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Published on: March 17, 2010
Effect of cathepsin k inhibitor basicity on in vivo off-target activities
Sylvie Desmarais1, W Cameron Black, Renata Oballa
1Department of Biochemistry and Molecular Biology, Merck Frosst Centre for Therapeutic Research, P.O. Box 1005, Pointe-Claire-Dorval, Quebec, Canada.
Abstract:
Cathepsin K is a lysosomal cysteine protease that is a pharmacological target for the treatment of osteoporosis. Previous studies showed that basic, lipophilic cathepsin K inhibitors are lysosomotropic and have greater activities in cell-based assays against cathepsin K, as well as the physiologically important lysosomal cysteine cathepsins B, L, and S, than expected based on their potencies against these isolated enzymes. Long-term administration of the basic cathepsin K inhibitors N-(1-(((cyanomethyl)amino)carbonyl)cyclohexyl)-4-(2-(4-methyl-piperazin-1-yl)-1,3-thiazol-4-yl)benzamide (L-006235) and balicatib to rats at a supratherapeutic dose of 500 mg/kg/day for 4 weeks resulted in increased tissue protein levels of cathepsin B and L but had no effect on cathepsin B and L message. This is attributed to the inhibitor engagement of these off-target enzymes and their stabilization to proteolytic degradation. No such increase in these tissue cathepsins was detected at the same dose of N-(cyanomethyl)-N(2)-{(1S)-2,2,2-trifluoro-1-[4'-methylsulfonyl)biphenyl-4-yl]ethyl}-l-leucinamide (L-873724), a potent nonbasic cathepsin K inhibitor with a similar off-target profile, although all three inhibitors provided similar plasma exposures. Using an activity-based probe, (125)I-BIL-DMK, in vivo inhibition of cathepsins B, L, and S was detected in tissues of mice given a single oral dose of L-006235 and balicatib, but not in mice given L-873724. In each case, similar tissue levels were achieved by all three compounds, thereby demonstrating the in vivo cathepsin selectivity of L-873724. In conclusion, basic cathepsin K inhibitors demonstrate increased off-target cysteine cathepsin activities than their nonbasic analogs and potentially have a greater risk of adverse effects associated with inhibition of these cathepsins.
Insights
Basic cathepsin K inhibitors increase off-target cathepsin B and L levels, unlike nonbasic analogs. This suggests basic inhibitors may pose a higher risk for adverse effects due to off-target cysteine cathepsin inhibition.
Area of Science:
- Pharmacology
- Biochemistry
- Drug Discovery
Background:
- Cathepsin K inhibitors are developed for osteoporosis treatment.
- Basic, lipophilic cathepsin K inhibitors show higher activity in cell assays than expected.
- This enhanced activity is linked to lysosomotropic properties and off-target inhibition of cathepsins B, L, and S.
Purpose of the Study:
- To investigate the in vivo effects of basic and nonbasic cathepsin K inhibitors on off-target cathepsins.
- To compare the tissue distribution and inhibition profiles of different cathepsin K inhibitors.
- To assess the potential risks associated with off-target inhibition by basic cathepsin K inhibitors.
Main Methods:
- Administration of basic (L-006235, balicatib) and nonbasic (L-873724) cathepsin K inhibitors to rats and mice.
- Analysis of tissue cathepsin B and L protein and message levels.
- In vivo assessment of cathepsin B, L, and S inhibition using an activity-based probe ((125)I-BIL-DMK).
Main Results:
- Long-term administration of basic inhibitors increased tissue cathepsin B and L protein levels without altering their message.
- The nonbasic inhibitor L-873724 did not cause similar increases in tissue cathepsins.
- In vivo activity-based probe studies confirmed selective inhibition of cathepsins B, L, and S by basic inhibitors, but not by L-873724, at equivalent tissue exposures.
Conclusions:
- Basic cathepsin K inhibitors exhibit increased off-target cysteine cathepsin activity in vivo compared to nonbasic analogs.
- The lysosomotropic nature of basic inhibitors contributes to their off-target effects.
- Basic cathepsin K inhibitors may carry a greater risk of adverse effects due to broader cathepsin inhibition.
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