Abstract

The bone morphogenetic protein-1 (BMP1)-like metalloproteinases play key roles in extracellular matrix formation, by converting precursors into mature functional proteins involved in forming the extracellular matrix. The BMP1-like proteinases also play roles in activating growth factors, such as BMP2/4, myostatin, growth differentiation factor 11, and transforming growth factor β1, by cleaving extracellular antagonists. The extracellular insulin-like growth factor-binding proteins (IGFBPs) are involved in regulating the effects of insulin-like growth factors (IGFs) on growth, development, and metabolism. Of the six IGFBPs, IGFBP3 has the greatest interaction with the large pool of circulating IGFs. It is also produced locally in tissues and is itself regulated by proteolytic processing. Here, we show that BMP1 cleaves human and mouse IGFBP3 at a single conserved site, resulting in markedly reduced ability of cleaved IGFBP3 to bind IGF-I or to block IGF-I-induced cell signaling. In contrast, such cleavage is shown to result in enhanced IGF-I-independent ability of cleaved IGFBP3 to block FGF-induced proliferation and to induce Smad phosphorylation. Consistent with in vivo roles for such cleavage, it is shown that, whereas wild type mouse embryo fibroblasts (MEFs) produce cleaved IGFBP3, MEFs doubly null for the Bmp1 gene and for the Tll1 gene, which encodes the related metalloproteinase mammalian Tolloid-like 1 (mTLL1), produce only unprocessed IGFBP3, thus demonstrating endogenous BMP1-related proteinases to be responsible for IGFBP3-processing activity in MEFs. Similarly, in zebrafish embryos, overexpression of Bmp1a is shown to reverse an Igfbp3-induced phenotype, consistent with the ability of BMP1-like proteinases to cleave IGFBP3 in vivo.

Highlights

  • Anti-angiogenic factors [1, 2]

  • bone morphogenetic protein-1 (BMP1) Cleaves IGFBP3—To determine whether IGFBP3 might be processed by BMP1, recombinant murine IGFBP3 was co-incubated with BMP1 in an in vitro cleavage assay

  • The observation that the ϳ32- and 30-kDa NH2-terminal fragments share a common NH2 terminus and that the ϳ12- and ϳ11-kDa COOH-terminal fragments share a common NH2 terminus is consistent with the interpretation that BMP1 cleaves murine IGFBP3 at a single site and that doublets of full-length IGFBP3 and of NH2-terminal and COOH-terminal cleavage fragments are due to differential post-translational modification, potentially consisting of differential glycosylation and/or phosphorylation [6]

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Summary

Introduction

Anti-angiogenic factors [1, 2]. In addition, BMP1-like proteinases are involved in activating extracellular latent complexes of some transforming growth factor ␤ (TGF␤) superfamily members, including BMP2, BMP4, growth and differentiation factor 8 (GDF8) ( known as myostatin), GDF11, and TGF␤1 [1, 3]. BMP1-like proteinases are shown to play a role in IGFBP3 cleavage by at least some cell types.

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