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利用荧光共振能量转移和全内反射荧光显微镜测量质膜ATP门控P2X2与α4β2烟碱型通道之间的埃尺度相互作用。

An angstrom scale interaction between plasma membrane ATP-gated P2X2 and alpha4beta2 nicotinic channels measured with fluorescence resonance energy transfer and total internal reflection fluorescence microscopy.

作者信息

Khakh Baljit S, Fisher James A, Nashmi Raad, Bowser David N, Lester Henry A

机构信息

Medical Research Council Laboratory of Molecular Biology, Cambridge CB2 2QH, United Kingdom.

出版信息

J Neurosci. 2005 Jul 20;25(29):6911-20. doi: 10.1523/JNEUROSCI.0561-05.2005.

Abstract

Structurally distinct nicotinic and P2X channels interact functionally, such that coactivation results in cross-inhibition of one or both channel types. It is hypothesized, but not yet proven, that nicotinic and P2X channels interact at the plasma membrane. Here, we show that plasma membrane alpha4beta2 nicotinic and P2X2 channels form a molecular scale partnership and also influence each other when coactivated, resulting in nonadditive cross-inhibitory responses. Total internal reflection fluorescence and fluorescence resonance energy transfer microscopy between fluorescently labeled P2X2 and alpha4beta2 nicotinic channels demonstrated close spatial arrangement of the channels in human embryonic kidney cells and in hippocampal neuron membranes. The data suggest that P2X2 and alpha4beta2 channels may form a dimer, with the channels approximately 80 A apart. The measurements also show that P2X2 subunits interact specifically and robustly with the beta2 subunits in alpha4beta2 channels. The data provide direct evidence for the close spatial apposition of full-length P2X2 and alpha4beta2 channels within 100 nm of the plasma membrane of living cells.

摘要

结构上不同的烟碱型和P2X通道在功能上相互作用,因此共同激活会导致一种或两种通道类型的交叉抑制。据推测(但尚未得到证实),烟碱型和P2X通道在质膜上相互作用。在此,我们表明质膜α4β2烟碱型和P2X2通道形成分子尺度的伙伴关系,并且在共同激活时也相互影响,从而导致非加性交叉抑制反应。荧光标记的P2X2和α4β2烟碱型通道之间的全内反射荧光和荧光共振能量转移显微镜显示了这些通道在人胚肾细胞和海马神经元膜中的紧密空间排列。数据表明P2X2和α4β2通道可能形成二聚体,通道之间相距约80埃。测量还表明,P2X2亚基与α4β2通道中的β2亚基特异性且强烈地相互作用。这些数据为全长P2X2和α4β2通道在活细胞质膜100纳米范围内的紧密空间并列提供了直接证据。

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