In the search for effective antivirals against Paramyxoviridae, the dynamics of human parainfluenza virus type 1 hemagglutinin-neuraminidase (hPIV1-HN) inhibition offers a promising perspective. This study focuses on the potential of C5- and C4-modified 2,3-unsaturated sialic acid (DANA) inhibitors and highlights their interaction with the hPIV1-HN enzyme. We show that a strategic substitution, replacing the C5 isopropyl group in BCX 2798 with a trifluoroacetyl function, increases inhibitory potency 3- to 4-fold. At the same time, we explore the special properties of the catalytic site of hPIV1-HN, which harbors only small substituents and favors a C4 sulfonyl-amido function over a carbonyl function, in contrast to the C4 pocket of Newcastle disease virus hemagglutinin-neuraminidase (NDV-HN). Based on these findings, we present a newly identified potent inhibitor that has the preferred C5 trifluoro-acetamido and C4 trifluoro-sulfonyl-amide groups. The results of this study pave the way for a deeper understanding of the C4 and C5 binding pockets of hPIV1-HN and promote the development of new, more selective inhibitors.

Interplay of Modified Sialic Acid Inhibitors and the Human Parainfluenza Virus 1 Hemagglutinin-Neuraminidase Active Site / P. Rota, P. La Rocca, F. Bonfante, M. Pagliari, F. Cirillo, M. Piccoli, A. Ghiroldi, V. Franco, C. Pappone, P. Allevi, L. Anastasia. - In: ACS MEDICINAL CHEMISTRY LETTERS. - ISSN 1948-5875. - 14:10(2023 Oct 12), pp. 1383-1388. [10.1021/acsmedchemlett.3c00291]

Interplay of Modified Sialic Acid Inhibitors and the Human Parainfluenza Virus 1 Hemagglutinin-Neuraminidase Active Site

P. Rota
Primo
;
P. Allevi;
2023

Abstract

In the search for effective antivirals against Paramyxoviridae, the dynamics of human parainfluenza virus type 1 hemagglutinin-neuraminidase (hPIV1-HN) inhibition offers a promising perspective. This study focuses on the potential of C5- and C4-modified 2,3-unsaturated sialic acid (DANA) inhibitors and highlights their interaction with the hPIV1-HN enzyme. We show that a strategic substitution, replacing the C5 isopropyl group in BCX 2798 with a trifluoroacetyl function, increases inhibitory potency 3- to 4-fold. At the same time, we explore the special properties of the catalytic site of hPIV1-HN, which harbors only small substituents and favors a C4 sulfonyl-amido function over a carbonyl function, in contrast to the C4 pocket of Newcastle disease virus hemagglutinin-neuraminidase (NDV-HN). Based on these findings, we present a newly identified potent inhibitor that has the preferred C5 trifluoro-acetamido and C4 trifluoro-sulfonyl-amide groups. The results of this study pave the way for a deeper understanding of the C4 and C5 binding pockets of hPIV1-HN and promote the development of new, more selective inhibitors.
No
English
human parainfluenza virus 1; sialic acid; antiviralinhibitor; hemagglutinin-neuraminidase; viral infection
Settore BIO/10 - Biochimica
Articolo
Esperti anonimi
Pubblicazione scientifica
Goal 3: Good health and well-being
12-ott-2023
American Chemical Society ACS
14
10
1383
1388
6
Pubblicato
Periodico con rilevanza internazionale
crossref
Aderisco
info:eu-repo/semantics/article
Interplay of Modified Sialic Acid Inhibitors and the Human Parainfluenza Virus 1 Hemagglutinin-Neuraminidase Active Site / P. Rota, P. La Rocca, F. Bonfante, M. Pagliari, F. Cirillo, M. Piccoli, A. Ghiroldi, V. Franco, C. Pappone, P. Allevi, L. Anastasia. - In: ACS MEDICINAL CHEMISTRY LETTERS. - ISSN 1948-5875. - 14:10(2023 Oct 12), pp. 1383-1388. [10.1021/acsmedchemlett.3c00291]
open
Prodotti della ricerca::01 - Articolo su periodico
11
262
Article (author)
Periodico con Impact Factor
P. Rota, P. La Rocca, F. Bonfante, M. Pagliari, F. Cirillo, M. Piccoli, A. Ghiroldi, V. Franco, C. Pappone, P. Allevi, L. Anastasia
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2434/1032216
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