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Publication Date:
June 2005
ISSN:
1437-4315
DOI:
10.1515/BC.2004.141

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Editor-in-Chief: Brüne, Bernhard

Editorial Board Member: Ludwig, Stephan / Sies, Helmut / Stoffel, Markus / Turk, Boris / Wittinghofer, Alfred / Baumeister, Wolfgang / Bergeron, John / Bogyo, Matthew / Bürkle, Alexander / Cadenas, Enrique / Chiti, Fabrizio / Dikic, Ivan / Dobson, Christopher / Driessen, Arnold / Fritz, Hans / Gevaert, Kris / Hammann, Christian / Hartl, F. Ulrich / Häussinger, Dieter / Hiscott, John / Igarashi, Yasuyuki / Klotz, Lars-Oliver / Krüger, Achim / Magdolen, Viktor / Müschen, Markus / Narumiya, Shuh / Naumann, Michael / Pejler, Gunnar / Pfanner, Nikolaus / Pike, Robert / Potempa, Jan / Saftig, Paul / Sandhoff, Konrad / Schaffner, Walter / Sinning, Irmgard / Sommerhoff, Christian P.

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Plasma prekallikrein/kallikrein processing by lysosomal cysteine proteases

Nilana M.T. Barros1 / Luciano Puzer2 / Ivarne L.S. Tersariol3 / M. Luiza V. Oliva4 / Claudio A.M. Sampaio5 / Adriana K. Carmona6 / Guacyara Da Motta7

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Citation Information: Biological Chemistry. Volume 385, Issue 11, Pages 1087–1091, ISSN (Print) 1431-6730, DOI: 10.1515/BC.2004.141, June 2005

Publication History:
Received:
February 10, 2004
Accepted:
September 8, 2004
Published Online:
2005-06-01

Abstract

Plasma kallikrein plays a role in coagulation, fibrinolysis and inflammation. Cathepsins B and L participate in (patho)physiological processes such as peptide antigen processing, tissue remodeling events, protein turnover in cells, hormone processing and tumor invasion. The present work analyzes the processing of prekallikrein/kallikrein by lysosomal cathepsins. Prekallikrein is not hydrolyzed by catB, and catL generates an inactive fragment of prekallikrein. Both kallikrein chains are hydrolyzed by catL and the light chain is mainly hydrolyzed by catB; kallikrein activity is lower after incubation with catL compared to catB. Our data suggest that the plasma kallikrein/ kinin system can be controlled by cathepsins.

Keywords: cathepsins; kallikrein; kinin system; proteolysis

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