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膜片与全细胞膜:大鼠垂体克隆细胞(GH3)电特性的比较

Membrane patches and whole-cell membranes: a comparison of electrical properties in rat clonal pituitary (GH3) cells.

作者信息

Fernandez J M, Fox A P, Krasne S

出版信息

J Physiol. 1984 Nov;356:565-85. doi: 10.1113/jphysiol.1984.sp015483.

Abstract

A comparison has been made between the electrical properties of excised 'outside-out' patches and whole-cell membranes of GH3 cells using the patch-pipette technique. Despite a complicated surface morphology, which includes numerous microvilli, ruffles and blebs, high-resistance seals (typically greater than 10(11) omega) were consistently formed between patch pipettes and GH3 cell membranes. When the internal solution contained 120 mM-CsF, outward currents through K channels were blocked and large Na channel currents were consistently observed in the whole-cell recording mode. Using the same solutions, single Na channel currents were readily observed in outside-out patches. Averaging patch currents yielded macroscopic currents showing the same voltage-dependent kinetics as those observed for the whole-cell membrane. The current vs. voltage and inactivation time constant vs. voltage relationships for the Na channel shifted towards more negative potentials (25 mV or more) within approximately 30 min after going into the whole-cell recording mode. These same relationships could be measured for outside-out patches and their positions along the voltage axis coincided with the asymptotic values measured in the whole-cell mode. When the internal solution contained 120 mM-N-methylglucamine fluoride and the external solution contained 120 mM-Tris chloride, no ionic channel currents could be observed either for whole-cell or outside-out patch membranes. Under these conditions, displacement currents induced by tetraphenyl borate (TPB) were recorded in both types of membranes. The total charge moved showed a sigmoidal dependence upon the applied voltage for both whole-cell and outside-out patch membranes. The charge vs. voltage relationship showed a shift along the voltage axis similar to that observed for Na channels except that the magnitude of the shift was larger. A shift in this relationship was also observed for excised patches but the observable magnitude of the shift was smaller than that in the whole-cell recording mode. The asymptotic values of the charge vs. voltage relationship were similar for whole-cell and outside-out patches, as were the asymptotic values for the translocation time constants. It is concluded that there are no fundamental differences in the properties of ionic channel and displacement currents between whole-cell membranes and excised membrane patches.(ABSTRACT TRUNCATED AT 400 WORDS)

摘要

利用膜片吸管技术,对切除的“外翻”膜片和GH3细胞膜的电特性进行了比较。尽管表面形态复杂,包括众多微绒毛、褶皱和泡状结构,但膜片吸管与GH3细胞膜之间始终能形成高电阻封接(通常大于10¹¹Ω)。当内部溶液含有120 mM - CsF时,通过K通道的外向电流被阻断,并且在全细胞记录模式下始终能观察到较大的Na通道电流。使用相同的溶液,在外翻膜片中很容易观察到单个Na通道电流。对膜片电流进行平均得到宏观电流,其显示出与全细胞膜观察到的相同的电压依赖性动力学。进入全细胞记录模式后约30分钟内,Na通道的电流-电压关系和失活时间常数-电压关系向更负的电位(25 mV或更多)偏移。对于外翻膜片也可以测量这些相同的关系,并且它们在电压轴上的位置与全细胞模式下测量的渐近值一致。当内部溶液含有120 mM - N - 甲基葡糖胺氟化物且外部溶液含有120 mM - 三氯化铯时,全细胞膜和外翻膜片均未观察到离子通道电流。在这些条件下,两种类型的膜中均记录到了由四苯基硼酸盐(TPB)诱导的位移电流。全细胞膜和外翻膜片中,总移动电荷量对施加电压均呈S形依赖性。电荷-电压关系沿电压轴的偏移与Na通道观察到的类似,只是偏移幅度更大。在切除的膜片中也观察到了这种关系的偏移,但可观察到的偏移幅度小于全细胞记录模式。全细胞膜和外翻膜片的电荷-电压关系的渐近值相似,转运时间常数的渐近值也相似。结论是,全细胞膜和切除的膜片在离子通道和位移电流特性上没有根本差异。(摘要截短于400字)

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f623/1193182/28deca6c1127/jphysiol00586-0585-a.jpg

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