4.7 Article

Proteomic Analyses Reveal an Acidic Prime Side Specificity for the Astacin Metalloprotease Family Reflected by Physiological Substrates

Journal

MOLECULAR & CELLULAR PROTEOMICS
Volume 10, Issue 9, Pages -

Publisher

AMER SOC BIOCHEMISTRY MOLECULAR BIOLOGY INC
DOI: 10.1074/mcp.M111.009233

Keywords

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Funding

  1. Canada Foundation for Innovation
  2. MSFHR
  3. Deutsche Forschungsgemeinschaft (DFG) [BE-4086/1-2, SCHI 871/1-1, 871/2-1]
  4. Johannes Gutenberg-University of Mainz, Germany
  5. Canada Research Chair in Metalloproteinase Proteomics and Systems Biology
  6. Canadian Institutes of Health Research
  7. European Community [200931]

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Astacins are secreted and membrane-bound metalloproteases with clear associations to many important pathological and physiological processes. Yet with only a few substrates described their biological roles are enigmatic. Moreover, the lack of knowledge of astacin cleavage site specificities hampers assay and drug development. Using PICS (proteomic identification of protease cleavage site specificity) and TAILS (terminal amine isotopic labeling of substrates) degradomics approaches > 3000 cleavage sites were proteomically identified for five different astacins. Such broad coverage enables family-wide determination of specificities N- and C-terminal to the scissile peptide bond. Remarkably, meprin alpha, meprin beta, and LAST_MAM proteases exhibit a strong preference for aspartate in the peptide (P)1' position because of a conserved positively charged residue in the active cleft subsite (S)1'. This unparalleled specificity has not been foundfor other families of extracellular proteases. Interestingly, cleavage specificity is also strongly influenced by proline in P2' or P3' leading to a rare example of subsite cooperativity. This specificity characterizes the astacins as unique contributors to extracellular proteolysis that is corroborated by known cleavage sites in procollagen I + III, VEGF (vascular endothelial growth factor)-A, IL (interleukin)-1 beta, and pro-kallikrein 7. Indeed, cleavage sites in VEGF-A and pro-kallikrein 7 identified by terminal amine isotopic labeling of substrates matched those reported by Edman degradation. Moreover, the novel substrate FGF-19 was validated biochemically and shown to exhibit altered biological activity after meprin processing. Molecular & Cellular Proteomics 10: 10.1074/mcp. M111.009233, 1-19, 2011.

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