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Identification and characterization of novel inhibitors of Mammalian aspartyl aminopeptidase.


ABSTRACT: Aspartyl aminopeptidase (DNPEP) has been implicated in the control of angiotensin signaling and endosome trafficking, but its precise biologic roles remain incompletely defined. We performed a high-throughput screen of ?25,000 small molecules to identify inhibitors of DNPEP for use as tools to study its biologic functions. Twenty-three confirmed hits inhibited DNPEP-catalyzed hydrolysis of angiotensin II with micromolar potency. A counter screen against glutamyl aminopeptidase (ENPEP), an enzyme with substrate specificity similar to that of DNPEP, identified eight DNPEP-selective inhibitors. Structure-activity relationships and modeling studies revealed structural features common to the identified inhibitors, including a metal-chelating group and a charged or polar moiety that could interact with portions of the enzyme active site. The compounds identified in this study should be valuable tools for elucidating DNPEP physiology.

SUBMITTER: Chen Y 

PROVIDER: S-EPMC4127928 | biostudies-literature | 2014 Aug

REPOSITORIES: biostudies-literature

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Identification and characterization of novel inhibitors of Mammalian aspartyl aminopeptidase.

Chen Yuanyuan Y   Tang Hong H   Seibel William W   Papoian Ruben R   Oh Ki K   Li Xiaoyu X   Zhang Jianye J   Golczak Marcin M   Palczewski Krzysztof K   Kiser Philip D PD  

Molecular pharmacology 20140609 2


Aspartyl aminopeptidase (DNPEP) has been implicated in the control of angiotensin signaling and endosome trafficking, but its precise biologic roles remain incompletely defined. We performed a high-throughput screen of ∼25,000 small molecules to identify inhibitors of DNPEP for use as tools to study its biologic functions. Twenty-three confirmed hits inhibited DNPEP-catalyzed hydrolysis of angiotensin II with micromolar potency. A counter screen against glutamyl aminopeptidase (ENPEP), an enzyme  ...[more]

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