TY - JOUR
T1 - Modulation of hypotensive effects of kinins by cathepsin K
AU - Lecaille, Fabien
AU - Vandier, Christophe
AU - Godat, Emmanuel
AU - Hervé-Grépinet, Virginie
AU - Brömme, Dieter
AU - Lalmanach, Gilles
N1 - Funding Information:
We thank M. Brillard-Bourdet for N-terminal peptide sequencing. Normal human and rat sera were a kind gift from Dr Johann Zimmermann (Novartis Pharma AG, Oncology Research, Basel, Switzerland). E.G. holds a doctoral fellowship from MENRT (Ministère de l’Education Nationale, de la Recherche et de la Technologie, France). The Peptide synthesizer (The Pioneer, Applied Biosystems, Warrington, UK) was funded by l’ARC (Association pour la Recherche sur le Cancer, France) et la Région Centre (France).
PY - 2007/3/1
Y1 - 2007/3/1
N2 - Kinins are pro-inflammatory peptides, which participate in the maintenance of cardiovascular homeostasis, and play a key role in numerous diseases, including lung fibrosis and hypertension. Evidence has been provided recently for the presence of alternative mechanisms of bradykinin generation and/or degradation. Here we showed that cathepsin K may act as a potent kinin-degrading enzyme in bloodstream. Contrary to cathepsin L, cathepsin K attenuates kallikrein-induced decrease of rat blood pressure, and reduces the hypotensive effect of bradykinin in a dose-dependant manner. Moreover, we identified, by engineering the S2 subsite of both recombinant enzymes, two critical residues involved respectively in the kininase activity of cathepsin K, i.e. Tyr67/Leu205, versus kininogenase activity of cathepsin L, i.e. Leu67/Ala205. In conclusion, according to its ability to modulate hypotensive effects of kinins, we propose that cathepsin K is a kininase of biological relevance, in complement of well-documented neutral endopeptidase or angiotensin-converting enzyme.
AB - Kinins are pro-inflammatory peptides, which participate in the maintenance of cardiovascular homeostasis, and play a key role in numerous diseases, including lung fibrosis and hypertension. Evidence has been provided recently for the presence of alternative mechanisms of bradykinin generation and/or degradation. Here we showed that cathepsin K may act as a potent kinin-degrading enzyme in bloodstream. Contrary to cathepsin L, cathepsin K attenuates kallikrein-induced decrease of rat blood pressure, and reduces the hypotensive effect of bradykinin in a dose-dependant manner. Moreover, we identified, by engineering the S2 subsite of both recombinant enzymes, two critical residues involved respectively in the kininase activity of cathepsin K, i.e. Tyr67/Leu205, versus kininogenase activity of cathepsin L, i.e. Leu67/Ala205. In conclusion, according to its ability to modulate hypotensive effects of kinins, we propose that cathepsin K is a kininase of biological relevance, in complement of well-documented neutral endopeptidase or angiotensin-converting enzyme.
KW - Cathepsin
KW - Cysteine protease
KW - Kinin
KW - Kininase
KW - Peptidase
UR - https://www.scopus.com/pages/publications/33847158365
U2 - 10.1016/j.abb.2006.10.033
DO - 10.1016/j.abb.2006.10.033
M3 - Article
C2 - 17181996
AN - SCOPUS:33847158365
SN - 0003-9861
VL - 459
SP - 129
EP - 136
JO - Archives of Biochemistry and Biophysics
JF - Archives of Biochemistry and Biophysics
IS - 1
ER -