Department of Psychiatry, Neurochemical Research Unit, University of Alberta, Edmonton, Alberta, Canada.
Neuroscience. 2010 Oct 27;170(3):722-30. doi: 10.1016/j.neuroscience.2010.07.026. Epub 2010 Jul 24.
Accumulated evidence suggests that the single transmembrane domain insulin-like growth factor-II/mannose 6-phosphate receptor (IGF-II/M6P or IGF-II receptor) plays an important role in the intracellular trafficking of lysosomal enzymes and endocytosis-mediated degradation of insulin like growth factor (IGF-II). However, the role of this receptor in signal transduction following IGF-II binding remains controversial. In the present study, we revealed that Leu(27)IGF-II, an analog which binds preferentially to the IGF-II receptor, can attenuate K(+)-as well as veratridine-evoked GABA release from the adult rat hippocampal formation. Tetrodotoxin failed to alter the effects of Leu(27)IGF-II on GABA release, thus suggesting the lack of involvement of voltage-dependent Na(+) channels. Interestingly, the effect is found to be sensitive to pertussis toxin (PTX), indicating the possible involvement of a Gi/o protein-dependent pathway in mediating the release of GABA from the hippocampal slices. Additionally, Leu(27)IGF-II was found to attenuate GABA release from frontal cortex but not from striatum. These results, together with the evidence that IGF-II receptors are localized on GABAergic neurons, raised the possibility that this receptor, apart from mediating intracellular trafficking, may also be involved in the regulation of endogenous GABA release by acting directly on GABAergic terminals.
积累的证据表明,单一跨膜域胰岛素样生长因子-II/甘露糖 6-磷酸受体(IGF-II/M6P 或 IGF-II 受体)在溶酶体酶的细胞内运输和胰岛素样生长因子(IGF-II)的内吞介导降解中发挥重要作用。然而,该受体在 IGF-II 结合后的信号转导中的作用仍存在争议。在本研究中,我们揭示了 Leu(27)IGF-II,一种优先与 IGF-II 受体结合的类似物,可减弱 K(+)以及藜芦碱诱导的成年大鼠海马结构中 GABA 的释放。河豚毒素未能改变 Leu(27)IGF-II 对 GABA 释放的影响,因此表明电压依赖性 Na(+)通道不参与其中。有趣的是,该效应对百日咳毒素(PTX)敏感,表明 Gi/o 蛋白依赖性途径可能参与介导海马切片中 GABA 的释放。此外,Leu(27)IGF-II 被发现可减弱来自额叶皮层但不是纹状体的 GABA 释放。这些结果以及 IGF-II 受体定位于 GABA 能神经元的证据表明,除了介导细胞内运输外,该受体还可能通过直接作用于 GABA 能末梢参与内源性 GABA 释放的调节。