Cargando…

Insight into the Structure of Victorin, the Host-Selective Toxin from the Oat Pathogen Cochliobolus victoriae. Studies of the Unique Dehydroamino Acid β-Chlorodehydroalanine

[Image: see text] Victorins, a family of peptide toxins, produced by the fungal pathogen Cochliobolus victoriae and responsible for disease of some oat varieties, contain a β-chlorodehydroalanine residue, ΔAla(βCl). To determine the conformational properties of this unique dehydroamino acid, a serie...

Descripción completa

Detalles Bibliográficos
Autores principales: Banaś, Karolina, Lenartowicz, Paweł, Staś, Monika, Dziuk, Błażej, Siodłak, Dawid
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2023
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10401702/
https://www.ncbi.nlm.nih.gov/pubmed/37486973
http://dx.doi.org/10.1021/acs.jafc.3c01387
_version_ 1785084718186758144
author Banaś, Karolina
Lenartowicz, Paweł
Staś, Monika
Dziuk, Błażej
Siodłak, Dawid
author_facet Banaś, Karolina
Lenartowicz, Paweł
Staś, Monika
Dziuk, Błażej
Siodłak, Dawid
author_sort Banaś, Karolina
collection PubMed
description [Image: see text] Victorins, a family of peptide toxins, produced by the fungal pathogen Cochliobolus victoriae and responsible for disease of some oat varieties, contain a β-chlorodehydroalanine residue, ΔAla(βCl). To determine the conformational properties of this unique dehydroamino acid, a series of model compounds was studied using X-ray, NMR, and FT-IR methods, supported by theoretical calculations. The ΔAla(βCl) geometrical isomers differ in conformational profile. The isomer Z prefers the helical conformation α (φ, ψ = −61°, −24°), PPII type conformation β (φ, ψ = −47°, 136°), and semiextended conformation β2 (φ, ψ = −116°, 9°) in weakly and more polar solutions. The isomer E prefers mainly the extended conformation C5 (φ, ψ = −177°, 160°), but with an increase of the environment polarity also conformations β (φ, ψ = −44°, 132°) and α (φ, ψ = −53°, −39°). In the most stable conformations the N-H···Cl hydrogen bond (5(γ)) occurs, created between the chlorine atom of the side chain and the N-H donor of the flanking amide group. The method of synthesis of the β-chlorodehydroalanine residue is proposed, by chlorination of dehydroalanine and then the photoisomerization from the isomer Z to E. The presented results indicate that the assignment of the geometrical isomer of the ΔAla(βCl) residue in naturally occurring victorins still remains an open question, despite being crucial for biological activity.
format Online
Article
Text
id pubmed-10401702
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher American Chemical Society
record_format MEDLINE/PubMed
spelling pubmed-104017022023-08-05 Insight into the Structure of Victorin, the Host-Selective Toxin from the Oat Pathogen Cochliobolus victoriae. Studies of the Unique Dehydroamino Acid β-Chlorodehydroalanine Banaś, Karolina Lenartowicz, Paweł Staś, Monika Dziuk, Błażej Siodłak, Dawid J Agric Food Chem [Image: see text] Victorins, a family of peptide toxins, produced by the fungal pathogen Cochliobolus victoriae and responsible for disease of some oat varieties, contain a β-chlorodehydroalanine residue, ΔAla(βCl). To determine the conformational properties of this unique dehydroamino acid, a series of model compounds was studied using X-ray, NMR, and FT-IR methods, supported by theoretical calculations. The ΔAla(βCl) geometrical isomers differ in conformational profile. The isomer Z prefers the helical conformation α (φ, ψ = −61°, −24°), PPII type conformation β (φ, ψ = −47°, 136°), and semiextended conformation β2 (φ, ψ = −116°, 9°) in weakly and more polar solutions. The isomer E prefers mainly the extended conformation C5 (φ, ψ = −177°, 160°), but with an increase of the environment polarity also conformations β (φ, ψ = −44°, 132°) and α (φ, ψ = −53°, −39°). In the most stable conformations the N-H···Cl hydrogen bond (5(γ)) occurs, created between the chlorine atom of the side chain and the N-H donor of the flanking amide group. The method of synthesis of the β-chlorodehydroalanine residue is proposed, by chlorination of dehydroalanine and then the photoisomerization from the isomer Z to E. The presented results indicate that the assignment of the geometrical isomer of the ΔAla(βCl) residue in naturally occurring victorins still remains an open question, despite being crucial for biological activity. American Chemical Society 2023-07-24 /pmc/articles/PMC10401702/ /pubmed/37486973 http://dx.doi.org/10.1021/acs.jafc.3c01387 Text en © 2023 The Authors. Published by American Chemical Society https://creativecommons.org/licenses/by/4.0/Permits the broadest form of re-use including for commercial purposes, provided that author attribution and integrity are maintained (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Banaś, Karolina
Lenartowicz, Paweł
Staś, Monika
Dziuk, Błażej
Siodłak, Dawid
Insight into the Structure of Victorin, the Host-Selective Toxin from the Oat Pathogen Cochliobolus victoriae. Studies of the Unique Dehydroamino Acid β-Chlorodehydroalanine
title Insight into the Structure of Victorin, the Host-Selective Toxin from the Oat Pathogen Cochliobolus victoriae. Studies of the Unique Dehydroamino Acid β-Chlorodehydroalanine
title_full Insight into the Structure of Victorin, the Host-Selective Toxin from the Oat Pathogen Cochliobolus victoriae. Studies of the Unique Dehydroamino Acid β-Chlorodehydroalanine
title_fullStr Insight into the Structure of Victorin, the Host-Selective Toxin from the Oat Pathogen Cochliobolus victoriae. Studies of the Unique Dehydroamino Acid β-Chlorodehydroalanine
title_full_unstemmed Insight into the Structure of Victorin, the Host-Selective Toxin from the Oat Pathogen Cochliobolus victoriae. Studies of the Unique Dehydroamino Acid β-Chlorodehydroalanine
title_short Insight into the Structure of Victorin, the Host-Selective Toxin from the Oat Pathogen Cochliobolus victoriae. Studies of the Unique Dehydroamino Acid β-Chlorodehydroalanine
title_sort insight into the structure of victorin, the host-selective toxin from the oat pathogen cochliobolus victoriae. studies of the unique dehydroamino acid β-chlorodehydroalanine
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10401702/
https://www.ncbi.nlm.nih.gov/pubmed/37486973
http://dx.doi.org/10.1021/acs.jafc.3c01387
work_keys_str_mv AT banaskarolina insightintothestructureofvictorinthehostselectivetoxinfromtheoatpathogencochliobolusvictoriaestudiesoftheuniquedehydroaminoacidbchlorodehydroalanine
AT lenartowiczpaweł insightintothestructureofvictorinthehostselectivetoxinfromtheoatpathogencochliobolusvictoriaestudiesoftheuniquedehydroaminoacidbchlorodehydroalanine
AT stasmonika insightintothestructureofvictorinthehostselectivetoxinfromtheoatpathogencochliobolusvictoriaestudiesoftheuniquedehydroaminoacidbchlorodehydroalanine
AT dziukbłazej insightintothestructureofvictorinthehostselectivetoxinfromtheoatpathogencochliobolusvictoriaestudiesoftheuniquedehydroaminoacidbchlorodehydroalanine
AT siodłakdawid insightintothestructureofvictorinthehostselectivetoxinfromtheoatpathogencochliobolusvictoriaestudiesoftheuniquedehydroaminoacidbchlorodehydroalanine