Structure-guided approach to identify a novel class of anti-leishmaniasis diaryl sulfide compounds targeting the trypanothione metabolism.
Amino Acid Motifs
Antiprotozoal Agents
/ chemistry
Catalytic Domain
Glutathione
/ analogs & derivatives
Humans
Leishmania infantum
/ drug effects
Leishmaniasis
/ drug therapy
Models, Molecular
NADH, NADPH Oxidoreductases
/ antagonists & inhibitors
Protozoan Proteins
/ antagonists & inhibitors
Spermidine
/ analogs & derivatives
Sulfides
/ chemistry
Diaryl sulfide inhibitors
Structure-based drug design
Trypanothione metabolism
Trypanothione reductase
Journal
Amino acids
ISSN: 1438-2199
Titre abrégé: Amino Acids
Pays: Austria
ID NLM: 9200312
Informations de publication
Date de publication:
Feb 2020
Feb 2020
Historique:
received:
18
01
2019
accepted:
03
04
2019
pubmed:
1
5
2019
medline:
13
11
2020
entrez:
1
5
2019
Statut:
ppublish
Résumé
Leishmania protozoans are the causative agent of leishmaniasis, a neglected tropical disease consisting of three major clinical forms: visceral leishmaniasis (VL), cutaneous leishmaniasis, and mucocutaneous leishmaniasis. VL is caused by Leishmania donovani in East Africa and the Indian subcontinent and by Leishmania infantum in Europe, North Africa, and Latin America, and causes an estimated 60,000 deaths per year. Trypanothione reductase (TR) is considered to be one of the best targets to find new drugs against leishmaniasis. This enzyme is fundamental for parasite survival in the human host since it reduces trypanothione, a molecule used by the tryparedoxin/tryparedoxin peroxidase system of Leishmania to neutralize the hydrogen peroxide produced by host macrophages during infection. Recently, we solved the X-ray structure of TR in complex with the diaryl sulfide compound RDS 777 (6-(sec-butoxy)-2-((3-chlorophenyl)thio)pyrimidin-4-amine), which impairs the parasite defense against the reactive oxygen species by inhibiting TR with high efficiency. The compound binds to the catalytic site and engages in hydrogen bonds the residues more involved in the catalysis, namely Glu466', Cys57 and Cys52, thereby inhibiting the trypanothione binding. On the basis of the RDS 777-TR complex, we synthesized structurally related diaryl sulfide analogs as TR inhibitors able to compete for trypanothione binding to the enzyme and to kill the promastigote in the micromolar range. One of the most active among these compounds (RDS 562) was able to reduce the trypanothione concentration in cell of about 33% via TR inhibition. RDS 562 inhibits selectively Leishmania TR, while it does not inhibit the human homolog glutathione reductase.
Identifiants
pubmed: 31037461
doi: 10.1007/s00726-019-02731-4
pii: 10.1007/s00726-019-02731-4
doi:
Substances chimiques
Antiprotozoal Agents
0
Protozoan Proteins
0
Sulfides
0
trypanothione
96304-42-6
NADH, NADPH Oxidoreductases
EC 1.6.-
trypanothione reductase
EC 1.8.1.12
Glutathione
GAN16C9B8O
Spermidine
U87FK77H25
Types de publication
Journal Article
Langues
eng
Sous-ensembles de citation
IM
Pagination
247-259Subventions
Organisme : MIUR
ID : 20154JRJPP