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Neto2 Modulation of Kainate Receptors with Different Subunit Compositions

机译:不同亚基组成的海藻酸盐受体的Neto2调节。

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摘要

Kainate receptors are less well understood than other glutamate receptors, and synaptic kainate receptors display properties that differ from recombinant receptors. In particular, the slow decay of kainate receptor synaptic currents contrasts with the rapid deactivation and desensitization of receptors expressed in heterologous cells. We recently identified Neuropilin and Tolloid like-2 (Neto2) as a novel accessory subunit of kainate receptors and showed that Neto2 modulates the gating kinetics of GluK2 receptors. However, the kainate receptor family consists of five different subunits (GluK1–5) that can form homomeric and heteromeric receptors with different functional properties. Here, we tested whether Neto2 modulation varies with subunit composition. Rapid application techniques were used to apply glutamate to outside–out patches that contained GluK1, GluK1/5, or GluK2/5 kainate receptors. Coexpression of Neto2 slowed desensitization to varying degrees. Responses to 1 ms pulses of glutamate were also slowed by Neto2, especially for receptors containing GluK5, as were postsynaptic currents in neurons expressing recombinant kainate receptors. In addition, Neto2 markedly increased the rate at which some receptors recovered from desensitization. These results suggest that Neto2 modulates the function of most kainate receptors.
机译:与其他谷氨酸受体相比,对海藻酸盐受体的了解较少,并且突触海藻酸盐受体显示出与重组受体不同的性质。特别地,海藻酸盐受体突触电流的缓慢衰减与异源细胞中表达的受体的快速失活和脱敏相反。我们最近确定了Neuropilin和Tolloid like-2(Neto2)作为海藻酸盐受体的新型辅助亚基,并表明Neto2调节GluK2受体的门控动力学。但是,海藻酸盐受体家族由五个不同的亚基(GluK1-5)组成,可以形成具有不同功能特性的同聚和异聚受体。在这里,我们测试了Neto2调制是否随亚基组成而变化。快速施用技术用于将谷氨酸盐施用到含有GluK1,GluK1 / 5或GluK2 / 5海藻酸酯受体的外向斑块上。 Neto2的共表达减缓了脱敏的程度。 Neto2也减慢了对1 ms谷氨酸脉冲的响应,特别是对于含有GluK5的受体,表达重组海藻酸盐受体的神经元中的突触后电流也是如此。此外,Neto2显着提高了某些受体从脱敏中恢复的速度。这些结果表明,Neto2调节大多数海藻酸盐受体的功能。

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