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小胶质细胞中的类HERG钾离子通道。

HERG-like K+ channels in microglia.

作者信息

Zhou W, Cayabyab F S, Pennefather P S, Schlichter L C, DeCoursey T E

机构信息

Department of Molecular Biophysics and Physiology, Rush Presbyterian St. Luke's Medical Center, Chicago, Illinois 60612, USA.

出版信息

J Gen Physiol. 1998 Jun;111(6):781-94. doi: 10.1085/jgp.111.6.781.

Abstract

A voltage-gated K+ conductance resembling that of the human ether-à-go-go-related gene product (HERG) was studied using whole-cell voltage-clamp recording, and found to be the predominant conductance at hyperpolarized potentials in a cell line (MLS-9) derived from primary cultures of rat microglia. Its behavior differed markedly from the classical inward rectifier K+ currents described previously in microglia, but closely resembled HERG currents in cardiac muscle and neuronal tissue. The HERG-like channels opened rapidly on hyperpolarization from 0 mV, and then decayed slowly into an absorbing closed state. The peak K+ conductance-voltage relation was half maximal at -59 mV with a slope factor of 18.6 mV. Availability, assessed by a hyperpolarizing test pulse from different holding potentials, was more steeply voltage dependent, and the midpoint was more positive (-14 vs. -39 mV) when determined by making the holding potential progressively more positive than more negative. The origin of this hysteresis is explored in a companion paper (Pennefather, P.S., W. Zhou, and T.E. DeCoursey. 1998. J. Gen. Physiol. 111:795-805). The pharmacological profile of the current differed from classical inward rectifier but closely resembled HERG. Block by Cs+ or Ba2+ occurred only at millimolar concentrations, La3+ blocked with Ki = approximately 40 microM, and the HERG-selective blocker, E-4031, blocked with Ki = 37 nM. Implications of the presence of HERG-like K+ channels for the ontogeny of microglia are discussed.

摘要

利用全细胞膜片钳记录技术研究了一种类似于人类“快失活”相关基因产物(HERG)的电压门控钾离子电导,发现它是源自大鼠小胶质细胞原代培养的细胞系(MLS-9)在超极化电位时的主要电导。其行为与先前描述的小胶质细胞中的经典内向整流钾离子电流明显不同,但与心肌和神经组织中的HERG电流极为相似。HERG样通道在从0 mV超极化时迅速开放,然后缓慢衰减至一个吸收性关闭状态。钾离子电导-电压关系峰值在-59 mV时达到最大值的一半,斜率因子为18.6 mV。通过从不同钳制电位施加超极化测试脉冲评估的通道可用性对电压的依赖性更强,并且当钳制电位逐渐更正比更负时确定的中点更正(-14 mV对-39 mV)。在一篇配套论文(Pennefather, P.S., W. Zhou, and T.E. DeCoursey. 1998. J. Gen. Physiol. 111:795-805)中探讨了这种滞后现象的起源。该电流的药理学特征与经典内向整流不同,但与HERG极为相似。Cs+或Ba2+仅在毫摩尔浓度时产生阻断作用,La3+以Ki约为40 microM进行阻断,而HERG选择性阻断剂E-4031以Ki = 37 nM进行阻断。文中讨论了小胶质细胞中存在HERG样钾离子通道对其个体发生的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f5bf/2217149/ccb4e5f582e5/JGP7601.s1.jpg

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