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Annals of the New York Academy of Sciences|July 23, 1999
Engineering of selective TIMPsH Nagase, Q Meng, V Malinovskii, et al.FEBS Letters|January 31, 1994
Structural implications for the role of the N terminus in the 'superactivation' of collagenases. A crystallographic studyP Reinemer, F Grams, R Huber, et al.Annals of the New York Academy of Sciences|January 1, 1985
Structure and biology of the globular domain of basement membrane type IV collagenR Timpl, I Oberbäumer, H von der Mark, et al.RSC Chemical Biology|December 22, 2022
Chemical synthesis of the EPF-family of plant cysteine-rich proteins and late-stage dye attachment by chemoselective amide-forming ligationsNandarapu Kumarswamyreddy, Ayami Nakagawa, Hitoshi Endo, et al.European Journal of Biochemistry|October 3, 1999
Design and evaluation of novel bivalent thrombin inhibitors based on amidinophenylalaninesT Steinmetzer, M Renatus, S Künzel, et al.The Journal of Biological Chemistry|August 29, 1997
Structural mapping of the active site specificity determinants of human tissue-type plasminogen activator. Implications for the design of low molecular weight substrates and inhibitorsM Renatus, W Bode, R Huber, et al.The EMBO Journal|November 15, 1996
The ornithodorin-thrombin crystal structure, a key to the TAP enigma?A van de Locht, M T Stubbs, W Bode, et al.Journal of Molecular Biology|December 6, 1996
The helping hand of collagenase-3 (MMP-13): 2.7 A crystal structure of its C-terminal haemopexin-like domainF X Gomis-Rüth, U Gohlke, M Betz, et al.The EMBO Journal|October 15, 1996
The 1.8 A crystal structure of human cathepsin G in complex with Suc-Val-Pro-PheP-(OPh)2: a Janus-faced proteinase with two opposite specificitiesP Hof, I Mayr, R Huber, et al.Structure (London, England : 1993)|October 1, 1998
Amino-acid sequence and three-dimensional structure of the Staphylococcus aureus metalloproteinase at 1.72 A resolutionA Banbula, J Potempa, J Travis, et al.Pageof 50