Cargando…
Nitric Oxide Regulates Macrophage Fungicidal Activity via S-nitrosylation of Dectin-1
Introduction: Recognition of fungal surface β-glucan by pattern recognition receptor Dectin-1 is a critical process for fungal clearance in the lung. In humans, persistent fungal infection is observed in individuals with particular Dectin-1 polymorphism. We have identified that nitric oxide (NO) mod...
Autores principales: | , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Mary Ann Liebert, Inc., publishers
2020
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7500157/ https://www.ncbi.nlm.nih.gov/pubmed/32953945 http://dx.doi.org/10.1089/aivt.2020.0009 |
_version_ | 1783583811243606016 |
---|---|
author | Gow, James Yang, Yujie Govindraj, Mohan Guo, Changjiang |
author_facet | Gow, James Yang, Yujie Govindraj, Mohan Guo, Changjiang |
author_sort | Gow, James |
collection | PubMed |
description | Introduction: Recognition of fungal surface β-glucan by pattern recognition receptor Dectin-1 is a critical process for fungal clearance in the lung. In humans, persistent fungal infection is observed in individuals with particular Dectin-1 polymorphism. We have identified that nitric oxide (NO) modifies critical cysteines in pattern recognition molecules to disassemble and alter protein function. There is a hydrophobic S-nitrosylation motif present in surfactant protein-D (SP-D) that is also present in Dectin-1. We hypothesized that Dectin-1 can be modified by nitrosative stress potentially leading to impairment of fungal clearance. Materials and Methods: Recombinant Dectin-1 was incubated with l-nitrosocysteine (L-SNOC) and S-nitrosylated Dectin-1 was detected by Biotin-switch assay. Cells of a murine macrophage line (Raw 264.7) were incubated with S-nitroso-glutathione (GSNO) and Dectin-1 shedding from the cell surface was determined by Western blot. Dectin-1 quaternary structure was determined by native gel electrophoresis. Dectin-1 function was assayed by NF-κB activity and IL-6 mRNA real-time polymerase chain reaction (PCR). Phagocytic activity was measured by fluorescence labeled zymosan beads. Results: Dectin-1 was S-nitrosylated by l-nitrosocysteine (L-SNOC) in vitro, as determined by Biotin-switch assay, resulting in structural disruption. We used Western blotting and flow cytometry to demonstrate that incubation of a murine macrophage cell line (Raw 264.7 cells) with GSNO reduced the surface Dectin-1 expression as a result of shedding to the media. The shedding of Dectin-1 is due to formation of S-nitrosothiol (SNO)-Dectin-1 and disruption of the Dectin-1 oligomeric complex. GSNO also induces Dectin-1 shedding from the cell surface. The functional significance of GSNO treatment of macrophages is shown by reduced β-glucan-mediated signaling in terms of NF-κB function and IL-6 expression. Finally, it was demonstrated that GSNO treatment reduces the capability of macrophages to phagocytose zymosan. Conclusions: These data provide mechanistic data to support the role of Dectin-1 nitrosylation as a mediator of reduced fungal clearance in the face of increased NO exposure. |
format | Online Article Text |
id | pubmed-7500157 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2020 |
publisher | Mary Ann Liebert, Inc., publishers |
record_format | MEDLINE/PubMed |
spelling | pubmed-75001572020-09-18 Nitric Oxide Regulates Macrophage Fungicidal Activity via S-nitrosylation of Dectin-1 Gow, James Yang, Yujie Govindraj, Mohan Guo, Changjiang Appl In Vitro Toxicol Original Articles Introduction: Recognition of fungal surface β-glucan by pattern recognition receptor Dectin-1 is a critical process for fungal clearance in the lung. In humans, persistent fungal infection is observed in individuals with particular Dectin-1 polymorphism. We have identified that nitric oxide (NO) modifies critical cysteines in pattern recognition molecules to disassemble and alter protein function. There is a hydrophobic S-nitrosylation motif present in surfactant protein-D (SP-D) that is also present in Dectin-1. We hypothesized that Dectin-1 can be modified by nitrosative stress potentially leading to impairment of fungal clearance. Materials and Methods: Recombinant Dectin-1 was incubated with l-nitrosocysteine (L-SNOC) and S-nitrosylated Dectin-1 was detected by Biotin-switch assay. Cells of a murine macrophage line (Raw 264.7) were incubated with S-nitroso-glutathione (GSNO) and Dectin-1 shedding from the cell surface was determined by Western blot. Dectin-1 quaternary structure was determined by native gel electrophoresis. Dectin-1 function was assayed by NF-κB activity and IL-6 mRNA real-time polymerase chain reaction (PCR). Phagocytic activity was measured by fluorescence labeled zymosan beads. Results: Dectin-1 was S-nitrosylated by l-nitrosocysteine (L-SNOC) in vitro, as determined by Biotin-switch assay, resulting in structural disruption. We used Western blotting and flow cytometry to demonstrate that incubation of a murine macrophage cell line (Raw 264.7 cells) with GSNO reduced the surface Dectin-1 expression as a result of shedding to the media. The shedding of Dectin-1 is due to formation of S-nitrosothiol (SNO)-Dectin-1 and disruption of the Dectin-1 oligomeric complex. GSNO also induces Dectin-1 shedding from the cell surface. The functional significance of GSNO treatment of macrophages is shown by reduced β-glucan-mediated signaling in terms of NF-κB function and IL-6 expression. Finally, it was demonstrated that GSNO treatment reduces the capability of macrophages to phagocytose zymosan. Conclusions: These data provide mechanistic data to support the role of Dectin-1 nitrosylation as a mediator of reduced fungal clearance in the face of increased NO exposure. Mary Ann Liebert, Inc., publishers 2020-09-01 2020-09-17 /pmc/articles/PMC7500157/ /pubmed/32953945 http://dx.doi.org/10.1089/aivt.2020.0009 Text en © James Gow et al. 2020; Published by Mary Ann Liebert, Inc. This Open Access article is distributed under the terms of the Creative Commons Attribution Noncommercial License (http://creativecommons.org/licenses/by-nc/4.0/) which permits any noncommercial use, distribution, and reproduction in any medium, provided the original author(s) and the source are cited. |
spellingShingle | Original Articles Gow, James Yang, Yujie Govindraj, Mohan Guo, Changjiang Nitric Oxide Regulates Macrophage Fungicidal Activity via S-nitrosylation of Dectin-1 |
title | Nitric Oxide Regulates Macrophage Fungicidal Activity via S-nitrosylation of Dectin-1 |
title_full | Nitric Oxide Regulates Macrophage Fungicidal Activity via S-nitrosylation of Dectin-1 |
title_fullStr | Nitric Oxide Regulates Macrophage Fungicidal Activity via S-nitrosylation of Dectin-1 |
title_full_unstemmed | Nitric Oxide Regulates Macrophage Fungicidal Activity via S-nitrosylation of Dectin-1 |
title_short | Nitric Oxide Regulates Macrophage Fungicidal Activity via S-nitrosylation of Dectin-1 |
title_sort | nitric oxide regulates macrophage fungicidal activity via s-nitrosylation of dectin-1 |
topic | Original Articles |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7500157/ https://www.ncbi.nlm.nih.gov/pubmed/32953945 http://dx.doi.org/10.1089/aivt.2020.0009 |
work_keys_str_mv | AT gowjames nitricoxideregulatesmacrophagefungicidalactivityviasnitrosylationofdectin1 AT yangyujie nitricoxideregulatesmacrophagefungicidalactivityviasnitrosylationofdectin1 AT govindrajmohan nitricoxideregulatesmacrophagefungicidalactivityviasnitrosylationofdectin1 AT guochangjiang nitricoxideregulatesmacrophagefungicidalactivityviasnitrosylationofdectin1 |