Nieuwesteeg M A, Willson J A, Cepeda M, Fox M A, Damjanovski S
Department of Biology, University of Western Ontario, 1151 Richmond Street, London, ON, Canada N6A 5B7.
ScientificWorldJournal. 2014 Jan 30;2014:467907. doi: 10.1155/2014/467907. eCollection 2014.
Extracellular matrix (ECM) remodeling is essential for facilitating developmental processes. ECM remodeling, accomplished by matrix metalloproteinases (MMPs), is regulated by endogenous tissue inhibitors of metalloproteinases (TIMPs). While the TIMP N-terminal domain is involved in inhibition of MMP activity, the C-terminal domain exhibits cell-signaling activity, which is TIMP and cell type dependent. We have previously examined the distinct roles of the Xenopus laevis TIMP-2 and -3 C-terminal domains during development and here examined the unique roles of TIMP-1 N- and C-terminal domains in early X. laevis embryos. mRNA microinjection was used to overexpress full-length TIMP-1 or its individual N- or C-terminal domains in embryos. Full-length and C-terminal TIMP-1 resulted in increased lethality compared to N-terminal TIMP-1. Overexpression of C-terminal TIMP-1 resulted in significant decreases in mRNA levels of proteolytic genes including TIMP-2, RECK, MMP-2, and MMP-9, corresponding to decreases in MMP-2 and -9 protein levels, as well as decreased MMP-2 and MMP-9 activities. These trends were not observed with the N-terminus. Our research suggests that the individual domains of TIMP-1 are capable of playing distinct roles in regulating the ECM proteolytic network during development and that the unique functions of these domains are moderated in the endogenous full-length TIMP-1 molecule.
细胞外基质(ECM)重塑对于促进发育过程至关重要。由基质金属蛋白酶(MMPs)完成的ECM重塑受金属蛋白酶内源性组织抑制剂(TIMPs)的调节。虽然TIMP的N端结构域参与抑制MMP活性,但C端结构域表现出细胞信号传导活性,这取决于TIMP和细胞类型。我们之前研究了非洲爪蟾TIMP-2和-3 C端结构域在发育过程中的不同作用,在此研究了TIMP-1 N端和C端结构域在非洲爪蟾早期胚胎中的独特作用。通过mRNA显微注射在胚胎中过表达全长TIMP-1或其单独的N端或C端结构域。与N端TIMP-1相比,全长和C端TIMP-1导致致死率增加。C端TIMP-1的过表达导致包括TIMP-2、RECK、MMP-2和MMP-9在内的蛋白水解基因的mRNA水平显著降低,这与MMP-2和-9蛋白水平的降低以及MMP-2和MMP-9活性的降低相对应。N端未观察到这些趋势。我们的研究表明,TIMP-1的各个结构域在发育过程中能够在调节ECM蛋白水解网络中发挥不同作用,并且这些结构域的独特功能在内源性全长TIMP-1分子中受到调节。