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磷脂酶Cγ1对于细胞运动所需的整合素信号传导早期事件至关重要。

PLCgamma1 is essential for early events in integrin signalling required for cell motility.

作者信息

Jones Neil P, Peak Joanna, Brader Sharon, Eccles Suzanne A, Katan Matilda

机构信息

Cancer Research UK Centre for Cell and Molecular Biology, Chester Beatty Laboratories, The Institute of Cancer Research, London, UK.

出版信息

J Cell Sci. 2005 Jun 15;118(Pt 12):2695-706. doi: 10.1242/jcs.02374.

Abstract

Cell motility is a critical event in many processes and is underlined by complex signalling interactions. Although many components have been implicated in different forms of cell migration, identification of early key mediators of these events has proved difficult. One potential signalling intermediate, PLCgamma1, has previously been implicated in growth-factor-mediated chemotaxis but its position and roles in more-complex motility events remain poorly understood. This study links PLCgamma1 to early, integrin-regulated changes leading to cell motility. The key role of PLCgamma1 was supported by findings that specific depletion of PLCgamma1 by small interfering (si)RNA, or by pharmacological inhibition, or the absence of this isoform in PLCgamma1(-/-) cells resulted in the failure to form cell protrusions and undergo cell spreading and elongation in response to integrin engagement. This integrin-PLCgamma1 pathway was shown to underlie motility processes involved in morphogenesis of endothelial cells on basement membranes and invasion of cancer cells into such three-dimensional matrices. By combining cellular and biochemical approaches, we have further characterized this signalling pathway. Upstream of PLCgamma1 activity, beta1 integrin and Src kinase are demonstrated to be essential for phosphorylation of PLCgamma1, formation of protein complexes and accumulation of intracellular calcium. Cancer cell invasion and the early morphological changes associated with cell motility were abolished by inhibition of beta1 integrin or Src. Our findings establish PLCgamma1 as a key player in integrin-mediated cell motility processes and identify other critical components of the signalling pathway involved in establishing a motile phenotype. This suggests a more general role for PLCgamma1 in cell motility, functioning as a mediator of both growth factor and integrin-initiated signals.

摘要

细胞运动是许多过程中的关键事件,并且受到复杂信号相互作用的支撑。尽管许多组分已被证明与不同形式的细胞迁移有关,但这些事件早期关键介质的鉴定却颇具难度。一种潜在的信号中间体磷脂酶Cγ1(PLCγ1),先前已被证明与生长因子介导的趋化作用有关,但其在更复杂的运动事件中的地位和作用仍知之甚少。本研究将PLCγ1与早期的、整合素调节的导致细胞运动的变化联系起来。PLCγ1的关键作用得到了以下研究结果的支持:通过小干扰(si)RNA特异性敲除PLCγ1,或通过药物抑制,或PLCγ1(-/-)细胞中缺乏这种异构体,都会导致细胞无法形成突起,并且在整合素激活时无法进行细胞铺展和伸长。这种整合素-PLCγ1信号通路被证明是基底膜上内皮细胞形态发生以及癌细胞侵入此类三维基质等运动过程的基础。通过结合细胞和生化方法,我们进一步对该信号通路进行了表征。在PLCγ1活性的上游,β1整合素和Src激酶被证明对于PLCγ1的磷酸化、蛋白复合物的形成以及细胞内钙的积累至关重要。抑制β1整合素或Src可消除癌细胞的侵袭以及与细胞运动相关的早期形态变化。我们的研究结果确立了PLCγ1在整合素介导的细胞运动过程中的关键作用,并鉴定了参与建立运动表型的信号通路中的其他关键组分。这表明PLCγ1在细胞运动中具有更广泛的作用,可作为生长因子和整合素启动信号的介质。

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