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Unmasking group III metabotropic glutamate autoreceptor function at excitatory synapses in the rat CNS

机译:在大鼠中枢神经系统的兴奋性突触中揭示III型代谢型谷氨酸自身受体的功能

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摘要

Presynaptic group III metabotropic glutamate receptor (mGluR) activation by exogenous agonists (such as l-2-amino-4-phosphonobutyrate (l-AP4)) potently inhibit transmitter release, but their autoreceptor function has been questioned because endogenous activation during high-frequency stimulation appears to have little impact on synaptic amplitude. We resolve this ambiguity by studying endogenous activation of mGluRs during trains of high-frequency synaptic stimuli at the calyx of Held. In vitro whole-cell patch recordings were made from medial nucleus of the trapezoid body (MNTB) neurones during 1 s excitatory postsynaptic current (EPSC) trains delivered at 200 Hz and at 37°C. The group III mGluR antagonist (R,S)-cyclopropyl-4-phosphonophenylglycine (CPPG, 300 μm) had no effect on EPSC short-term depression, but accelerated subsequent recovery time course (τ: 4.6 ± 0.8 s to 2.4 ± 0.4 s, P= 0.02), and decreased paired pulse ratio from 1.18 ± 0.06 to 0.97 ± 0.03 (P= 0.01), indicating that mGluR activation reduced release probability (P). Modelling autoreceptor activation during repetitive stimulation revealed that as P declines, the readily releasable pool size (N) increases so that the net EPSC (NP) is unchanged and short-term depression proceeds with the same overall time course as in the absence of autoreceptor activation. Thus, autoreceptor action on the synaptic response is masked but the synapse is now in a different state (lower P, higher N). While vesicle replenishment clearly underlies much of the recovery from short-term depression, our results show that the recovery time course of P also contributes to the reduced response amplitude for 1–2 s. The results show that passive equilibration between N and P masks autoreceptor modulation of the EPSC and suggests that mGluR autoreceptors function to change the synaptic state and distribute metabolic demand, rather than to depress synaptic amplitude.
机译:突触前的III型代谢型谷氨酸受体(mGluR)被外源性激动剂(例如1--2-氨基-4-膦酸丁酸酯(l-AP4))激活会有效抑制递质释放,但由于在高频时内源性激活,它们的自身受体功能受到质疑刺激似乎对突触振幅几乎没有影响。我们通过研究在Held的萼片中的高频突触刺激过程中mGluRs的内源激活来解决这种歧义。体外全细胞膜片记录是在200 Hz和37°C的1 s兴奋性突触后电流(EPSC)训练期间,从梯形体(MNTB)神经元的内侧核进行的。 III组mGluR拮抗剂(R,S)-环丙基-4-膦酰基苯基甘氨酸(CPPG,300μm)对EPSC短期抑郁无影响,但可加快随后的恢复时间(τ:4.6±0.8 s至2.4±0.4 s) ,P = 0.02),并且配对脉冲比率从1.18±0.06降低到0.97±0.03(P = 0.01),表明mGluR激活降低了释放概率(P)。在重复刺激过程中对自体受体激活进行建模显示,随着P的降低,易于释放的池大小(N)增大,因此净EPSC(NP)不变,并且短期抑郁症的总体发展历程与无自体受体激活的情况相同。因此,对突触反应的自体受体作用被掩盖了,但是突触现在处于不同的状态(较低的P,较高的N)。虽然囊泡补充显然是短期抑郁症恢复的重要基础,但我们的结果表明P的恢复时间过程也有助于降低响应幅度1–2 s。结果表明,N和P之间的被动平衡掩盖了EPSC的自受体调节作用,并表明mGluR自受体起着改变突触状态和分配代谢需求的作用,而不是抑制突触振幅。

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