 neuronal nicotinic acetylcholine receptors expressed in Xenopus oocytes.
Open Access
- 1 May 1992
- journal article
- research article
- Published by Wiley in The Journal of Physiology
- Vol. 450 (1), 375-394
- https://doi.org/10.1113/jphysiol.1992.sp019132
Abstract
1. Co‐injection of RNA synthesized from cloned neuronal acetylcholine receptor (nAChR) subunits (alpha 4 and beta 2) in Xenopus oocytes produced functional receptors. In macroscopic voltage‐clamp experiments, the agonist‐induced current exhibited a strong inward rectification. 2. Voltage jumps from +50 mV to more negative potentials produced relaxations of the agonist‐induced current with a single exponential time course. The relaxation rate constant was only weakly voltage dependent. 3. At the single‐channel level, three conductances were recorded of 12, 22 and 34 pS. Their burst durations were similar and varied only weakly with voltage (e‐fold for 120 to 370 mV), consistent with the poorly voltage‐dependent relaxation rate constants. However, the burst durations were less than 10 ms, or less than 1/5 the value expected from voltage‐jump relaxations. 4. Hexamethonium (Hex, 0.5 to 8 microM) inhibited the agonist‐induced current and produced voltage‐jump relaxations characterized by a rapid conductance increase and a slower conductance decrease. Analysis of these relaxations suggested that the Hex‐receptor interaction is open‐channel blockade characterized by a forward binding rate of 1 x 10(7) M‐1 s‐1 and a dissociation rate constant of about 25 s‐1. 5. For the relaxations produced by QX222, the slowest phase was a conductance increase, suggesting that the dissociation rate constant for QX222 is 10‐30‐fold greater than for Hex. 6. Hex but not QX222 produced an additional use‐dependent blockade that was manifest during repetitive hyperpolarizing pulses. 7. With mouse muscle ACh receptors expressed in oocytes, the blockade by Hex did not depend strongly on voltage. Neither Hex nor QX222 produced appreciable use‐dependent block on muscle ACh receptors. 8. Of the four conditions studied (neuronal and muscle receptors, Hex and QX222), only the blockade of the neuronal AChR by Hex is characterized by a residence time longer than the normal open time. 9. It is concluded that the modest differences in primary amino acid sequence between muscle and neuronal receptors lead to profound changes in their interactions with channels blockers.Keywords
This publication has 34 references indexed in Scilit:
- Failure to Elicit Neuronal Macroscopic Mechanosensitive Currents Anticipated by Single-Channel StudiesScience, 1991
- Both alpha- and beta-subunits contribute to the agonist sensitivity of neuronal nicotinic acetylcholine receptorsJournal of Neuroscience, 1991
- A neuronal nicotinic acetylcholine receptor subunit (α7) is developmentally regulated and forms a homo-oligomeric channel blocked by α-BTXNeuron, 1990
- Rectification of currents activated by nicotinic acetylcholine receptors in rat sympathetic ganglion neurones.The Journal of Physiology, 1990
- The noncompetitive blocker [3H]chlorpromazine labels three amino acids of the acetylcholine receptor gamma subunit: implications for the alpha-helical organization of regions MII and for the structure of the ion channel.Proceedings of the National Academy of Sciences, 1990
- Homology and analogy in transmembrane channel design: lessons from synaptic membrane proteinsBiochemistry, 1990
- Activation and blocking of neuronal nicotinic acetylcholine receptor reconstituted in Xenopus oocytes.Proceedings of the National Academy of Sciences, 1990
- An open-channel blocker interacts with adjacent turns of α-helices in the nicotinic acetylcholine receptorNeuron, 1990
- THE ACTION OF GANGLIONIC BLOCKING DRUGS ON THE SYNAPTIC RESPONSES OF RAT SUBMANDIBULAR GANGLION CELLSBritish Journal of Pharmacology, 1982
- Conductance increases produced by bath application of cholinergic agonists to Electrophorus electroplaques.The Journal of general physiology, 1975