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首页> 外文期刊>Neuroscience Letters: An International Multidisciplinary Journal Devoted to the Rapid Publication of Basic Research in the Brain Sciences >Gamma-aminobutyric acid(B) autoreceptors in substantia nigra and neostriatum of the weaver mutant mouse.
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Gamma-aminobutyric acid(B) autoreceptors in substantia nigra and neostriatum of the weaver mutant mouse.

机译:韦弗突变小鼠的黑质和新纹状体中的γ-氨基丁酸(B)自体受体。

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摘要

The weaver mutation causes cell loss in the center of the substantia nigra, pars compacta. We compared the depression of gamma-aminobutyric acid (GABA)(A) synaptic currents by the GABA(B) agonist R-baclofen in pars compacta neurons of weaver mice which were largely spared from cell degeneration and of wild-type mice. In weaver neurons the suppression of GABA(A) synaptic currents by R-baclofen was reduced compared to wild-type neurons. The EC(50) of R-baclofen was 6.3 times higher in weaver than in wild-type mice. In the neostriatum, which is not a target of the mutation, such a difference did not exist. We conclude that in the pars compacta the weaver mutation leads to a reduced presynaptic autoinhibition through GABA(B) receptors which may promote survival of a subset of weaver neurons in the pars compacta.
机译:韦弗突变导致黑质中心的细胞丢失,致密性。我们比较了γ-氨基丁酸(GABA)(A)突触电流由GABA(B)激动剂R-baclofen在织布小鼠的pars致密神经元中的压抑电流,这些神经元在很大程度上避免了细胞变性和野生型小鼠的生长。在韦弗神经元中,与野生型神经元相比,R-baclofen对GABA(A)突触电流的抑制作用降低。织布工中R-baclofen的EC(50)比野生型小鼠高6.3倍。在不是突变目标的新纹状体中,不存在这种差异。我们得出的结论是,在致密性pars中,编织者突变导致通过GABA(B)受体的突触前自抑制作用降低,这可能会促进致密性pars中的编织神经元子集的存活。

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