Pei D, Kang T, Qi H (2000). "Cysteine array matrix metalloproteinase (CA-MMP)/MMP-23 is a type II transmembrane matrix metalloproteinase regulated by a single cleavage for both secretion and activation". J Biol Chem275 (43): 33988–97. PMID10945999. doi:10.1074/jbc.M006493200.
Trexler M, Briknarová K, Gehrmann M, Llinás M, Patthy L (2003). "Peptide ligands for the fibronectin type II modules of matrix metalloproteinase 2 (MMP-2)". J Biol Chem278 (14): 12241–6. PMID12486137. doi:10.1074/jbc.M210116200.
Browner MF, Smith WW, Castelhano AL (1995). "Matrilysin-inhibitor complexes: common themes among metalloproteases". Biochemistry34 (20): 6602–10. PMID7756291. doi:10.1021/bi00020a004.
Kester WR, Matthews BW (1977). "Crystallographic study of the binding of dipeptide inhibitors to thermolysin: implications for the mechanism of catalysis". Biochemistry16 (11): 2506–16. PMID861218. doi:10.1021/bi00630a030.
Manzetti S, McCulloch DR, Herington AC, van der Spoel D (2003). "Modeling of enzyme-substrate complexes for the metalloproteases MMP-3, ADAM-9 and ADAM-10". J. Comput.-Aided Mol. Des.17 (9): 551–65. PMID14713188. doi:10.1023/B:JCAM.0000005765.13637.38.
Lohi J, Wilson CL, Roby JD, Parks WC (2001). "Epilysin, a novel human matrix metalloproteinase (MMP-28) expressed in testis and keratinocytes and in response to injury". J Biol Chem276 (13): 10134–10144. PMID11121398. doi:10.1074/jbc.M001599200.
Snoek-van Beurden PAM; Von den Hoff JW (2005). "Zymographic techniques for the analysis of matrix metalloproteinases and their inhibitors". BioTechniques38 (1): 73–83. PMID15679089. doi:10.2144/05381RV01.
Pei D, Kang T, Qi H (2000). "Cysteine array matrix metalloproteinase (CA-MMP)/MMP-23 is a type II transmembrane matrix metalloproteinase regulated by a single cleavage for both secretion and activation". J Biol Chem275 (43): 33988–97. PMID10945999. doi:10.1074/jbc.M006493200.
Trexler M, Briknarová K, Gehrmann M, Llinás M, Patthy L (2003). "Peptide ligands for the fibronectin type II modules of matrix metalloproteinase 2 (MMP-2)". J Biol Chem278 (14): 12241–6. PMID12486137. doi:10.1074/jbc.M210116200.
Browner MF, Smith WW, Castelhano AL (1995). "Matrilysin-inhibitor complexes: common themes among metalloproteases". Biochemistry34 (20): 6602–10. PMID7756291. doi:10.1021/bi00020a004.
Kester WR, Matthews BW (1977). "Crystallographic study of the binding of dipeptide inhibitors to thermolysin: implications for the mechanism of catalysis". Biochemistry16 (11): 2506–16. PMID861218. doi:10.1021/bi00630a030.
Manzetti S, McCulloch DR, Herington AC, van der Spoel D (2003). "Modeling of enzyme-substrate complexes for the metalloproteases MMP-3, ADAM-9 and ADAM-10". J. Comput.-Aided Mol. Des.17 (9): 551–65. PMID14713188. doi:10.1023/B:JCAM.0000005765.13637.38.
Lohi J, Wilson CL, Roby JD, Parks WC (2001). "Epilysin, a novel human matrix metalloproteinase (MMP-28) expressed in testis and keratinocytes and in response to injury". J Biol Chem276 (13): 10134–10144. PMID11121398. doi:10.1074/jbc.M001599200.
Snoek-van Beurden PAM; Von den Hoff JW (2005). "Zymographic techniques for the analysis of matrix metalloproteinases and their inhibitors". BioTechniques38 (1): 73–83. PMID15679089. doi:10.2144/05381RV01.