Velusamy Thirunavukkarasu, Shetty Praveenkumar, Bhandary Yashodhar P, Liu Ming-Cheh, Shetty Sreerama
Texas Lung Injury Institute, Department of Specialty Care Services, The University of Texas Health Center at Tyler, 11937 U.S. Highway 271, Tyler, Texas 75708, USA.
Biochemistry. 2008 Jun 17;47(24):6508-17. doi: 10.1021/bi702338y. Epub 2008 May 22.
Interaction of urokinase-type plasminogen activator (uPA) with its receptor, uPAR, is a key regulatory step in uPA-mediated cell proliferation and migration. Our previous studies demonstrated that posttranscriptional stabilization of uPAR mRNA by uPA contributes to the induction of cell surface uPAR expression, and heterogeneous nuclear ribonuclear protein C1 (hnRNPC) binds to a 110 nt sequence of uPAR mRNA 3'-UTR, thereby preventing its degradation. These observations indicate that hnRNPC could be involved in the induction of uPAR expression by uPA. In the present study, we investigated this possibility and confirmed that uPA increased the binding of hnRNPC to the 3'-UTR of uPAR mRNA. Furthermore, uPA induced tyrosine phosphorylation of hnRNPC and uPAR expression through mRNA stabilization. Inhibition of hnRNPC tyrosine phosphorylation abolished its interaction with uPAR mRNA and suppressed mRNA stabilization and cell surface uPAR expression. Deletion experiments revealed that hnRNPC binds to uPAR mRNA through its RNA binding domain (RBD). Site-directed mutagenesis studies further indicated that phosphorylation of tyrosine residue 57 (Y57) present in RBD of hnRNPC by uPA is essential for uPAR 3'-UTR mRNA binding and uPAR expression. Increased hnRNPC interaction with the uPAR mRNA 3'-UTR through phosphorylation of Y57 represents a novel mechanism by which uPA regulates posttranscriptional uPAR mRNA turnover and cell surface uPAR expression.
尿激酶型纤溶酶原激活剂(uPA)与其受体uPAR的相互作用是uPA介导的细胞增殖和迁移中的关键调节步骤。我们之前的研究表明,uPA对uPAR mRNA的转录后稳定作用有助于诱导细胞表面uPAR表达,并且异质性核核糖核蛋白C1(hnRNPC)与uPAR mRNA 3'-UTR的110 nt序列结合,从而防止其降解。这些观察结果表明hnRNPC可能参与了uPA诱导的uPAR表达。在本研究中,我们探讨了这种可能性,并证实uPA增加了hnRNPC与uPAR mRNA 3'-UTR的结合。此外,uPA通过mRNA稳定作用诱导hnRNPC的酪氨酸磷酸化和uPAR表达。抑制hnRNPC酪氨酸磷酸化消除了其与uPAR mRNA的相互作用,并抑制了mRNA稳定作用和细胞表面uPAR表达。缺失实验表明hnRNPC通过其RNA结合结构域(RBD)与uPAR mRNA结合。定点诱变研究进一步表明,uPA对hnRNPC的RBD中存在的酪氨酸残基57(Y57)的磷酸化对于uPAR 3'-UTR mRNA结合和uPAR表达至关重要。通过Y57磷酸化增加hnRNPC与uPAR mRNA 3'-UTR的相互作用代表了一种新的机制,通过该机制uPA调节转录后uPAR mRNA周转和细胞表面uPAR表达。