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1.
Clin Neuropharmacol ; 46(3): 126-127, 2023.
Article in English | MEDLINE | ID: mdl-37191567

ABSTRACT

ABSTRACT: Cabergoline is a dopamine 2 receptor agonist used as first-line treatment of pituitary prolactinomas. Here, we describe the case of a 32-year-old woman with a pituitary prolactinoma who was treated with cabergoline for 1 year, during which time she developed delusions. We also discuss the use of aripiprazole to mitigate the psychotic symptoms, while maintaining the efficacy of cabergoline treatment.


Subject(s)
Pituitary Neoplasms , Prolactinoma , Female , Humans , Adult , Cabergoline , Prolactinoma/drug therapy , Aripiprazole/adverse effects , Pituitary Neoplasms/drug therapy , Delusions , Ergolines/adverse effects , Dopamine Agonists/adverse effects
2.
Int J Biol Macromol ; 136: 1176-1187, 2019 Sep 01.
Article in English | MEDLINE | ID: mdl-31207330

ABSTRACT

The de novo pyrimidine biosynthesis pathway is essential for the proliferation of many pathogens. One of the pathway enzymes, dihydroorotase (DHO), catalyzes the reversible interconversion of N-carbamoyl-l-aspartate to 4,5-dihydroorotate. The substantial difference between bacterial and mammalian DHOs makes it a promising drug target for disrupting bacterial growth and thus an important candidate to evaluate as a response to antimicrobial resistance on a molecular level. Here, we present two novel three-dimensional structures of DHOs from Yersinia pestis (YpDHO), the plague-causing pathogen, and Vibrio cholerae (VcDHO), the causative agent of cholera. The evaluations of these two structures led to an analysis of all available DHO structures and their classification into known DHO types. Comparison of all the DHO active sites containing ligands that are listed in DrugBank was facilitated by a new interactive, structure-comparison and presentation platform. In addition, we examined the genetic context of characterized DHOs, which revealed characteristic patterns for different types of DHOs. We also generated a homology model for DHO from Plasmodium falciparum.


Subject(s)
Dihydroorotase/chemistry , Dihydroorotase/metabolism , Pyrimidines/biosynthesis , Vibrio cholerae/enzymology , Yersinia pestis/enzymology , Amino Acid Sequence , Catalytic Domain , Dihydroorotase/genetics , Genomics , Malates/metabolism , Models, Molecular , Sequence Homology, Amino Acid , Zinc/metabolism
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