Bukharova Tanya, Weijer Gertrud, Bosgraaf Leonard, Dormann Dirk, van Haastert Peter J, Weijer Cornelis J
Wellcome Trust Biocentre, School of Life Sciences, University of Dundee, Dundee DD1 5EH, UK.
J Cell Sci. 2005 Sep 15;118(Pt 18):4295-310. doi: 10.1242/jcs.02557.
Paxillin is a key regulatory component of focal adhesion sites, implicated in controlling cell-substrate interactions and cell movement. We analyse the function of a Dictyostelium discoideum paxillin homologue, PaxB, which contains four highly conserved LD and four LIM domains, but lacks two characteristic tyrosine residues, that form the core of vertebrate SH2-binding domains. PaxB is expressed during growth and all stages of development, but expression peaks during slug formation. Using a paxB-gfp knockin strain we show the existence of focal adhesions and characterise their dynamics. During multicellular development PaxB is not only found in focal adhesions at the cell-substrate interface, but also in the tips of filopodial structures predominantly located at the trailing ends of cells. paxB- strains are less adhesive to the substrate, they can aggregate but multicellular development from the mound stage onwards is severely impeded. paxB- strains are defective in proper cell type proportioning, cell sorting, slug migration and form-defective fruiting bodies. Mutation of a conserved JNK phosphorylation site, implicated in the control of cell migration, does not have any major effects on cell sorting, slug migration or morphogenesis in Dictyostelium. PaxB does not appear to function redundantly with its closest relative Lim2 (paxA), which when deleted also results in a mound arrest phenotype. However, analysis of paxA- and paxB- single and double null mutants suggest that PaxB may act upstream of Lim2.
桩蛋白是粘着斑位点的关键调节成分,参与控制细胞与底物的相互作用以及细胞运动。我们分析了盘基网柄菌桩蛋白同源物PaxB的功能,它含有四个高度保守的LD结构域和四个LIM结构域,但缺少形成脊椎动物SH2结合结构域核心的两个特征性酪氨酸残基。PaxB在生长和发育的所有阶段均有表达,但在蛞蝓形成阶段表达达到峰值。利用paxB - gfp敲入菌株,我们证明了粘着斑的存在并对其动力学特征进行了描述。在多细胞发育过程中,PaxB不仅存在于细胞与底物界面的粘着斑中,还存在于主要位于细胞后端的丝状伪足结构的尖端。paxB - 菌株对底物的粘附性较低,它们能够聚集,但从丘状阶段开始的多细胞发育受到严重阻碍。paxB - 菌株在细胞类型比例、细胞分选、蛞蝓迁移以及子实体形态缺陷方面存在缺陷。一个与细胞迁移控制有关的保守JNK磷酸化位点的突变,对盘基网柄菌的细胞分选、蛞蝓迁移或形态发生没有任何重大影响。PaxB似乎与其最接近的亲属Lim2( paxA )不存在功能冗余,Lim2缺失时也会导致丘状停滞表型。然而,对paxA - 和paxB - 单缺失和双缺失突变体的分析表明,PaxB可能在Lim2的上游起作用。