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X-ray crystal structure and specificity of the Toxoplasma gondii ME49 TgAPN2.


ABSTRACT: Toxoplasmosis is a parasitic disease caused by infection with Toxoplasma gondii that currently has few therapeutic options. The M1 aminopeptidase enzymes have been shown to be attractive targets for anti-parasitic agents and/or vaccine candidates, suggesting potential to re-purpose inhibitors between parasite M1 aminopeptidase targets. The M1 aminopeptidase TgAPN2 has been suggested to be a potential new drug target for toxoplasmosis. Here we investigate the structure and function of TgAPN2, a homologue of the antimalarial drug target PfA-M1, and evaluate the capacity to use inhibitors that target PfA-M1 against TgAPN2. The results show that despite a similar overall fold, the TgAPN2 has a unique substrate specificity and inhibition profile. Sequence and structure differences are investigated and show how comparative structure-activity relationships may provide a route to obtaining potent inhibitors of TgAPN2.

SUBMITTER: Marijanovic EM 

PROVIDER: S-EPMC7557147 | biostudies-literature | 2020 Oct

REPOSITORIES: biostudies-literature

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X-ray crystal structure and specificity of the Toxoplasma gondii ME49 TgAPN2.

Marijanovic Emilia M EM   Weronika Swiderska Karolina K   Andersen James J   Aschenbrenner Jasmin C JC   Webb Chaille T CT   Drag Marcin M   Drinkwater Nyssa N   McGowan Sheena S  

The Biochemical journal 20201001 19


Toxoplasmosis is a parasitic disease caused by infection with Toxoplasma gondii that currently has few therapeutic options. The M1 aminopeptidase enzymes have been shown to be attractive targets for anti-parasitic agents and/or vaccine candidates, suggesting potential to re-purpose inhibitors between parasite M1 aminopeptidase targets. The M1 aminopeptidase TgAPN2 has been suggested to be a potential new drug target for toxoplasmosis. Here we investigate the structure and function of TgAPN2, a h  ...[more]

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