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PF4是一种与FMRF酰胺相关的肽,可调控猪蛔虫中的低电导氯离子通道。

PF4, a FMRFamide-related peptide, gates low-conductance Cl(-) channels in Ascaris suum.

作者信息

Purcell Jenny, Robertson Alan P, Thompson David P, Martin Richard J

机构信息

Department of Preclinical Veterinary Science, University of Edinburgh, Summerhall, UK.

出版信息

Eur J Pharmacol. 2002 Dec 5;456(1-3):11-7. doi: 10.1016/s0014-2999(02)02622-5.

Abstract

Here we describe the actions of the peptide Lys-Pro-Asn-Phe-Ile-Arg-Phe-NH(2), or PF4, on inside-out membrane patches (n=164), recorded from vesicles derived from Ascaris suum somatic muscle cells. We observed numerous, small-amplitude Cl(-) channels in the membrane patches. The conductance of the Cl(-) channels ranged from 1.09 to 7.07 pS, the open probability (P(open)) ranged from 0.047+/-0.015 (mean+/-S.E.M.) at 0 microM PF4 to 0.156+/-0.026 at 0.1 microM PF4. The channel mean open time was more variable and prolonged at negative potentials than when the membrane patch was clamped at positive potentials: at 0.03 microM PF4, the mean open time (+/-S.E.M) at -80 mV was 522+/-333 ms; at+80 mV, it was 25+/-7 ms. When patches were isolated from the parent vesicle, there were no changes in channel characteristics, suggesting that the channels function without the involvement of cytoplasmic components. Similarly, the channel characteristics were not affected by the G-protein inhibitor, guanosine-5'-O-(2-thiodiphosphate), indicating that the ion channels do not require a G-protein to function. These data indicate that the PF4-activated Cl(-) channels function independently of intracellular signal transducers and are, therefore, directly gated by PF4.

摘要

在此,我们描述了肽 Lys-Pro-Asn-Phe-Ile-Arg-Phe-NH₂(即 PF4)对源自猪蛔虫体肌细胞的囊泡所记录的内翻膜片(n = 164)的作用。我们在膜片中观察到大量小幅度的 Cl⁻通道。Cl⁻通道的电导范围为 1.09 至 7.07 pS,开放概率(P(open))在 0 μM PF4 时为 0.047 ± 0.015(平均值 ± 标准误),在 0.1 μM PF4 时为 0.156 ± 0.026。通道的平均开放时间在负电位时比膜片钳制在正电位时更具变化性且延长:在 0.03 μM PF4 时, -80 mV 处的平均开放时间(±标准误)为 522 ± 333 ms;在 +80 mV 时,为 25 ± 7 ms。当从母囊泡分离膜片时,通道特性没有变化,这表明通道的功能无需细胞质成分的参与。同样,通道特性不受 G 蛋白抑制剂鸟苷 -5'-O-(2-硫代二磷酸) 的影响,这表明离子通道的功能不需要 G 蛋白。这些数据表明,PF4 激活的 Cl⁻通道独立于细胞内信号转导器发挥作用,因此是由 PF4 直接门控的。

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