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Jerveratrum-Type Steroidal Alkaloids Inhibit β-1,6-Glucan Biosynthesis in Fungal Cell Walls
The limited number of available effective agents necessitates the development of new antifungals. We report that jervine, a jerveratrum-type steroidal alkaloid isolated from Veratrum californicum, has antifungal activity. Phenotypic comparisons of cell wall mutants, K1 killer toxin susceptibility te...
Autores principales: | , , , , , , , , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
American Society for Microbiology
2022
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8754110/ https://www.ncbi.nlm.nih.gov/pubmed/35019680 http://dx.doi.org/10.1128/spectrum.00873-21 |
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author | Kubo, Karen Itto-Nakama, Kaori Ohnuki, Shinsuke Yashiroda, Yoko Li, Sheena C. Kimura, Hiromi Kawamura, Yumi Shimamoto, Yasuhiro Tominaga, Ken-Ichi Yamanaka, Daisuke Adachi, Yoshiyuki Takashima, Shinichiro Noda, Yoichi Boone, Charles Ohya, Yoshikazu |
author_facet | Kubo, Karen Itto-Nakama, Kaori Ohnuki, Shinsuke Yashiroda, Yoko Li, Sheena C. Kimura, Hiromi Kawamura, Yumi Shimamoto, Yasuhiro Tominaga, Ken-Ichi Yamanaka, Daisuke Adachi, Yoshiyuki Takashima, Shinichiro Noda, Yoichi Boone, Charles Ohya, Yoshikazu |
author_sort | Kubo, Karen |
collection | PubMed |
description | The limited number of available effective agents necessitates the development of new antifungals. We report that jervine, a jerveratrum-type steroidal alkaloid isolated from Veratrum californicum, has antifungal activity. Phenotypic comparisons of cell wall mutants, K1 killer toxin susceptibility testing, and quantification of cell wall components revealed that β-1,6-glucan biosynthesis was significantly inhibited by jervine. Temperature-sensitive mutants defective in essential genes involved in β-1,6-glucan biosynthesis, including BIG1, KEG1, KRE5, KRE9, and ROT1, were hypersensitive to jervine. In contrast, point mutations in KRE6 or its paralog SKN1 produced jervine resistance, suggesting that jervine targets Kre6 and Skn1. Jervine exhibited broad-spectrum antifungal activity and was effective against human-pathogenic fungi, including Candida parapsilosis and Candida krusei. It was also effective against phytopathogenic fungi, including Botrytis cinerea and Puccinia recondita. Jervine exerted a synergistic effect with fluconazole. Therefore, jervine, a jerveratrum-type steroidal alkaloid used in pharmaceutical products, represents a new class of antifungals active against mycoses and plant-pathogenic fungi. IMPORTANCE Non-Candida albicans Candida species (NCAC) are on the rise as a cause of mycosis. Many antifungal drugs are less effective against NCAC, limiting the available therapeutic agents. Here, we report that jervine, a jerveratrum-type steroidal alkaloid, is effective against NCAC and phytopathogenic fungi. Jervine acts on Kre6 and Skn1, which are involved in β-1,6-glucan biosynthesis. The skeleton of jerveratrum-type steroidal alkaloids has been well studied, and more recently, their anticancer properties have been investigated. Therefore, jerveratrum-type alkaloids could potentially be applied as treatments for fungal infections and cancer. |
format | Online Article Text |
id | pubmed-8754110 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2022 |
publisher | American Society for Microbiology |
record_format | MEDLINE/PubMed |
spelling | pubmed-87541102022-01-24 Jerveratrum-Type Steroidal Alkaloids Inhibit β-1,6-Glucan Biosynthesis in Fungal Cell Walls Kubo, Karen Itto-Nakama, Kaori Ohnuki, Shinsuke Yashiroda, Yoko Li, Sheena C. Kimura, Hiromi Kawamura, Yumi Shimamoto, Yasuhiro Tominaga, Ken-Ichi Yamanaka, Daisuke Adachi, Yoshiyuki Takashima, Shinichiro Noda, Yoichi Boone, Charles Ohya, Yoshikazu Microbiol Spectr Research Article The limited number of available effective agents necessitates the development of new antifungals. We report that jervine, a jerveratrum-type steroidal alkaloid isolated from Veratrum californicum, has antifungal activity. Phenotypic comparisons of cell wall mutants, K1 killer toxin susceptibility testing, and quantification of cell wall components revealed that β-1,6-glucan biosynthesis was significantly inhibited by jervine. Temperature-sensitive mutants defective in essential genes involved in β-1,6-glucan biosynthesis, including BIG1, KEG1, KRE5, KRE9, and ROT1, were hypersensitive to jervine. In contrast, point mutations in KRE6 or its paralog SKN1 produced jervine resistance, suggesting that jervine targets Kre6 and Skn1. Jervine exhibited broad-spectrum antifungal activity and was effective against human-pathogenic fungi, including Candida parapsilosis and Candida krusei. It was also effective against phytopathogenic fungi, including Botrytis cinerea and Puccinia recondita. Jervine exerted a synergistic effect with fluconazole. Therefore, jervine, a jerveratrum-type steroidal alkaloid used in pharmaceutical products, represents a new class of antifungals active against mycoses and plant-pathogenic fungi. IMPORTANCE Non-Candida albicans Candida species (NCAC) are on the rise as a cause of mycosis. Many antifungal drugs are less effective against NCAC, limiting the available therapeutic agents. Here, we report that jervine, a jerveratrum-type steroidal alkaloid, is effective against NCAC and phytopathogenic fungi. Jervine acts on Kre6 and Skn1, which are involved in β-1,6-glucan biosynthesis. The skeleton of jerveratrum-type steroidal alkaloids has been well studied, and more recently, their anticancer properties have been investigated. Therefore, jerveratrum-type alkaloids could potentially be applied as treatments for fungal infections and cancer. American Society for Microbiology 2022-01-12 /pmc/articles/PMC8754110/ /pubmed/35019680 http://dx.doi.org/10.1128/spectrum.00873-21 Text en Copyright © 2022 Kubo et al. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution 4.0 International license (https://creativecommons.org/licenses/by/4.0/) . |
spellingShingle | Research Article Kubo, Karen Itto-Nakama, Kaori Ohnuki, Shinsuke Yashiroda, Yoko Li, Sheena C. Kimura, Hiromi Kawamura, Yumi Shimamoto, Yasuhiro Tominaga, Ken-Ichi Yamanaka, Daisuke Adachi, Yoshiyuki Takashima, Shinichiro Noda, Yoichi Boone, Charles Ohya, Yoshikazu Jerveratrum-Type Steroidal Alkaloids Inhibit β-1,6-Glucan Biosynthesis in Fungal Cell Walls |
title | Jerveratrum-Type Steroidal Alkaloids Inhibit β-1,6-Glucan Biosynthesis in Fungal Cell Walls |
title_full | Jerveratrum-Type Steroidal Alkaloids Inhibit β-1,6-Glucan Biosynthesis in Fungal Cell Walls |
title_fullStr | Jerveratrum-Type Steroidal Alkaloids Inhibit β-1,6-Glucan Biosynthesis in Fungal Cell Walls |
title_full_unstemmed | Jerveratrum-Type Steroidal Alkaloids Inhibit β-1,6-Glucan Biosynthesis in Fungal Cell Walls |
title_short | Jerveratrum-Type Steroidal Alkaloids Inhibit β-1,6-Glucan Biosynthesis in Fungal Cell Walls |
title_sort | jerveratrum-type steroidal alkaloids inhibit β-1,6-glucan biosynthesis in fungal cell walls |
topic | Research Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8754110/ https://www.ncbi.nlm.nih.gov/pubmed/35019680 http://dx.doi.org/10.1128/spectrum.00873-21 |
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