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生长调节性成纤维细胞IK通道是大鼠前列腺癌细胞的显著电生理特征。

The growth regulatory fibroblast IK channel is the prominent electrophysiological feature of rat prostatic cancer cells.

作者信息

Rane S G

机构信息

Department of Biological Sciences, Purdue University, West Lafayette, Indiana 47907, USA.

出版信息

Biochem Biophys Res Commun. 2000 Mar 16;269(2):457-63. doi: 10.1006/bbrc.2000.2309.

Abstract

Physiological effectors for mitogenic cell growth control remain to be determined for mammalian tumor cells, particularly those derived from prostatic tissue. One such effector for mitogenic Ras/MAPK signaling in fibroblasts is an intermediate-conductance, calcium-activated potassium channel (FIK). In this study patch-clamp electrophysiology was used to show that both AT2.1 and MatLyLu rat prostate cancer cell lines express high levels of a current identified as FIK, based on the following criteria: activation by elevation of intracellular calcium, voltage independence, potassium selectivity, and block by charybdotoxin (ChTX) and the Stichodactyla helianthus potassium channel neurotoxin (StK). FIK current densities in AT2.1 and MatLyLu cells were comparable to the high levels seen in fibroblasts transfected with oncogenic Ras or Raf, suggesting hyperactivity of the Ras/MAPK pathway in prostatic cancer cells. Voltage-gated sodium current was present in most MatLyLu cells but absent from AT2.1 cells, and all AT2.1 cells had voltage-gated potassium currents. Thus, FIK is the main electrophysiological feature of rat prostatic cancer cells as it is for mitogenically active fibroblasts, suggesting it may play a similar growth regulatory role in both.

摘要

对于哺乳动物肿瘤细胞,尤其是源自前列腺组织的肿瘤细胞,有丝分裂原性细胞生长控制的生理效应器仍有待确定。成纤维细胞中有丝分裂原性Ras/MAPK信号传导的一种此类效应器是一种中等电导、钙激活钾通道(FIK)。在本研究中,基于以下标准,采用膜片钳电生理学方法表明AT2.1和MatLyLu大鼠前列腺癌细胞系均表达高水平的一种被鉴定为FIK的电流:细胞内钙升高激活、电压非依赖性、钾选择性以及被蝎毒素(ChTX)和沙海葵钾通道神经毒素(StK)阻断。AT2.1和MatLyLu细胞中的FIK电流密度与用致癌性Ras或Raf转染的成纤维细胞中所见的高水平相当,表明前列腺癌细胞中Ras/MAPK途径的活性过高。大多数MatLyLu细胞中存在电压门控钠电流,但AT2.1细胞中不存在,并且所有AT2.1细胞都有电压门控钾电流。因此,FIK是大鼠前列腺癌细胞的主要电生理特征,就如同它是有丝分裂原活性成纤维细胞的主要电生理特征一样,这表明它可能在两者中发挥类似的生长调节作用。

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