Bobanovic Laura K, Royle Stephen J, Murrell-Lagnado Ruth D
Department of Pharmacology, University of Cambridge, Cambridge CB2 1PD, United Kingdom.
J Neurosci. 2002 Jun 15;22(12):4814-24. doi: 10.1523/JNEUROSCI.22-12-04814.2002.
P2X receptors within the CNS mediate excitatory synaptic transmission and also act presynaptically to modulate neurotransmitter release. We have studied the targeting and trafficking of P2X4 and P2X2 receptors heterologously expressed in cultured olfactory bulb neurons. Homomeric P2X4 receptors had a punctate distribution, and many of the puncta colocalized with early endosomes. In contrast, P2X2 receptors were primarily localized at the plasma membrane. By antibody-labeling of surface receptors in living neurons, we showed that P2X4 receptors undergo rapid constitutive internalization and subsequent reinsertion into the plasma membrane, whereas P2X2 receptors were not regulated in such a way. The internalization of P2X4 receptors was dynamin-dependent, and the binding of ATP enhanced the basal rate of retrieval in a Ca2+-independent manner. The presence of the P2X4 subunit in a P2X4/6 heteromer governed the trafficking properties of the receptor. P2X receptors acted presynaptically to enhance the release of glutamate, suggesting that the regulated cycling of P2X4-containing receptors might provide a mechanism for modulation of synaptic transmission.
中枢神经系统内的P2X受体介导兴奋性突触传递,并且还在突触前发挥作用以调节神经递质释放。我们研究了在培养的嗅球神经元中异源表达的P2X4和P2X2受体的靶向和运输。同源性P2X4受体呈点状分布,并且许多点状结构与早期内体共定位。相比之下,P2X2受体主要定位于质膜。通过对活神经元表面受体进行抗体标记,我们发现P2X4受体经历快速组成型内化并随后重新插入质膜,而P2X2受体则不以这种方式受到调节。P2X4受体的内化依赖于发动蛋白,并且ATP的结合以不依赖Ca2+的方式提高了基础回收速率。P2X4/6异聚体中P2X4亚基的存在决定了受体的运输特性。P2X受体在突触前发挥作用以增强谷氨酸的释放,这表明含P2X4受体的调节性循环可能为突触传递的调节提供一种机制。