Danker T, Mazzanti M, Tonini R, Rakowska A, Oberleithner H
Physiologisches Institut, Würzburg, Germany.
Cell Biol Int. 1997 Nov;21(11):747-57. doi: 10.1006/cbir.1997.0219.
Nuclear patch clamp is an emerging research field that aims to disclose the electrical phenomena underlying macromolecular transport across the nuclear envelope (NE), its properties as an ion barrier and its function as an intracellular calcium store. The authors combined the patch clamp technique with atomic force microscopy (AFM) to investigate the structure-function relationship of NE. In principle, patch clamp currents, recorded from the NE can indicate the activity of the nuclear pore complexes (NPCs) and/or of ion channels in the two biomembranes that compose the NE. However, the role of the NPCs is still nuclear because the observed NE current in patch clamp experiments is lower than expected from the known density of the NPCs. Therefore, AFM was applied to link patch clamp currents to structure. The membrane patch was excised from the nuclear envelope and, after electrical evaluation, transferred from the patch pipette to a substrate. We could identify the native nuclear membrane patches with AFM at a lateral and a vertical resolution of 3 nm and 0.1 nm, respectively. It was shown that complete NE together with NPCs can be excised from the nucleus after their functional identification in patch clamp experiments. However, we also show that membranes of the endoplasmic reticulum can contaminate the tip of the patch pipette during nuclear patch clamp experiments. This possibility must be considered carefully in nuclear patch clamp experiments.
核膜片钳是一个新兴的研究领域,旨在揭示大分子跨核膜(NE)转运背后的电现象、其作为离子屏障的特性以及其作为细胞内钙库的功能。作者将膜片钳技术与原子力显微镜(AFM)相结合,以研究核膜的结构-功能关系。原则上,从核膜记录的膜片钳电流可以指示构成核膜的两个生物膜中核孔复合体(NPC)和/或离子通道的活性。然而,NPC的作用仍然存疑,因为在膜片钳实验中观察到的核膜电流低于根据已知NPC密度预期的电流。因此,应用AFM将膜片钳电流与结构联系起来。从核膜上切下膜片,在进行电学评估后,将其从膜片吸管转移到基质上。我们可以分别以3 nm和0.1 nm的横向和纵向分辨率,用AFM识别天然核膜片。结果表明,在膜片钳实验中对其进行功能鉴定后,可以从细胞核中切下完整的核膜及其NPC。然而,我们也表明,在内核膜片钳实验过程中,内质网的膜可能会污染膜片吸管的尖端。在核膜片钳实验中必须仔细考虑这种可能性。