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Zinc-Chelating Compounds as Inhibitors of Human and Bacterial Zinc Metalloproteases

Permanent lenke
https://hdl.handle.net/10037/23748
DOI
https://doi.org/10.3390/molecules27010056
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Åpne
article.pdf (5.084Mb)
Publisert versjon (PDF)
Dato
2021-12-22
Type
Journal article
Tidsskriftartikkel
Peer reviewed

Forfatter
Rahman, Fatema; Wushur, Imin; Malla, Nabin; Åstrand, Ove Alexander Høgmoen; Rongved, Pål; Winberg, Jan-Olof; Sylte, Ingebrigt
Sammendrag
Inhibition of bacterial virulence is believed to be a new treatment option for bacterial infections. In the present study, we tested dipicolylamine (DPA), tripicolylamine (TPA), tris pyridine ethylene diamine (TPED), pyridine and thiophene derivatives as putative inhibitors of the bacterial virulence factors thermolysin (TLN), pseudolysin (PLN) and aureolysin (ALN) and the human zinc metalloproteases, matrix metalloprotease-9 (MMP-9) and matrix metalloprotease-14 (MMP-14). These compounds have nitrogen or sulfur as putative donor atoms for zinc chelation. In general, the compounds showed stronger inhibition of MMP-14 and PLN than of the other enzymes, with Ki values in the lower µM range. Except for DPA, none of the compounds showed significantly stronger inhibition of the virulence factors than of the human zinc metalloproteases. TPA and Zn230 were the only compounds that inhibited all five zinc metalloproteinases with a Ki value in the lower µM range. The thiophene compounds gave weak or no inhibition. Docking indicated that some of the compounds coordinated zinc by one oxygen atom from a hydroxyl or carbonyl group, or by oxygen atoms both from a hydroxyl group and a carbonyl group, and not by pyridine nitrogen as in DPA and TPA.
Er en del av
Rahman, F.A. (2023). Zinc binding and chelating compounds as inhibitors of bacterial metalloproteases and human matrix metalloproteases. (Doctoral thesis). https://hdl.handle.net/10037/31269.
Forlag
MDPI
Sitering
Rahman, Wushur, Malla, Åstrand, Rongved, Winberg, Sylte. Zinc-Chelating Compounds as Inhibitors of Human and Bacterial Zinc Metalloproteases. Molecules. 2021
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  • Artikler, rapporter og annet (medisinsk biologi) [1103]
Copyright 2021 The Author(s)

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