Wells Claire M, Walmsley Marita, Ooi Steen, Tybulewicz Victor, Ridley Anne J
Ludwig Institute for Cancer Research, Royal Free and University College Medical School Branch, 91 Riding House Street, London WIW 7BS, UK.
J Cell Sci. 2004 Mar 1;117(Pt 7):1259-68. doi: 10.1242/jcs.00997.
Rac GTPases are activated by extracellular stimuli and contribute to cellular responses including cytoskeletal changes and cell migration. Dominant-negative Rac1 has been used to implicate Rac GTPases in these responses, but which of the three mammalian Rac isoforms it inhibits is not known. We show that mouse bone marrow-derived macrophages express Rac1, low levels of Rac2 but not Rac3. As Rac1-null mice die early in development, we have used mice with a loxP-flanked allele of Rac1 and the type I interferon-inducible Mx1-Cre transgene to address for the first time the specific role of Rac1 in cell motility. Bone marrow-derived macrophages isolated from mice treated with polyIC to induce interferon lack detectable Rac1, and there is no compensatory increase in Rac2 or Cdc42 expression. Rac1-deficient macrophages have an altered morphology: they are significantly more elongated than control cells and have a reduced adhesive area. Re-expression of Rac1 reverts the morphology to that of control cells. Loss of Rac1 reduces but does not completely prevent membrane ruffling in response to CSF-1. However, Rac1-deficient macrophages show normal migration and chemotaxis. Thus in macrophages Rac1 is primarily responsible for regulating cell morphology, contributes to membrane ruffling, but is not required for migration.
Rac GTP酶受细胞外刺激激活,并参与包括细胞骨架变化和细胞迁移在内的细胞反应。显性负性Rac1已被用于证明Rac GTP酶参与这些反应,但它抑制的三种哺乳动物Rac亚型中的哪一种尚不清楚。我们发现小鼠骨髓来源的巨噬细胞表达Rac1、低水平的Rac2但不表达Rac3。由于Rac1基因敲除小鼠在发育早期死亡,我们利用带有loxP侧翼的Rac1等位基因和I型干扰素诱导的Mx1-Cre转基因的小鼠,首次研究了Rac1在细胞运动中的具体作用。从用聚肌胞苷酸处理以诱导干扰素的小鼠中分离出的骨髓来源的巨噬细胞检测不到Rac1,并且Rac2或Cdc42的表达没有代偿性增加。Rac1缺陷型巨噬细胞形态改变:它们比对照细胞明显更长,粘附面积减小。Rac1的重新表达使形态恢复到对照细胞的形态。Rac1的缺失减少但不能完全阻止对集落刺激因子-1(CSF-1)的膜皱褶反应。然而,Rac1缺陷型巨噬细胞显示正常的迁移和趋化性。因此,在巨噬细胞中,Rac1主要负责调节细胞形态,参与膜皱褶形成,但迁移并不需要它。