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Hydrogen Bonding Drives Helical Chirality via 10-Membered Rings in Dipeptide Conjugates of Ferrocene-1,1′-Diamine

Considering the enormous importance of protein turns as participants in various biological events, such as protein–protein interactions, great efforts have been made to develop their conformationally and proteolytically stable mimetics. Ferrocene-1,1′-diamine was previously shown to nucleate the sta...

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Autores principales: Kovačević, Monika, Markulin, Dora, Zelenika, Matea, Marjanović, Marko, Lovrić, Marija, Polančec, Denis, Ivančić, Marina, Mrvčić, Jasna, Molčanov, Krešimir, Milašinović, Valentina, Roca, Sunčica, Kodrin, Ivan, Barišić, Lidija
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9603039/
https://www.ncbi.nlm.nih.gov/pubmed/36293089
http://dx.doi.org/10.3390/ijms232012233
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author Kovačević, Monika
Markulin, Dora
Zelenika, Matea
Marjanović, Marko
Lovrić, Marija
Polančec, Denis
Ivančić, Marina
Mrvčić, Jasna
Molčanov, Krešimir
Milašinović, Valentina
Roca, Sunčica
Kodrin, Ivan
Barišić, Lidija
author_facet Kovačević, Monika
Markulin, Dora
Zelenika, Matea
Marjanović, Marko
Lovrić, Marija
Polančec, Denis
Ivančić, Marina
Mrvčić, Jasna
Molčanov, Krešimir
Milašinović, Valentina
Roca, Sunčica
Kodrin, Ivan
Barišić, Lidija
author_sort Kovačević, Monika
collection PubMed
description Considering the enormous importance of protein turns as participants in various biological events, such as protein–protein interactions, great efforts have been made to develop their conformationally and proteolytically stable mimetics. Ferrocene-1,1′-diamine was previously shown to nucleate the stable turn structures in peptides prepared by conjugation with Ala (III) and Ala–Pro (VI). Here, we prepared the homochiral conjugates of ferrocene-1,1′-diamine with l-/d-Phe (32/35), l-/d-Val (33/36), and l-/d-Leu (34/37) to investigate (1) whether the organometallic template induces the turn structure upon conjugation with amino acids, and (2) whether the bulky or branched side chains of Phe, Val, and Leu affect hydrogen bonding. Detailed spectroscopic (IR, NMR, CD), X-ray, and DFT studies revealed the presence of two simultaneous 10-membered interstrand hydrogen bonds, i.e., two simultaneous β-turns in goal compounds. A preliminary biological evaluation of d-Leu conjugate 37 showed its modest potential to induce cell cycle arrest in the G0/G1 phase in the HeLa cell line but these results need further investigation.
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spelling pubmed-96030392022-10-27 Hydrogen Bonding Drives Helical Chirality via 10-Membered Rings in Dipeptide Conjugates of Ferrocene-1,1′-Diamine Kovačević, Monika Markulin, Dora Zelenika, Matea Marjanović, Marko Lovrić, Marija Polančec, Denis Ivančić, Marina Mrvčić, Jasna Molčanov, Krešimir Milašinović, Valentina Roca, Sunčica Kodrin, Ivan Barišić, Lidija Int J Mol Sci Article Considering the enormous importance of protein turns as participants in various biological events, such as protein–protein interactions, great efforts have been made to develop their conformationally and proteolytically stable mimetics. Ferrocene-1,1′-diamine was previously shown to nucleate the stable turn structures in peptides prepared by conjugation with Ala (III) and Ala–Pro (VI). Here, we prepared the homochiral conjugates of ferrocene-1,1′-diamine with l-/d-Phe (32/35), l-/d-Val (33/36), and l-/d-Leu (34/37) to investigate (1) whether the organometallic template induces the turn structure upon conjugation with amino acids, and (2) whether the bulky or branched side chains of Phe, Val, and Leu affect hydrogen bonding. Detailed spectroscopic (IR, NMR, CD), X-ray, and DFT studies revealed the presence of two simultaneous 10-membered interstrand hydrogen bonds, i.e., two simultaneous β-turns in goal compounds. A preliminary biological evaluation of d-Leu conjugate 37 showed its modest potential to induce cell cycle arrest in the G0/G1 phase in the HeLa cell line but these results need further investigation. MDPI 2022-10-13 /pmc/articles/PMC9603039/ /pubmed/36293089 http://dx.doi.org/10.3390/ijms232012233 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Kovačević, Monika
Markulin, Dora
Zelenika, Matea
Marjanović, Marko
Lovrić, Marija
Polančec, Denis
Ivančić, Marina
Mrvčić, Jasna
Molčanov, Krešimir
Milašinović, Valentina
Roca, Sunčica
Kodrin, Ivan
Barišić, Lidija
Hydrogen Bonding Drives Helical Chirality via 10-Membered Rings in Dipeptide Conjugates of Ferrocene-1,1′-Diamine
title Hydrogen Bonding Drives Helical Chirality via 10-Membered Rings in Dipeptide Conjugates of Ferrocene-1,1′-Diamine
title_full Hydrogen Bonding Drives Helical Chirality via 10-Membered Rings in Dipeptide Conjugates of Ferrocene-1,1′-Diamine
title_fullStr Hydrogen Bonding Drives Helical Chirality via 10-Membered Rings in Dipeptide Conjugates of Ferrocene-1,1′-Diamine
title_full_unstemmed Hydrogen Bonding Drives Helical Chirality via 10-Membered Rings in Dipeptide Conjugates of Ferrocene-1,1′-Diamine
title_short Hydrogen Bonding Drives Helical Chirality via 10-Membered Rings in Dipeptide Conjugates of Ferrocene-1,1′-Diamine
title_sort hydrogen bonding drives helical chirality via 10-membered rings in dipeptide conjugates of ferrocene-1,1′-diamine
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9603039/
https://www.ncbi.nlm.nih.gov/pubmed/36293089
http://dx.doi.org/10.3390/ijms232012233
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