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PLC-β1 和 β4 参与了 HeLa 细胞中组氨酸诱导的钙信号的非遗传细胞间变异性。

Phospholipase C-β1 and β4 contribute to non-genetic cell-to-cell variability in histamine-induced calcium signals in HeLa cells.

机构信息

Laboratory for Developmental Neurobiology, RIKEN Brain Science Institute, Wako, Japan.

Laboratory of Genome and Biosignal, Tokyo University of Pharmacy and Life Sciences, Tokyo, Japan.

出版信息

PLoS One. 2014 Jan 27;9(1):e86410. doi: 10.1371/journal.pone.0086410. eCollection 2014.

Abstract

A uniform extracellular stimulus triggers cell-specific patterns of Ca(2+) signals, even in genetically identical cell populations. However, the underlying mechanism that generates the cell-to-cell variability remains unknown. We monitored cytosolic inositol 1,4,5-trisphosphate (IP3) concentration changes using a fluorescent IP3 sensor in single HeLa cells showing different patterns of histamine-induced Ca(2+) oscillations in terms of the time constant of Ca(2+) spike amplitude decay and the Ca(2+) oscillation frequency. HeLa cells stimulated with histamine exhibited a considerable variation in the temporal pattern of Ca(2+) signals and we found that there were cell-specific IP3 dynamics depending on the patterns of Ca(2+) signals. RT-PCR and western blot analyses showed that phospholipase C (PLC)-β1, -β3, -β4, -γ1, -δ3 and -ε were expressed at relatively high levels in HeLa cells. Small interfering RNA-mediated silencing of PLC isozymes revealed that PLC-β1 and PLC-β4 were specifically involved in the histamine-induced IP3 increases in HeLa cells. Modulation of IP3 dynamics by knockdown or overexpression of the isozymes PLC-β1 and PLC-β4 resulted in specific changes in the characteristics of Ca(2+) oscillations, such as the time constant of the temporal changes in the Ca(2+) spike amplitude and the Ca(2+) oscillation frequency, within the range of the cell-to-cell variability found in wild-type cell populations. These findings indicate that the heterogeneity in the process of IP3 production, rather than IP3-induced Ca(2+) release, can cause cell-to-cell variability in the patterns of Ca(2+) signals and that PLC-β1 and PLC-β4 contribute to generate cell-specific Ca(2+) signals evoked by G protein-coupled receptor stimulation.

摘要

一种统一的细胞外刺激会引发细胞特异性的 Ca(2+)信号模式,即使在遗传上相同的细胞群体中也是如此。然而,产生细胞间变异性的潜在机制尚不清楚。我们使用荧光 IP3 传感器在单个 HeLa 细胞中监测细胞溶质肌醇 1,4,5-三磷酸 (IP3) 浓度变化,这些细胞根据 Ca(2+) 峰幅度衰减的时间常数和 Ca(2+) 振荡频率表现出不同的组胺诱导的 Ca(2+) 振荡模式。用组胺刺激的 HeLa 细胞表现出 Ca(2+) 信号的时间模式的相当大的变化,并且我们发现根据 Ca(2+) 信号的模式存在细胞特异性的 IP3 动力学。RT-PCR 和 Western blot 分析表明,PLC-β1、-β3、-β4、-γ1、-δ3 和 -ε 在 HeLa 细胞中表达水平较高。PLC 同工酶的小干扰 RNA 介导的沉默表明 PLC-β1 和 PLC-β4 特异性参与组胺诱导的 HeLa 细胞中 IP3 的增加。同工酶 PLC-β1 和 PLC-β4 的 knockdown 或过表达对 IP3 动力学的调节导致 Ca(2+) 振荡特性的特异性变化,例如 Ca(2+) 峰幅度的时间变化的时间常数和 Ca(2+) 振荡频率,在野生型细胞群体中发现的细胞间变异性范围内。这些发现表明,IP3 产生过程的异质性,而不是 IP3 诱导的 Ca(2+) 释放,可以导致 Ca(2+) 信号模式的细胞间变异性,并且 PLC-β1 和 PLC-β4 有助于产生 G 蛋白偶联受体刺激引起的细胞特异性 Ca(2+) 信号。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/09f5/3903530/a4245d134c7f/pone.0086410.g001.jpg

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