Role of Acetylcholinesterase on the Structure and Function of Cholinergic Synapses: Insights Gained from Studies on Knockout Mice

被引:10
作者
Adler, Michael [1 ]
Sweeney, Richard E. [2 ]
Hamilton, Tracey A. [3 ]
Lockridge, Oksana [4 ]
Duysen, Ellen G. [4 ]
Purcell, Angela L. [1 ]
Deshpande, Sharad S. [1 ]
机构
[1] USA, Med Res Inst Chem Def, Analyt Toxicol Div, Neurobehav Toxicol Branch, Aberdeen Proving Ground, MD 21010 USA
[2] USA, Med Res Inst Chem Def, Div Res, Pharmacol Branch, Aberdeen Proving Ground, MD 21010 USA
[3] USA, Med Res Inst Chem Def, Res Support Div, Comparat Pathol Branch, Aberdeen Proving Ground, MD 21010 USA
[4] Univ Nebraska, Med Ctr, Eppley Inst, Omaha, NE 68198 USA
关键词
Neuromuscular junction; Cholinesterase; Knockout mouse; Diaphragm muscle; Electron microscopy; Endplate potential; QUANTAL TRANSMITTER RELEASE; BUTYRYLCHOLINESTERASE; MOUSE; SUPERSENSITIVITY; DESENSITIZATION; INHIBITION; POTENTIALS; ACTIVATION; RECEPTORS; DIAPHRAGM;
D O I
10.1007/s10571-011-9690-5
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
Electrophysiological and ultrastructural studies were performed on phrenic nerve-hemidiaphragm preparations isolated from wild-type and acetylcholinesterase (AChE) knockout (KO) mice to determine the compensatory mechanisms manifested by the neuromuscular junction to excess acetylcholine (ACh). The diaphragm was selected since it is the primary muscle of respiration, and it must adapt to allow for survival of the organism in the absence of AChE. Nerve-elicited muscle contractions, miniature endplate potentials (MEPPs) and evoked endplate potentials (EPPs) were recorded by conventional electrophysiological techniques from phrenic nerve-hemidiaphragm preparations isolated from 1.5- to 2-month-old wild-type (AChE(+/+)) or AChE KO (AChE(-/-)) mice. These recordings were chosen to provide a comprehensive assessment of functional alterations of the diaphragm muscle resulting from the absence of AChE. Tension measurements from AChE(-/-) mice revealed that the amplitude of twitch tensions was potentiated, but tetanic tensions underwent a use-dependent decline at frequencies below 70 Hz and above 100 Hz. MEPPs recorded from hemidiaphragms of AChE(-/-) mice showed a reduction in frequency and a prolongation in decay (37%) but no change in amplitude compared to values observed in age-matched wild-type littermates. In contrast, MEPPs recorded from hemidiaphragms of wild-type mice that were exposed for 30 min to the selective AChE inhibitor 5-bis(4-allyldimethyl-ammoniumphenyl)pentane-3-one (BW284C51) exhibited a pronounced increase in amplitude (42%) and a more marked prolongation in decay (76%). The difference between MEPP amplitudes and decays in AChE(-/-) hemidiaphragms and in wild-type hemidiaphragms treated with BW284C51 represents effective adaptation by the former to a high ACh environment. Electron microscopic examination revealed that diaphragm muscles of AChE(-/-) mice had smaller nerve terminals and diminished pre- and post-synaptic surface contacts relative to neuromuscular junctions of AChE(+/+) mice. The morphological changes are suggested to account, in part, for the ability of muscle from AChE(-/-) mice to function in the complete absence of AChE.
引用
收藏
页码:909 / 920
页数:12
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