Toyoda Hiroki, Yamada Junko, Ueno Shinya, Okabe Akihito, Kato Hiroshi, Sato Kohji, Hashimoto Kenji, Fukuda Atsuo
Department of Physiology, Hamamatsu University School of Medicine, Hamamatsu, Shizuoka 431-3192, Japan.
Brain Res Mol Brain Res. 2005 Jan 5;133(1):12-8. doi: 10.1016/j.molbrainres.2004.09.015.
GABA is the main inhibitory neurotransmitter in the adult brain, which causes Cl- influx into the cell via GABAA receptors. The direction of Cl- inflow is dependent on the Cl- gradient across the membrane. Cation-Cl- cotransporters have been considered to play pivotal roles in controlling intracellular Cl- concentration ([Cl-]i) of neurons; hence, they modulate the GABAergic function. To elucidate how these cotransporters are distributed in the trigeminal nuclei, we investigated the expressions of K+-Cl- cotransporters (KCC1 and KCC2) and Na+-K+-2Cl- cotransporter (NKCC1) mRNAs by using in situ hybridization histochemistry. KCC2 mRNA was expressed in the motor trigeminal nucleus (Mo5), the principal trigeminal nucleus (Pr5), and the spinal trigeminal nucleus (Sp5), but not in the trigeminal ganglion (TG) and the mesencephalic trigeminal nucleus (Me5). On the other hand, KCC1 and NKCC1 mRNAs were expressed in all the trigeminal nuclei. The resting [Cl-]i of Me5 neurons was significantly higher than that of Mo5 neurons. Thus, in primary sensory neurons such as the TG and the Me5, [Cl-]i would be higher than those in the other trigeminal nuclei because of the lack of KCC2 mRNA expression. Since Me5 neurons, but not Mo5 neurons, responded to GABA by depolarization, GABA would have differential physiological functions among trigeminal nuclei and TG.
γ-氨基丁酸(GABA)是成人大脑中主要的抑制性神经递质,它通过GABAA受体使氯离子流入细胞。氯离子流入的方向取决于跨膜的氯离子梯度。阳离子-氯离子共转运体被认为在控制神经元细胞内氯离子浓度([Cl-]i)方面起关键作用;因此,它们调节GABA能功能。为了阐明这些共转运体在三叉神经核中的分布情况,我们采用原位杂交组织化学方法研究了钾离子-氯离子共转运体(KCC1和KCC2)以及钠离子-钾离子-2氯离子共转运体(NKCC1)mRNA的表达。KCC2 mRNA在三叉神经运动核(Mo5)、三叉神经主核(Pr5)和三叉神经脊髓核(Sp5)中表达,但在三叉神经节(TG)和三叉神经中脑核(Me5)中不表达。另一方面,KCC1和NKCC1 mRNA在所有三叉神经核中均有表达。Me5神经元的静息[Cl-]i显著高于Mo5神经元。因此,在诸如TG和Me5等初级感觉神经元中,由于缺乏KCC2 mRNA表达,[Cl-]i会高于其他三叉神经核中的[Cl-]i。由于Me5神经元而非Mo5神经元对GABA产生去极化反应,GABA在三叉神经核和TG之间可能具有不同的生理功能。