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Tytuł pozycji:

Discovery of selective fragment-sized immunoproteasome inhibitors.

Tytuł:
Discovery of selective fragment-sized immunoproteasome inhibitors.
Autorzy:
Kollár L; Medicinal Chemistry Research Group, Research Centre for Natural Sciences, Magyar tudósok krt. 2, H-1117, Budapest, Hungary.
Gobec M; University of Ljubljana, Faculty of Pharmacy, Aškerčeva cesta 7, SI-1000, Ljubljana, Slovenia.
Szilágyi B; Medicinal Chemistry Research Group, Research Centre for Natural Sciences, Magyar tudósok krt. 2, H-1117, Budapest, Hungary.
Proj M; University of Ljubljana, Faculty of Pharmacy, Aškerčeva cesta 7, SI-1000, Ljubljana, Slovenia.
Knez D; University of Ljubljana, Faculty of Pharmacy, Aškerčeva cesta 7, SI-1000, Ljubljana, Slovenia.
Ábrányi-Balogh P; Medicinal Chemistry Research Group, Research Centre for Natural Sciences, Magyar tudósok krt. 2, H-1117, Budapest, Hungary.
Petri L; Medicinal Chemistry Research Group, Research Centre for Natural Sciences, Magyar tudósok krt. 2, H-1117, Budapest, Hungary.
Imre T; MS Metabolomics Research Group, Research Centre for Natural Sciences, Magyar tudósok krt. 2, H-1117, Budapest, Hungary.
Bajusz D; Medicinal Chemistry Research Group, Research Centre for Natural Sciences, Magyar tudósok krt. 2, H-1117, Budapest, Hungary.
Ferenczy GG; Medicinal Chemistry Research Group, Research Centre for Natural Sciences, Magyar tudósok krt. 2, H-1117, Budapest, Hungary.
Gobec S; University of Ljubljana, Faculty of Pharmacy, Aškerčeva cesta 7, SI-1000, Ljubljana, Slovenia.
Keserű GM; Medicinal Chemistry Research Group, Research Centre for Natural Sciences, Magyar tudósok krt. 2, H-1117, Budapest, Hungary. Electronic address: .
Sosič I; University of Ljubljana, Faculty of Pharmacy, Aškerčeva cesta 7, SI-1000, Ljubljana, Slovenia. Electronic address: .
Źródło:
European journal of medicinal chemistry [Eur J Med Chem] 2021 Jul 05; Vol. 219, pp. 113455. Date of Electronic Publication: 2021 Apr 20.
Typ publikacji:
Journal Article
Język:
English
Imprint Name(s):
Publication: Paris : Editions Scientifiques Elsevier
Original Publication: Paris, S.E.C.T. [etc.]
MeSH Terms:
Proteasome Endopeptidase Complex/*metabolism
Proteasome Inhibitors/*chemistry
Drug Evaluation, Preclinical ; Humans ; Inhibitory Concentration 50 ; Oxazoles/chemistry ; Proteasome Endopeptidase Complex/chemistry ; Proteasome Inhibitors/metabolism ; Protein Subunits/antagonists & inhibitors ; Protein Subunits/metabolism ; Structure-Activity Relationship ; Thiazoles/chemistry ; Thiones/chemistry
Contributed Indexing:
Keywords: Chloro scan; Disulfide formation; Electrophilic warheads; Fragments; Immunoproteasome; Thiones
Substance Nomenclature:
0 (Oxazoles)
0 (Proteasome Inhibitors)
0 (Protein Subunits)
0 (Thiazoles)
0 (Thiones)
EC 3.4.25.1 (Proteasome Endopeptidase Complex)
Entry Date(s):
Date Created: 20210424 Date Completed: 20210811 Latest Revision: 20210811
Update Code:
20240104
DOI:
10.1016/j.ejmech.2021.113455
PMID:
33894528
Czasopismo naukowe
Proteasomes contribute to maintaining protein homeostasis and their inhibition is beneficial in certain types of cancer and in autoimmune diseases. However, the inhibition of the proteasomes in healthy cells leads to unwanted side-effects and significant effort has been made to identify inhibitors specific for the immunoproteasome, especially to treat diseases which manifest increased levels and activity of this proteasome isoform. Here, we report our efforts to discover fragment-sized inhibitors of the human immunoproteasome. The screening of an in-house library of structurally diverse fragments resulted in the identification of benzo[d]oxazole-2(3H)-thiones, benzo[d]thiazole-2(3H)-thiones, benzo[d]imidazole-2(3H)-thiones, and 1-methylbenzo[d]imidazole-2(3H)-thiones (with a general term benzoXazole-2(3H)-thiones) as inhibitors of the chymotrypsin-like (β5i) subunit of the immunoproteasome. A subsequent structure-activity relationship study provided us with an insight regarding growing vectors. Binding to the β5i subunit was shown and selectivity against the β5 subunit of the constitutive proteasome was determined. Thorough characterization of these compounds suggested that they inhibit the immunoproteasome by forming a disulfide bond with the Cys48 available specifically in the β5i active site. To obtain fragments with biologically more tractable covalent interactions, we performed a warhead scan, which yielded benzoXazole-2-carbonitriles as promising starting points for the development of selective immunoproteasome inhibitors with non-peptidic scaffolds.
Competing Interests: Declaration of competing interest The authors declare that they have no known competing financial interests or personal relationships that could have appeared to influence the work reported in this paper.
(Copyright © 2021 Elsevier Masson SAS. All rights reserved.)

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