Podkletnova I, Mäkelä R, Korpi E R, Lüddens H, Helen P, Alho H
International Graduate School of Neuroscience, Medical School, University of Tampere, Tampere, Finland.
Dev Neurosci. 2000;22(4):296-302. doi: 10.1159/000017453.
The influence of neonatal administration of 6-hydroxydopamine (6-OHDA) on the maturation of GABA(A) receptors in the frontal cortex and hippocampus was studied using 5- to 40-day-old rats. In situ hybridization with antisense oligonucleotide probes was performed for alpha(1), alpha(2), alpha(5), beta(2), beta(3) and gamma(2) subunit mRNAs of the GABA(A) receptor. We demonstrated that neonatal treatment with 6-OHDA temporarily delays the postnatal transcription of the alpha(1) and gamma(2) subunits in the rat prefrontal cortex, as assessed by in situ hybridization histochemistry. The effect was selective for these subunits (the alpha(2), alpha(5), beta(2), and beta(3) subunit mRNAs remained unchanged) and for this region (the mRNA levels in the hippocampus were not changed). The reduction in mRNA levels at early postnatal stages (postnatal day 5, PD5, and PD10) also affected the subunit protein levels, as shown by immunohistochemistry for the alpha(1) subunit, and the formation of GABA(A) receptor-associated picrotoxinin-insensitive TBPS binding sites, as shown by autoradiography. Our findings indicate that without a noradrenergic influence, the maturation of GABAergic interneurons in the frontal cortex is transiently delayed (from PD5 to PD40). However, it is possible that this transient reduction of the expression of certain GABA subunits - caused by depletion of noradrenergic innervation - cannot cause a lasting alteration to the GABAergic function in the prefrontal cortex.
利用5至40日龄大鼠,研究了新生期给予6-羟基多巴胺(6-OHDA)对额叶皮质和海马中GABA(A)受体成熟的影响。使用GABA(A)受体的α(1)、α(2)、α(5)、β(2)、β(3)和γ(2)亚基mRNA的反义寡核苷酸探针进行原位杂交。通过原位杂交组织化学评估,我们证明新生期用6-OHDA处理会暂时延迟大鼠前额叶皮质中α(1)和γ(2)亚基的出生后转录。这种影响对这些亚基(α(2)、α(5)、β(2)和β(3)亚基mRNA保持不变)以及该区域(海马中的mRNA水平未改变)具有选择性。出生后早期阶段(出生后第5天,PD5和PD10)mRNA水平的降低也影响了亚基蛋白水平,如α(1)亚基的免疫组织化学所示,以及GABA(A)受体相关的印防己毒素不敏感的TBPS结合位点的形成,如放射自显影所示。我们的研究结果表明,在没有去甲肾上腺素能影响的情况下,额叶皮质中GABA能中间神经元的成熟会暂时延迟(从PD5到PD40)。然而,由去甲肾上腺素能神经支配耗竭引起的某些GABA亚基表达的这种短暂降低,可能不会导致前额叶皮质中GABA能功能的持久改变。