Jones Neil P, Katan Matilda
Cancer Research UK Centre for Cell and Molecular Biology, Chester Beatty Laboratories, The Institute of Cancer Research, London SW3 6JB, United Kingdom.
Mol Cell Biol. 2007 Aug;27(16):5790-805. doi: 10.1128/MCB.00778-07. Epub 2007 Jun 11.
The significance of multiprotein signaling complexes in cell motility is becoming increasingly important. We have previously shown that phospholipase Cgamma1 (PLCgamma1) is critical for integrin-mediated cell spreading and motility (N. Jones et al., J. Cell Sci. 118:2695-2706, 2005). In the current study we show that, on a basement membrane-type matrix, PLCgamma1 associates with the adaptor protein GIT1 and the Rac1/Cdc42 guanine exchange factor beta-Pix; GIT1 and beta-Pix form tight complexes independently of PLCgamma1. The association of PLCgamma1 with the complex requires both GIT1 and beta-Pix and the specific array region (gammaSA) of PLCgamma1. Mutations of PLCgamma1 within the gammaSA region reveal that association with this complex is essential for the phosphorylation of PLCgamma1 and the progression to an elongated morphology after integrin engagement. Short interfering RNA (siRNA) depletion of either beta-Pix or GIT1 inhibited cell spreading in a fashion similar to that seen with siRNA against PLCgamma1. Furthermore, siRNA depletion of PLCgamma1, beta-Pix, or GIT1 inhibited Cdc42 and Rac1 activation, while constitutively active forms of Cdc42 or Rac1, but not RhoA, were able to rescue the elongation of these cells. Signaling of the PLCgamma1/GIT1/beta-Pix complex to Cdc42/Rac1 was found to involve the activation of calpains, calcium-dependent proteases. Therefore, we propose that the association of PLCgamma1 with complexes containing GIT1 and beta-Pix is essential for its role in integrin-mediated cell spreading and motility. As a component of this complex, PLCgamma1 is also involved in the activation of Cdc42 and Rac1.
多蛋白信号复合物在细胞运动中的意义正变得越来越重要。我们之前已经表明,磷脂酶Cγ1(PLCγ1)对于整合素介导的细胞铺展和运动至关重要(N. 琼斯等人,《细胞科学杂志》118:2695 - 2706,2005)。在当前研究中我们发现,在基底膜型基质上,PLCγ1与衔接蛋白GIT1以及Rac1/Cdc42鸟嘌呤核苷酸交换因子β-Pix相互作用;GIT1和β-Pix独立于PLCγ1形成紧密复合物。PLCγ1与该复合物的结合需要GIT1、β-Pix以及PLCγ1的特定阵列区域(γSA)。γSA区域内PLCγ1的突变表明,与该复合物的结合对于PLCγ1的磷酸化以及整合素结合后向伸长形态的转变至关重要。针对β-Pix或GIT1的短发夹RNA(siRNA)缺失以类似于针对PLCγ1的siRNA的方式抑制细胞铺展。此外,PLCγ1、β-Pix或GIT1的siRNA缺失抑制Cdc42和Rac1的激活,而Cdc42或Rac1的组成型活性形式而非RhoA能够挽救这些细胞的伸长。发现PLCγ1/GIT1/β-Pix复合物向Cdc42/Rac1的信号传导涉及钙蛋白酶(钙依赖性蛋白酶)的激活。因此,我们提出PLCγ1与包含GIT1和β-Pix的复合物的结合对于其在整合素介导的细胞铺展和运动中的作用至关重要。作为该复合物的一个组成部分,PLCγ1也参与Cdc42和Rac1的激活。