Copsey Alice C, Cooper Simon, Parker Robert, Lineham Ella, Lapworth Cuzack, Jallad Deema, Sweet Steve, Morley Simon J
Department of Biochemistry, School of Life Sciences, University of Sussex, Brighton BN1 6SE, U.K.
Faculty of Medicine, National Heart & Lung Institute, St Mary's Campus, Imperial College London, London W2 1NY, U.K.
Biochem J. 2017 Aug 30;474(18):3109-3120. doi: 10.1042/BCJ20170354.
DDX3X, a helicase, can interact directly with mRNA and translation initiation factors, regulating the selective translation of mRNAs that contain a structured 5' untranslated region. This activity modulates the expression of mRNAs controlling cell cycle progression and mRNAs regulating actin dynamics, contributing to cell adhesion and motility. Previously, we have shown that ribosomes and translation initiation factors localise to the leading edge of migrating fibroblasts in loci enriched with actively translating ribosomes, thereby promoting steady-state levels of ArpC2 and Rac1 proteins at the leading edge of cells during spreading. As DDX3X can regulate Rac1 levels, cell motility and metastasis, we have examined DDX3X protein interactions and localisation using many complementary approaches. We now show that DDX3X can physically interact and co-localise with poly(A)-binding protein 1 and caprin-1 at the leading edge of spreading cells. Furthermore, as depletion of DDX3X leads to decreased cell motility, this provides a functional link between DDX3X, caprin-1 and initiation factors at the leading edge of migrating cells to promote cell migration and spreading.
解旋酶DDX3X可直接与mRNA及翻译起始因子相互作用,调控含有结构化5'非翻译区的mRNA的选择性翻译。该活性调节控制细胞周期进程的mRNA以及调节肌动蛋白动力学的mRNA的表达,有助于细胞黏附和运动。此前我们已表明,核糖体和翻译起始因子定位于迁移成纤维细胞的前沿,处于富含活跃翻译核糖体的位点,从而在细胞铺展过程中促进细胞前沿的ArpC2和Rac1蛋白的稳态水平。由于DDX3X可调节Rac1水平、细胞运动性和转移,我们使用了多种互补方法研究了DDX3X蛋白的相互作用和定位。我们现在表明,DDX3X可在铺展细胞的前沿与聚腺苷酸结合蛋白1和Caprin-1发生物理相互作用并共定位。此外,由于DDX3X的缺失导致细胞运动性降低,这在迁移细胞前沿的DDX3X、Caprin-1和起始因子之间建立了功能联系,以促进细胞迁移和铺展。