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Design of a highly selective quenched activity-based probe and its application in dual color imaging studies of cathepsin S activity localization.


ABSTRACT: The cysteine cathepsins are a group of 11 proteases whose function was originally believed to be the degradation of endocytosed material with a high degree of redundancy. However, it has become clear that these enzymes are also important regulators of both health and disease. Thus, selective tools that can discriminate between members of this highly related class of enzymes will be critical to further delineate the unique biological functions of individual cathepsins. Here we present the design and synthesis of a near-infrared quenched activity-based probe (qABP) that selectively targets cathepsin S which is highly expressed in immune cells. Importantly, this high degree of selectivity is retained both in vitro and in vivo. In combination with a new green-fluorescent pan-reactive cysteine cathepsin qABP we performed dual color labeling studies in bone marrow-derived immune cells and identified vesicles containing exclusively cathepsin S activity. This observation demonstrates the value of our complementary cathepsin probes and provides evidence for the existence of specific localization of cathepsin S activity in dendritic cells.

SUBMITTER: Oresic Bender K 

PROVIDER: S-EPMC4747655 | biostudies-other | 2015 Apr

REPOSITORIES: biostudies-other

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Design of a highly selective quenched activity-based probe and its application in dual color imaging studies of cathepsin S activity localization.

Oresic Bender Kristina K   Ofori Leslie L   van der Linden Wouter A WA   Mock Elliot D ED   Datta Gopal K GK   Chowdhury Somenath S   Li Hao H   Segal Ehud E   Sanchez Lopez Mateo M   Ellman Jonathan A JA   Figdor Carl G CG   Bogyo Matthew M   Verdoes Martijn M  

Journal of the American Chemical Society 20150401 14


The cysteine cathepsins are a group of 11 proteases whose function was originally believed to be the degradation of endocytosed material with a high degree of redundancy. However, it has become clear that these enzymes are also important regulators of both health and disease. Thus, selective tools that can discriminate between members of this highly related class of enzymes will be critical to further delineate the unique biological functions of individual cathepsins. Here we present the design  ...[more]

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