Characterization of the dimerization interface of membrane type 4 (MT4)-matrix metalloproteinase

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Abstract

MT4-MMP (MMP17) belongs to a unique subset of membrane type-matrix metalloproteinases that are anchored to the cell surface via a glycosylphosphatidylinositol moiety. However, little is known about its biochemical properties. Here, we report that MT4-MMP is displayed on the cell surface as a mixed population of monomeric, dimeric, and oligomeric forms. Sucrose gradient fractionation demonstrated that these forms of MT4-MMP are all present in lipid rafts. Mutational and computational analyses revealed that Cys 564, which is present within the stem region, mediates MT4-MMP homodimerization by forming a disulfide bond. Substitution of Cys 564 results in a more rapid MT4-MMP turnover, when compared with the wild-type enzyme, consistent with a role for dimerization in protein stability. Expression of MT4-MMP in Madin-Darby canine kidney cells enhanced cell migration and invasion of Matrigel, a process that requires catalytic activity. However, a serine substitution at Cys 564 did not reduce MT4-MMP-stimulated cell invasion of Matrigel suggesting that homodimerization is not required for this process. Deglycosylation studies showed that MT4-MMP is modified by N-glycosylation. Moreover, inhibition of N-glycosylation by tunicamycin diminished the extent of MT4-MMP dimerization suggesting that N-glycans may confer stability to the dimeric form. Taken together, the data presented here provide a new insight into the characteristics of MT4-MMP and highlight the common and distinct properties of the glycosylphosphatidylinositol-anchored membrane type-matrix metalloproteinases. © 2011 by The American Society for Biochemistry and Molecular Biology, Inc.

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Sohail, A., Marco, M., Zhao, H., Shi, Q., Merriman, S., Mobashery, S., & Fridman, R. (2011). Characterization of the dimerization interface of membrane type 4 (MT4)-matrix metalloproteinase. Journal of Biological Chemistry, 286(38), 33178–33189. https://doi.org/10.1074/jbc.M111.253369

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