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Original Article

Collagen-Binding Domain of a Clostridium Histolyticum Collagenase Exhibits a Broad Substrate Spectrum Both in Vitro and in Vivo

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Pages 281-290 | Received 07 Feb 2001, Accepted 04 Jun 2001, Published online: 06 Aug 2009

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Alexis Thomas & Ardeshir Bayat. (2010) The emerging role of Clostridium histolyticum collagenase in the treatment of Dupuytren disease. Therapeutics and Clinical Risk Management 6, pages 557-572.
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Cynthia R. Sides, Rohana Liyanage, Jackson O. LayJr.Jr., Sagaya Theresa Leena Philominathan, Osamu Matsushita & Joshua Sakon. (2011) Probing the 3-D Structure, Dynamics, and Stability of Bacterial Collagenase Collagen Binding Domain (apo- versus holo-) by Limited Proteolysis MALDI-TOF MS. Journal of the American Society for Mass Spectrometry 23:3, pages 505-519.
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Tulasi Ponnapakkam, R. Katikaneni, E. Miller, A. Ponnapakkam, S. Hirofumi, S. Miyata, L. J. Suva, J. Sakon, O. Matsushita & R. C. Gensure. (2011) Monthly Administration of a Novel PTH-Collagen Binding Domain Fusion Protein is Anabolic in Mice. Calcified Tissue International 88:6, pages 511-520.
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Andrew J Watt & Vincent R Hentz. (2011) Collagenase clostridium histolyticum: a novel nonoperative treatment for Dupuytren’s disease. International Journal of Clinical Rheumatology 6:2, pages 123-133.
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Paulina Ducka, Ulrich Eckhard, Esther Schönauer, Stefan Kofler, Gerhard Gottschalk, Hans Brandstetter & Dorota Nüss. (2009) A universal strategy for high-yield production of soluble and functional clostridial collagenases in E. coli. Applied Microbiology and Biotechnology 83:6, pages 1055-1065.
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Yuichi Itoi, Mano Horinaka, Yoshiyuki Tsujimoto, Hiroshi Matsui & Kunihiko Watanabe. (2006) Characteristic Features in the Structure and Collagen-Binding Ability of a Thermophilic Collagenolytic Protease from the Thermophile Geobacillus collagenovorans MO-1 . Journal of Bacteriology 188:18, pages 6572-6579.
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Jeffrey W. Ruberti & Nadim J. Hallab. (2005) Strain-controlled enzymatic cleavage of collagen in loaded matrix. Biochemical and Biophysical Research Communications 336:2, pages 483-489.
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Tetsuhiko Toyoshima, Nozomu Nishi, Hiroshi Kusama, Ryoji Kobayashi & Toshifumi Itano. (2005) 36-kDa microfibril-associated glycoprotein (MAGP-36) is an elastin-binding protein increased in chick aortae during development and growth. Experimental Cell Research 307:1, pages 224-230.
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