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PLCβ1 通过 PKCα 介导的途径调节 K562 细胞的增殖。

K562 cell proliferation is modulated by PLCβ1 through a PKCα-mediated pathway.

机构信息

Cellular Signaling Laboratory, Department of Biomedical Sciences, University of Bologna, Bologna, Italy.

出版信息

Cell Cycle. 2013 Jun 1;12(11):1713-21. doi: 10.4161/cc.24806. Epub 2013 May 6.

Abstract

Phospholipase C β1 (PLCβ1) is known to play an important role in cell proliferation. Previous studies reported an involvement of PLCβ1 in G 0-G 1/S transition and G 2/M progression in Friend murine erythroleukemia cells (FELC). However, little has been found about its role in human models. Here, we used K562 cell line as human homologous of FELC in order to investigate the possible key regulatory role of PLCβ1 during cell proliferation of this human cell line. Our studies on the effects of the overexpression of both these isoforms showed a specific and positive connection between cyclin D3 and PLCβ1 in K562 cells, which led to a prolonged S phase of the cell cycle and a delay in cell proliferation. In order to shed light on this mechanism, we decided to study the possible involvement of protein kinases C (PKC), known to be direct targets of PLC signaling and important regulators of cell proliferation. Our data showed a peculiar decrease of PKCα levels in cells overexpressing PLCβ1. Moreover, when we silenced PKCα, by RNAi technique, in order to mimic the effects of PLCβ1, we caused the same upregulation of cyclin D3 levels and the same decrease of cell proliferation found in PLCβ1-overexpressing cells. The key features emerging from our studies in K562 cells is that PLCβ1 targets cyclin D3, likely through a PKCα-mediated-pathway, and that, as a downstream effect of its activity, K562 cells undergo an accumulation in the S phase of the cell cycle.

摘要

磷酯酶 Cβ1(PLCβ1)在细胞增殖中起着重要作用。先前的研究报道 PLCβ1 参与 Friend 鼠红白血病细胞(FELC)的 G0-G1/S 转换和 G2/M 进展。然而,在人类模型中,其作用知之甚少。在这里,我们使用 K562 细胞系作为 FELC 的人类同源物,以研究 PLCβ1 在该人类细胞系增殖过程中的可能关键调节作用。我们对这两种同工酶过表达的影响的研究表明,在 K562 细胞中,细胞周期蛋白 D3 和 PLCβ1 之间存在特定的正相关关系,这导致细胞周期 S 期延长和细胞增殖延迟。为了阐明这一机制,我们决定研究蛋白激酶 C(PKC)的可能参与,PKC 是 PLC 信号的直接靶点,也是细胞增殖的重要调节剂。我们的数据表明,在过表达 PLCβ1 的细胞中 PKCα 水平明显下降。此外,当我们通过 RNAi 技术沉默 PKCα 以模拟 PLCβ1 的作用时,我们发现同样上调了细胞周期蛋白 D3 水平并降低了细胞增殖,这与过表达 PLCβ1 的细胞中观察到的结果相同。我们在 K562 细胞中进行的研究的关键特征是 PLCβ1 靶向细胞周期蛋白 D3,可能通过 PKCα 介导的途径,并且作为其活性的下游效应,K562 细胞在细胞周期的 S 期积累。

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